Lte Enodeb System Counter Description For Pkg 4.0.0_v1.0 (csl Counters)

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LTE eNB Counter Description for PKG 4.0.0

Radio Access Network

This document provides detailed descriptions for statistical items collected in the Samsung eNB system for data analysis.

Document Version 1.0 October 2014

Document Number: 2600-00GWOOGAT

© 2014 SAMSUNG Electronics Co., Ltd. All Rights Reserved. No part of this document may be photocopied, reproduced, stored in a retrieval system, or transmitted, in any form or by any means whether, electronic, mechanical, or otherwise without the prior written permission of SAMSUNG Electronics Co., Ltd. No warranty of accuracy is given concerning the contents of the information contained in this publication. To the extent permitted by law no liability (including liability to any person by reason of negligence) will be accepted by SAMSUNG Electronics Co., Ltd., its subsidiaries or employees for any direct or indirect loss or damage caused by omissions from or inaccuracies in this document. SAMSUNG Electronics Co., Ltd. reserves the right to change details in this publication without notice.

SNMTC-v3-0312

This manual should be read and used as a guideline for properly installing and/or operating the product. Owing to product variations across the range, any illustrations and photographs used in this manual may not be a wholly accurate depiction of the actual products you are using. This manual may be changed for system improvement, standardization and other technical reasons without prior notice. Samsung Networks documentation is available at http://www.samsungdocs.com

Contents Preface

viii Relevance .......................................................................................................................................viii Conventions in this Document .......................................................................................................viii New and Changed Information ....................................................................................................... ix Revision History ............................................................................................................................... ix Organization of This Document ....................................................................................................... x Related Documentation ................................................................................................................... x Personal and Product Safety ........................................................................................................... xi Equipment Markings .......................................................................................................................xii

Chapter 1

Introduction 1 Counter Description Fields ............................................................................................................... 1

Chapter 2

Counter Description 1 Resource Management .................................................................................................................... 2 Resource ...................................................................................................................................... 2 Packet Statistics................................................................................................................................ 4 Ethernet Packet ........................................................................................................................... 4 Ethernet Packet per VLAN .......................................................................................................... 10 Histogram .................................................................................................................................. 12 Air MAC Packet .......................................................................................................................... 13 Air RLC Packet ............................................................................................................................ 16 PDCP Packet ............................................................................................................................... 19 Ethernet Packet (Pico)................................................................................................................ 21 RRC ................................................................................................................................................. 27 RRC Connection Establishment .................................................................................................. 29 RRC Connection Reconfiguration ............................................................................................... 34 RRC Connection Re-establishment ............................................................................................. 36 RRC Connection Release ............................................................................................................ 42 RRC Connection Number ............................................................................................................ 46 RRC Connection Setup Time ....................................................................................................... 47 RRC Connection Re-establishment Time .................................................................................... 49 Call Drop .................................................................................................................................... 51 E-RAB .............................................................................................................................................. 54 E-RAB Setup ............................................................................................................................... 54 E-RAB Setup Add ........................................................................................................................ 59 E-RAB Setup Time ...................................................................................................................... 64 E-RAB Erase Request .................................................................................................................. 66 E-RAB Erase................................................................................................................................ 73 E-RAB Modify ............................................................................................................................. 77 E-RAB Release Request .............................................................................................................. 82 E-RAB Release ............................................................................................................................ 85 E-RAB Session Time per Cell ....................................................................................................... 88 E-RAB Session Time per QCI ....................................................................................................... 89 Active E-RAB Number................................................................................................................. 90 E-RAB QCI per-PLMN rejected.................................................................................................... 91 HO EUTRAN .................................................................................................................................... 93

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Contents

Intra-eNB Handover ................................................................................................................... 99 X2 Out Handover ..................................................................................................................... 104 X2 In Handover ........................................................................................................................ 111 S1 Out Handover ...................................................................................................................... 125 S1 In Handover......................................................................................................................... 130 Handover Time......................................................................................................................... 141 Measurement Results of Source Cell ........................................................................................ 146 Measurement Results of Target Cell ........................................................................................ 150 CSL ................................................................................................................................................ 155 Call Fail .................................................................................................................................... 155 MRO ............................................................................................................................................. 183 MRO RLF Classification ............................................................................................................ 183 MRO RLF at RRC Connection .................................................................................................... 185 VoLTE............................................................................................................................................ 187 VoLTE Handover....................................................................................................................... 187 GTP ............................................................................................................................................... 189 GTP Sequence Number per QCI ................................................................................................ 189 GTP Sequence Number per eNB ............................................................................................... 191 GTP Forward Traffic ................................................................................................................. 193 SRB ............................................................................................................................................... 204 Cell PDCP SDU Bit Rate ............................................................................................................ 204 DRB ............................................................................................................................................... 206 Active UE Number .................................................................................................................... 206 Packet Delay ............................................................................................................................ 208 Packet Drop Rate ..................................................................................................................... 209 Packet Loss Rate ...................................................................................................................... 211 IP Latency................................................................................................................................. 213 RRU ............................................................................................................................................... 214 PRB Usage ................................................................................................................................ 214 Total PRB Usage ...................................................................................................................... 216 Cell Unavailable Time .............................................................................................................. 220 PRB Full Utilization ................................................................................................................... 221 S1SIG ............................................................................................................................................ 223 UE-associated logical S1 Connection Establishment ................................................................ 223 Paging ........................................................................................................................................... 228 Paging ...................................................................................................................................... 228 Overload Protection ..................................................................................................................... 230 Denied Call by Overload Protection ......................................................................................... 230 Power ........................................................................................................................................... 232 Power ....................................................................................................................................... 232 RNTP of Own Cell ..................................................................................................................... 234 RSSI of Each Path Measured by MAC ....................................................................................... 239 RA ................................................................................................................................................. 240 Random Access Preambles ...................................................................................................... 240 RACH Usage ............................................................................................................................. 242 HARQ ............................................................................................................................................ 244 Transmission BLER ................................................................................................................... 244 AMC .............................................................................................................................................. 253 MIMO....................................................................................................................................... 253 MCS .......................................................................................................................................... 255 DL MCS ..................................................................................................................................... 279 DL LAYER .................................................................................................................................. 283 LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

iv

Contents

DL Wideband CQI ..................................................................................................................... 284 DL PMI...................................................................................................................................... 288 DL RI ......................................................................................................................................... 290 DL ACK-NACK-DTX Ratio .......................................................................................................... 292 Timing Alignment ......................................................................................................................... 294 Timing Alignment .................................................................................................................... 294 Timing Advance based UE Limitation In Connected ................................................................ 297 Timing Advance based UE Limitation In Initial Attach ............................................................. 298 IOT ................................................................................................................................................ 299 Uplink IOT Level ....................................................................................................................... 299 Load Balancing ............................................................................................................................. 304 Load ......................................................................................................................................... 304 Load Balancing Handover ........................................................................................................ 306 Idle Load Balancing .................................................................................................................. 308 Redirection by Load Balancing ................................................................................................. 309 Traffic Distribution ....................................................................................................................... 310 Throughput Distribution .......................................................................................................... 310 Delay Distribution .................................................................................................................... 326 Drop Distribution ..................................................................................................................... 332 CQI Distribution ....................................................................................................................... 335 eMBMS ......................................................................................................................................... 337 MBMS eNB Signaling ............................................................................................................... 337 MBMS eNB Sync....................................................................................................................... 339 MBMS Cell Sync ....................................................................................................................... 341 Aggregate Maximum Bit Rate ...................................................................................................... 342 UE-AMBR Override................................................................................................................... 342 KPI ................................................................................................................................................ 343 Accessibility.............................................................................................................................. 343 Retainability ............................................................................................................................. 346 Integrity ................................................................................................................................... 347 Availability ............................................................................................................................... 349 Mobility .................................................................................................................................... 350 Two-Way Active Measurement Protocol ................................................................................. 355 VoLTE Handover Success Rate ................................................................................................. 359 UE Category .................................................................................................................................. 361 UE Category ............................................................................................................................. 361 Scheduler ..................................................................................................................................... 362 Smart RRH Tx Power ................................................................................................................ 362 Appendix A Acronyms

364

Appendix B Index Range

367

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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List of Figures Figure 1. Figure 2. Figure 3. Figure 4. Figure 5. Figure 6. Figure 7. Figure 8. Figure 9. Figure 10. Figure 11. Figure 12. Figure 13. Figure 14. Figure 15. Figure 16. Figure 17. Figure 18. Figure 19. Figure 20. Figure 21. Figure 22. Figure 23. Figure 24. Figure 25. Figure 26. Figure 27. Figure 28. Figure 29. Figure 30. Figure 31. Figure 32. Figure 33. Figure 34. Figure 35. Figure 36. Figure 37. Figure 38. Figure 39. Figure 40. Figure 41. Figure 42. Figure 43. Figure 44. Figure 45. Figure 46. Figure 47.

RRC/E-RAB/S1 SIG Statistics Processing ......................................................................................... 27 Collection Time for RRC Connection Establishment ...................................................................... 31 Collection Time for RRC connection establishment (Reject).......................................................... 32 Collection Time for ConnEstabFail_RrcSigTo (Failure) ................................................................... 33 Collection Time for RRC Connection Reconfiguration .................................................................... 35 Collection Time for RRC Connection Re-Establishment ................................................................. 39 Collection Time for ConnReEstabFail_RrcSigTo ............................................................................. 40 Collection Time for ConnReEstabFail_S1apSigFail (1) .................................................................... 41 Collection Time for ConnReEstabFail_S1apSigFail (2) .................................................................... 41 Collection Time for RRC Connection Release ................................................................................. 45 Collection Time for RRC Connection Number ................................................................................ 48 Collection Time for RRC Connection Reestablishment Time ......................................................... 50 Collection Time for E-RAB Setup .................................................................................................... 57 Collection Time for ErabInitFailNbr_RrcSigTo ................................................................................ 58 Collection Time for E-RAB Setup Add ............................................................................................. 61 Collection Time for ErabAddFailNbr_RrcSigFail ............................................................................. 62 Collection Time for ErabAddFailNbr_RrcSigTo ............................................................................... 62 Collection Time for ErabAddFailNbr_S1apSigFail (1) ..................................................................... 63 Collection Time for ErabAddFailNbr_S1apSigFail (2) ..................................................................... 63 Collection Time for E-RAB Setup Time ........................................................................................... 65 Collection Time for eNB E-RAB Erase Request ............................................................................... 68 Collection Time for EraseAttbyEnb_RrcHcTo (Inter X2 Handover) ................................................ 69 Collection Time for EraseAttbyEnb_RrcHoTo (Inter S1 Handover) ................................................ 70 Collection Time for EraseAttbyEnb_RrcHcTo (Intra eNB Handover) .............................................. 71 Collection Time for EraseAttbyEnb_RrcSigFail ............................................................................... 71 Collection Time for EraseAttbyEnb_S1apSigTo .............................................................................. 72 Collection Time for E-RAB Erase ..................................................................................................... 76 Collection Time for E-RAB Modify .................................................................................................. 79 Collection Time for ModQoSFailNbr_RrcSigTo .............................................................................. 80 Collection Time for ModQoSFailNbr_S1apSigFail .......................................................................... 80 Collection Time for ModQoSFailNbr_S1apSigFail .......................................................................... 81 Collection Time for eNB E-RAB Erase Request ............................................................................... 83 Collection Time for RelAttbyEnbNbr_S1apCuFail .......................................................................... 84 Collection Time for E-RAB Release ................................................................................................. 86 Collection Time for RelFailNbr_S1apSigFail ................................................................................... 87 Intra-eNB Handover Statistics Processing ...................................................................................... 93 X2-based Handover Statistics Processing ....................................................................................... 94 S1-based Handover Procedure....................................................................................................... 96 Collection Time for Intra eNB Handover ...................................................................................... 102 Collection Time for IntraEnbFail_RrcHcTo ................................................................................... 103 Collection Time for X2 Out Handover .......................................................................................... 108 Collection Time for InterX2OutPrepFail_X2apRpTo ..................................................................... 109 Collection Time for InterX2OutFail_X2apRoTo ............................................................................ 110 Collection Time for X2 Handover In ............................................................................................. 115 Collection Time for InterX2InPrepFail_X2apSigFail ...................................................................... 116 Collection Time for InterX2InPrepFail_S1apSigFail ...................................................................... 117 Collection Time for InterX2InPrepFail_X2apCuFail ...................................................................... 118

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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List of Figures

Figure 48. Figure 49. Figure 50. Figure 51. Figure 52. Figure 53. Figure 54. Figure 55. Figure 56. Figure 57. Figure 58. Figure 59. Figure 60. Figure 61. Figure 62. Figure 63. Figure 64. Figure 65. Figure 66. Figure 67. Figure 68. Figure 69.

Collection Time for InterX2InFail_RrcHcTo .................................................................................. 119 Collection Time for InterX2InFail_RrcSigFail ................................................................................ 120 Collection Time for InterX2InFail_S1apCuFail .............................................................................. 121 Collection Time for InterX2InFail_S1apSigFail .............................................................................. 122 Collection Time for InterX2InFail_S1apPathTo ............................................................................ 123 Collection Time for InterX2InFail_X2apSigTo ............................................................................... 124 Collection Time for S1 Handover Out........................................................................................... 128 Collection Time for S1 Handover In (Success) .............................................................................. 134 Collection Time for S1 Handover In (Failure) ............................................................................... 136 Collection Time for InterS1InPrepFail_S1apSigFail ...................................................................... 137 Collection Time for S1 Handover In (Failure) ............................................................................... 138 Collection Time for S1 Handover In (Failure) ............................................................................... 139 Collection Time for InterS1InFail_S1apSigFail .............................................................................. 140 Collection Time for Handover Time (INTRA) ................................................................................ 143 Collection Time for Handover Time (INTER S1) ............................................................................ 144 Collection Time for Handover Time (INTER X2) ........................................................................... 145 Collection Time for Measurement Results of Source Cell ............................................................ 149 Collection Time for measurement Report of Target Cell ............................................................. 154 Collection Time for S1SIG (1)........................................................................................................ 225 Collection Time for S1SIG (2)........................................................................................................ 226 Collection Time for S1ConnEstabFail_S1apSigFail ....................................................................... 227 Collection Time for PAGING ......................................................................................................... 229

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Preface Long Term Evolution (LTE) E-UTRAN Node B (eNB) System Counter Description provides detailed information for each statistical item for statistics data analysis.

Relevance This manual applies to the following products/software. Name

Type

PKG 4.0.0

Software

Conventions in this Document Samsung Networks product documentation uses the following conventions.

Symbols Symbol

Description Indicates a task. Indicates a shortcut or an alternative method. Provides additional information. Provides information or instructions that you should follow to avoid service failure or damage to equipment. Provides information or instructions that you should follow to avoid personal injury or fatality. Provides antistatic precautions that you should observe.

Menu Commands menu | command This indicates that you must select a command on a menu, where menu is the name of the menu, and command is the name of the command on that menu.

File Names and Paths These are indicated by a bold typeface. For example: Copy filename.ext into the /home/folder1/folder2/bin/ folder. LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

viii

Preface

User Input and Console Screen Output Text Input and output text is presented in the Courier font. For example, context <designated epc-context-name> CLI commands are presented in bold small caps. For example, Type the RTRV-NE-STS command in the input field.

New and Changed Information This section describes information that has been added/changed since the previous publication of this manual. Item

Description

Family add

Below Statistics Family added.  Family: Ethernet Packet per VLAN, Ethernet Packet(Pico), VoLTE Handover, PRB Full Utilization, Denied Call by Overload Protection, Smart RRH Tx Power

Family Name Change

Below Statistics Family name changed.  Family: DL ACK-NACK-DTX Ratio (The 'DL ACK/NACK/DTX Ratio' was previous name.)

Family Delete

Below Statistics Family deleted  Family: Overload Protection

Type add

Below type added in the Statistics Family.  Family: Call Fail Type: [0x035C]Rrm_OverloadProtection

Revision History The following table lists all versions of this document. Document Number

Product/Software Version

Document Version

Publication Date

2600-00FHDAGAT

PKG 3.0

3.0

November 2013

2600-00GJBLGAT

PKG 3.1

1.0

June 2014

2600-00GWOOGAT

PKG 4.0

1.0

October 2014

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Remarks

ix

Preface

Organization of This Document Section

Title

Description

Chapter 1

Introduction

This chapter describes the information of counter description fields.

Chapter 2

Counter Descriptions

This chapter describes index, family and type information of counters.

Appendix A

Acronyms

This chapter lists the acronyms used in this document.

Appendix B

Index Range

This chapter explains the index range used for each counter

Related Documentation 

LTE eNB Operation Manual for PKG 4.0.0

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

x

Preface

Personal and Product Safety Product Disposal To reduce the environmental impact of products, Samsung has joined WEEE compliance activities. The WEEE symbol on the product indicates that the product is covered by the European Directive 2002/96/CE for the disposal of Waste Electrical and Electronic Equipment (WEEE). This means that the product should be disposed of separately from the municipal waste stream via designated collection facilities appointed by the government or the local authorities. This will help prevent potential negative consequences for the environment and human health. Please check the terms and conditions of the purchase contract for information about correct disposal.

Battery Disposal The product contains a battery on the processor card. The battery should not be disposed of with other household waste. Where marked, the chemical symbols Hg, Cd or Pb indicate that the battery contains mercury, cadmium or lead above the reference levels in EC Directive 2006/66. The battery incorporated in this product is not user replaceable. For information on its replacement, please contact your service provider. Do not attempt to remove the battery or dispose it in a fire. Do not disassemble, crush, or puncture the battery. End of life recycling materials information is available from Samsung.

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Preface

Equipment Markings This marking on the product, accessories or literature indicates that the product and its electronic accessories (e.g. charger, headset, USB cable) should not be disposed of with other household waste at the end of their working life. To prevent possible harm to the environment or human health from uncontrolled waste disposal, please separate these items from other types of waste and recycle them responsibly to promote the sustainable reuse of material resources. For more information on safe disposal and recycling, visit our website www.samsung.com/in or contact our Helpline numbers-18002668282, 180030008282.

Correct disposal of batteries in this product (Applicable in countries with separate collection systems.) The marking on the battery, manual or packaging indicates that the battery in this product should not be disposed of with other household waste. Where marked, the chemical symbols Hg, Cd or Pb indicate that the battery contains mercury, cadmium or lead above the reference levels in EC Directive 2006/66. The battery incorporated in this product is not user replaceable. For information on its replacement, please contact your service provider. Do not attempt to remove the battery or dispose it in a fire. Do not disassemble, crush, or puncture the battery. If you intend to discard the product, the waste collection site will take the appropriate measures for the recycling and treatment of the product, including the battery.

This product is RoHS compliant.

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

xii

Chapter 1

Introduction

The LTE eNB Counter Description for PKG 4.0.0 report statistical performance measurements by data samples and data points over time. For more information on how to configure and view counter reports, please see the LTE eNB Counter Description for PKG 4.0.0.

Counter Description Fields Each counter can be described using the items in Table 1 below. Table 1. Counter Description Fields Counter Field

Description

Family Name/Description

A group of counters with the same type that can be identified by the index. A family has a unique family name.  Family Name: Unique name of a family.  Family Description: Short description of a family.

Index Name/Range/Description

A logical or physical location of the unit information for collecting counters.  Name: Unit for collecting counters.  Range: Range of index.  Description: Short description of index.

Type

Name

The name of a counter

Unit

The collection unit of each counter  % (percentage)  s (seconds)  ms (milliseconds)  count  Mbyte (megabytes)  Mbps (megabits per second)

Description

Describes a counter

Visible

Shows whether a type is displayed in the LSM

Counter Type

Shows the operation of each counter type

Trigger Type

Explains the particular trigger event, trigger duration, trigger condition for the counter and describes the event that updates the counter.

Data Type

The counter‟s data type

Min/Max

Describes min and max value of statistics type.

Granularity Formula

Describes the granularity formula for the statistics type

Hourly, Daily, Monthly Formula

Describes the hourly, daily, monthly formula for the statistics Type

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

1

Chapter 2

Counter Description

The LTE eNB Counters are described in detail in this chapter.

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

1

Chapter 2 Counter Description

Resource Management This section provides statistics on the resource status of the system.

Resource This section provides statistics on the CPU, memory and disk resources used by internal applications in the system.



CPU usage: Average, maximum and minimum CPU usage in percentage (%).



Memory usage: Average, maximum and minimum DRAM usage in percentage (%).



Disk usage: Average, maximum and minimum disk usage in percentage (%).

Index Name

Description

ShelfId

Shelf ID.

SlotId

The ID of the slot where the board is mounted.

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

MemUsageAvg

%

Average memory usage

Y

GAUGE

10 s

float

0~100

MemUsageTot/ MemUsageCnt

sum(MemUsageTot)/sum( MemUsageCnt)

MemUsageMin

%

Minimum memory usage

Y

GAUGE

10 s

float

0~100

-

min(MemUsageMin)

MemUsageMax

%

Maximum memory usage

Y

GAUGE

10 s

float

0~100

-

max(MemUsageMax)

MemUsageTot

%

Cumulative

-

GAUGE

10 s

float

0~100

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

MemUsageCnt

count

CpuUsageAvg

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

MemUsageAvg collection count

-

GAUGE

10 s

int

0~2147483647

-

-

%

Average CPU usage

Y

GAUGE

10 s

float

0~100

CpuUsageTot/C puUsageCnt

sum(CpuUsageTot)/sum(C puUsageCnt)

CpuUsageMin

%

Minimum CPU usage

Y

GAUGE

10 s

float

0~100

-

min(CpuUsageMin)

CpuUsageMax

%

Maximum CPU usage

Y

GAUGE

10 s

float

0~100

-

max(CpuUsageMax)

CpuUsageMaxDura tion

s

Maximum CPU usage time

Y

CC

10 s

int

0~60*Period

-

max(CpuUsageMaxDurati on)

CpuUsageTot

%

Cumulative CpuUsageAvg

-

GAUGE

10 s

float

0~100

-

-

CpuUsageCnt

count

CpuUsageAvg collection count

-

GAUGE

10 s

int

0~2147483647

-

-

DiskUsageAvg

%

Average disk usage

Y

GAUGE

10 s

float

0~100

DiskUsageTot/D iskUsageCnt

sum(DiskUsageTot)/sum( DiskUsageCnt)

DiskUsageMin

%

Minimum disk usage

Y

GAUGE

10 s

float

0~100

-

min(DiskUsageMin)

DiskUsageMax

%

Maximum disk usage

Y

GAUGE

10 s

float

0~100

-

max(DiskUsageMax)

DiskUsageTot

%

Cumulative DiskUsageAvg

-

GAUGE

10 s

float

0~100

-

-

DiskUsageCnt

count

DiskUsageAvg collection count

-

GAUGE

10 s

int

0~2147483647

-

-

MemUsageAvg

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description

Packet Statistics Provides statistics on Tx/Rx packets that are processed by the system.

Ethernet Packet This section provides details on the number of the Rx/Tx packets or bytes for each port connected to the backhaul. Ethernet interface packet statistics collect the error Ethernet frame count, Tx/Rx link usage, Tx/Rx error rate, and so on. Index Name

Description

PortNum

Port number that can be connected to external devices

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RxLinkUtilization Avg

%

Average link utilization of packets received

Y

OW

Period

float

0~100

(RxGoodOctetSumB adOctetTot*8*100*K _UNIT*K_UNIT+((Rx UnicastPacket+RxBr oadcastPacket+RxM ulticastPacket)*20)*8 *100)/(10*RxGoodOc tetSumBadOctetCnt* IfSpeed*1000000)

(sum(RxGoodOctetSu mBadOctetTot)*8*100* K_UNIT*K_UNIT+((su m(RxUnicastPacket)+s um(RxBroadcastPacke t)+sum(RxMulticastPac ket))*20)*8*100)/(10*su m(RxGoodOctetSumB adOctetCnt)*avg(IfSpe ed)*1000000)

RxLinkUtilization Max

%

Maximum link utilization of packets received

Y

GAUGE

10 s

float

0~100

-

max(RxLinkUtilization Max)

RxErrorRate

%

Ratio of error packets received

Y

OW

Period

float

0~100

(RxFifoOverrun+RxU ndersize+RxFragme nt+RxOversize+RxJa

(sum(RxFifoOverrun)+ sum(RxUndersize)+su m(RxFragment)+sum(

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula bber+RxErrorFrame+ RxBadCrc+RxCollisi on+RxLateCollision)* 100/(RxUnicastPack et+RxBroadcastPack et+RxMulticastPacke t+RxFifoOverrun+Rx Undersize+RxFragm ent+RxOversize+RxJ abber+RxErrorFrame +RxBadCrc+RxCollis ion+RxLateCollision)

Hourly, Daily, Monthly Formula RxOversize)+sum(RxJ abber)+sum(RxErrorFr ame)+sum(RxBadCrc) +sum(RxCollision)+su m(RxLateCollision))*10 0/(sum(RxUnicastPack et)+sum(RxBroadcastP acket)+sum(RxMultica stPacket)+sum(RxFifo Overrun)+sum(RxUnde rsize)+sum(RxFragme nt)+sum(RxOversize)+ sum(RxJabber)+sum(R xErrorFrame)+sum(Rx BadCrc)+sum(RxCollisi on)+sum(RxLateCollisi on))

RxGoodOctet

Mbytes

Total frame length of normal packets received

Y

CC

10 s

int

0~2147483647

-

-

RxUnicastPacket

count

Number of unicast packets received

Y

CC

10 s

int

0~2147483647

-

-

RxBroadcastPack et

count

Number of broadcast packets received

Y

CC

10 s

int

0~2147483647

-

-

RxMulticastPacke t

count

Number of multicast packets received

Y

CC

10 s

int

0~2147483647

-

-

RxFifoOverrun

count

Number of packets dropped due to insufficient buffer resources among packets received

Y

CC

10 s

int

0~2147483647

-

-

RxUndersize

count

Number of undersized

Y

CC

10 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

packets among error packets received RxFragment

count

Number of fragmented packets among error packets received

Y

CC

10 s

int

0~2147483647

-

-

RxOversize

count

Number of oversized packets among error packets received

Y

CC

10 s

int

0~2147483647

-

-

RxJabber

count

Number of jabber packets among error packets received

Y

CC

10 s

int

0~2147483647

-

-

RxErrorFrame

count

Number of errors received

Y

CC

10 s

int

0~2147483647

-

-

RxBadCrc

count

Number of CRC error packets received

Y

CC

10 s

int

0~2147483647

-

-

RxCollision

count

Number of packets received, where collision occurred

Y

CC

10 s

int

0~2147483647

-

-

RxLateCollision

count

Number of packets received, where late collision occurred

Y

CC

10 s

int

0~2147483647

-

-

TxLinkUtilizationA vg

%

Average link utilization of packets transmitted

Y

OW

Period

float

0~100

(TxGoodOctetSumB adOctetTot*8*100*K _UNIT*K_UNIT+((Tx UnicastPacket+TxBr oadcastPacket+TxM ulticastPacket)*20)*8 *100)/(10*TxGoodOc tetSumBadOctetCnt* IfSpeed*1000000)

(sum(TxGoodOctetSu mBadOctetTot)*8*100* K_UNIT*K_UNIT+((su m(TxUnicastPacket)+s um(TxBroadcastPacke t)+sum(TxMulticastPac ket))*20)*8*100)/(10*su m(TxGoodOctetSumB adOctetCnt)*avg(IfSpe ed)*1000000)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

6

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TxLinkUtilization Max

%

Maximum link utilization of packets transmitted

Y

GAUGE

10 s

float

0~100

-

max(TxLinkUtilizationM ax)

TxErrorRate

%

Ratio of error packets transmitted

Y

OW

Period

float

0~100

(TxUnderrunBadCrc+ TxDeferred+TxEColli sions)*100/(TxUnicas tPacket+TxBroadcast Packet+TxMulticastP acket+TxUnderrunBa dCrc+TxDeferred+Tx ECollisions)

(sum(TxUnderrunBadC rc)+sum(TxDeferred)+ sum(TxECollisions))*1 00/(sum(TxUnicastPac ket)+sum(TxBroadcast Packet)+sum(TxMultic astPacket)+sum(TxUn derrunBadCrc)+sum(T xDeferred)+sum(TxEC ollisions))

TxGoodOctet

Mbytes

Total frame length of normal packets transmitted

Y

CC

10 s

int

0~2147483647

-

-

TxUnicastPacket

count

Number of unicast packets transmitted

Y

CC

10 s

int

0~2147483647

-

-

TxBroadcastPack et

count

Number of broadcast packets transmitted

Y

CC

10 s

int

0~2147483647

-

-

TxMulticastPacke t

count

Number of multicast packets transmitted

Y

CC

10 s

int

0~2147483647

-

-

TxUnderrunBadC rc

count

Number of packets transmitted, where underrun or CRC error occurred

Y

CC

10 s

int

0~2147483647

-

-

TxDeferred

count

Number of delayed transmissions due to „media busy‟ state when ports are open in halfduplex mode

Y

CC

10 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

7

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TxECollisions

count

Number of packets whose transmission is cancelled due to excessive collision when ports are open in half-duplex mode

Y

CC

10 s

int

0~2147483647

-

-

RxGoodOctetSu mBadOctetAvg

Mbytes

RxGoodOctet+BadOcte t

-

GAUGE

10 s

int

0~2147483647

RxGoodOctetSumBa dOctetTot/RxGoodO ctetSumBadOctetCnt

sum(RxGoodOctetSum BadOctetTot)/sum(Rx GoodOctetSumBadOct etCnt)

RxGoodOctetSu mBadOctetMax

Mbytes

RxGoodOctet+BadOcte t_MAX

-

GAUGE

10 s

int

0~2147483647

-

max(RxGoodOctetSum BadOctetMax)

RxGoodOctetSu mBadOctetTot

Mbytes

RxGoodOctet+BadOcte t_TOT

-

GAUGE

10 s

int

0~2147483647

-

-

RxGoodOctetSu mBadOctetCnt

count

RxGoodOctet+BadOcte t_CNT

-

GAUGE

10 s

int

0~2147483647

-

-

TxGoodOctetSu mBadOctetAvg

Mbytes

TxGoodOctet+BadOcte t

-

GAUGE

10 s

int

0~2147483647

TxGoodOctetSumBa dOctetTot/TxGoodOc tetSumBadOctetCnt

sum(TxGoodOctetSum BadOctetTot)/sum(TxG oodOctetSumBadOctet Cnt)

TxGoodOctetSu mBadOctetMax

Mbytes

TxGoodOctet+BadOcte t_MAX

-

GAUGE

10 s

int

0~2147483647

-

max(TxGoodOctetSum BadOctetMax)

TxGoodOctetSu mBadOctetTot

Mbytes

TxGoodOctet+BadOcte t_TOT

-

GAUGE

10 s

int

0~2147483647

-

-

TxGoodOctetSu mBadOctetCnt

count

TxGoodOctet+BadOcte t_CNT

-

GAUGE

10 s

int

0~2147483647

-

-

IfSpeed

Mbps

ifSpeed

-

OW

10 s

int

0~2147483647

-

avg(IfSpeed)

RxLinkUtilization Min

%

Minimum link utilization of packets received from the outside

Y

GAUGE

10 s

float

0~100

-

min(RxLinkUtilizationM in)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

8

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TxLinkUtilization Min

%

Minimum link utilization of packets transmitted to the outside

Y

GAUGE

10 s

float

0~100

-

min(TxLinkUtilizationMi n)

RxGoodOctetSu mBadOctetMin

Mbytes

RxGoodOctet+BadOcte t_MIN

-

GAUGE

10 s

int

0~2147483647

-

min(RxGoodOctetSum BadOctetMin)

TxGoodOctetSu mBadOctetMin

Mbytes

TxGoodOctet+BadOcte t_MIN

-

GAUGE

10 s

int

0~2147483647

-

min(TxGoodOctetSum BadOctetMin)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

9

Chapter 2 Counter Description

Ethernet Packet per VLAN Collects the number of Rx/Tx packets or bytes per VLAN, the number of Drop Ethernet packets, etc. Index Name

Description

VrId

vrId of VRConf PLD

VlanId

dbIndex of VlanConf PLD

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RxThroughputAvg

Mbps

Average incoming throughput per VLAN interface over a periodic time interval

Y

OW

10 s

float

0~3.4*10^38

(RxOctet*8*M_ UNIT)/(10*RxO ctetCnt*100000 0)

(sum(RxOctet)*8*M _UNIT)/(10*sum(Rx OctetCnt)*1000000)

RxOctet

Mbytes

Total Octet number of packet received per VLAN interface over a periodic time interval

Y

CC_LL

10 s

int

0~2147483647

-

-

RxOctetCnt

count

The number of calling incoming throughput increment over a periodic time interval

Y

CC_LL

10 s

int

0~2147483647

-

-

RxPacket

count

Total number of packets received per VLAN interface over a periodic time interval

Y

CC

10 s

int

0~2147483647

-

-

RxDropPacketCnt

count

Number of Rx packets dropped per VLAN interface over a periodic time interval

Y

CC

10 s

int

0~2147483647

-

-

TxThroughputAvg

Mbps

Average outgoing throughput per VLAN interface over a periodic time interval

Y

OW

10 s

float

0~3.4*10^38

(TxOctet*8*M_ UNIT)/(10*TxO ctetCnt*100000

(sum(TxOctet)*8*M _UNIT)/(10*sum(Tx OctetCnt)*1000000)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

10

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula 0)

Hourly, Daily, Monthly Formula

TxOctet

Mbytes

Total Octet number of packets sent per VLAN interface over a periodic time interval

Y

CC_LL

10 s

int

0~2147483647

-

-

TxOctetCnt

count

The number of calling incoming throughput increment over a periodic time interval

Y

CC_LL

10 s

int

0~2147483647

-

-

TxPacket

count

Total number of packets sent per VLAN interface over a periodic time interval

Y

CC

10 s

int

0~2147483647

-

-

TxDropPacketCnt

count

Number of Tx packets dropped per VLAN interface over a periodic time interval

Y

CC

10 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

11

Chapter 2 Counter Description

Histogram This section provides the number of packets per Ethernet packet size received from a External Interface (e.g. backhaul) port. Index Name

Description

PortNum

Port number that can be connected to external devices

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RxHistogram64

count

Number of 64-byte Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~2147483647

-

-

RxHistogram127

count

Number of 65 to 127-byte Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~2147483647

-

-

RxHistogram255

count

Number of 128 to 255-byte Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~2147483647

-

-

RxHistogram511

count

Number of 256 to 511-byte Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~2147483647

-

-

RxHistogram1023

count

Number of 512 to 1023-byte Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~2147483647

-

-

RxHistogramMax

count

Number of K_UNIT Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

12

Chapter 2 Counter Description

Air MAC Packet This section provides statistics for the cell throughput. Air Mac UL/DL bytes (Kbytes) Collects the average size of the transport block (TB) successfully sent/received, among the downlink/uplink TBs that the eNB’s MAC allocated to the UE. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

AirMacULByte

Kbytes

The sum of the size of the MAC PDU successfully received via PUSCH during the statistics period.

Y

CC

5.12 s

int

0~2147483647

-

-

AirMacULByteCnt

count

Collected AirMacULByte count

-

CC_LL

5.12 s

int

0~2147483647

-

-

AirMacULTti

TTI

The sum of sections that have the MAC PDU successfully received via PUSCH during the statistics period.

Y

CC

5.12 s

int

0~2147483647

-

-

AirMacULThruAvg

Kbps

Average size per second of the MAC PDU successfully received via PUSCH.

Y

OW

Period

float

0~3.4*10^38

((AirMacUL Byte*8)/(512 0*AirMacUL ByteCnt))*K _UNIT

((sum(AirMacULByt e)*8)/(5120*sum(Air MacULByteCnt)))*K _UNIT

AirMacULEfctivThr uAvg

Kbps

Average size of the MAC PDU of the section successfully received via PUSCH during the statistics period.

Y

OW

Period

float

0~3.4*10^38

((AirMacUL Byte*8)/AirM acULTti)*K_ UNIT

((sum(AirMacULByt e)*8)/sum(AirMacUL Tti))*K_UNIT

AirMacDLByte

Kbytes

The sum of the size of the DCCT/DTCH MAC PDU that

Y

CC

5.12 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

13

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

received HARQ ACK among the MAC PDU transmitted via PDSCH during the statistics period. AirMacDLByteCnt

count

Collected AirMacDLByte count

-

CC

5.12 s

int

0~2147483647

-

-

AirMacDLTti

TTI

The sum of sections that have the MAC PDU successfully transmitted via PDSCH during the statistics period.

Y

CC

5.12 s

int

0~2147483647

-

-

AirMacDLThruAvg

Kbps

Average size per second of the DCCT/DTCH MAC PDU that received HARQ ACK among the MAC PDU transmitted via PDSCH during the statistics period.

Y

OW

Period

float

0~3.4*10^38

((AirMacDL Byte*8)/(512 0*AirMacDL ByteCnt))*K _UNIT

((sum(AirMacDLByt e)*8)/(5120*sum(Air MacDLByteCnt)))*K _UNIT

AirMacDLEfctivThr uAvg

Kbps

Average size of the MAC PDU of the section successfully transmitted via PDSCH during the statistics period.

Y

OW

Period

float

0~3.4*10^38

((AirMacDL Byte*8)/AirM acDLTti)*K_ UNIT

((sum(AirMacDLByt e)*8)/sum(AirMacDL Tti))*K_UNIT

AirMacULByteCurr

Kbytes

The most recently collected AirMacULByte value

-

CC

5.12 s

int

0~2147483647

-

-

AirMacDLByteCurr

Kbytes

The most recently collected AirMacDLByte value

-

CC

5.12 s

int

0~2147483647

-

-

AirMacULThruMin

Kbps

Minimum of the average size per second of the MAC PDU successfully received via PUSCH

Y

OW

5.12 s

float

0~3.4*10^38

-

min(AirMacULThruM in)

AirMacULThruMax

Kbps

Maximum of the average size per second of the MAC PDU successfully received via PUSCH

Y

OW

5.12 s

float

0~3.4*10^38

-

max(AirMacULThru Max)

AirMacDLThruMin

Kbps

Minimum of the average size per second of the DCCT/DTCH MAC PDU that received HARQ ACK among the MAC PDU transmitted

Y

OW

5.12 s

float

0~3.4*10^38

-

min(AirMacDLThruM in)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

14

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Y

OW

5.12 s

float

0~3.4*10^38

-

max(AirMacDLThru Max)

via PDSCH during the statistics period. AirMacDLThruMax

Kbps

Maximum of the average size per second of the DCCT/DTCH MAC PDU that received HARQ ACK among the MAC PDU transmitted via PDSCH during the statistics period.

Collection Time TTI (Transmission Time Interval: 1 ms)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

15

Chapter 2 Counter Description

Air RLC Packet This section provides statistics for the downlink’s transmitted byte and retransmitted byte count/throughput/IP throughput and the uplink’s transmitted byte count/throughput for the wireless section of the eNB. Since they are collected and summed for each cell and each QCI, they are collected after cell setup has finished. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

AirRlcULByte

Kbytes

Air RLC uplink bytes Number of bytes transmitted at the RLC as air uplink. Collects the number of data bytes received by the UE for each cell and QCI.

Y

CC

10 s

int

0~2147483647

-

-

AirRlcDLByte

Kbytes

Air RLC downlink bytes Number of bytes transmitted at the RLC as air downlink. Collects the number of data bytes transmitted to the UE for each cell and QCI.

Y

CC

10 s

int

0~2147483647

-

-

AirRlcDLByteRe

Kbytes

Air RLC downlink ReTx bytes Number of bytes

Y

CC

10 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

16

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

retransmitted at the RLC as air downlink. Collects the number of data bytes transmitted to the UE for each cell and QCI. AirRlcULThru

Kbps

Air uplink throughput Collects the data received from the UE as the air uplink throughput for each cell and QCI.

Y

OW

10 s

float

0~3.4*10^38

(AirRlcULBy te*K_UNIT* 8)/(10*AirRlc ULByteCnt* 1000)

(sum(AirRlcULByte) *K_UNIT*8)/(10*su m(AirRlcULByteCnt )*1000)

AirRlcULThruTot

Kbps

The sum of collected AirRlcULThru

-

OW

10 s

float

0~3.4*10^38

-

-

AirRlcULThruCnt

count

Collected AirRlcULThru count

-

OW

10 s

int

0~2147483647

-

-

AirRlcDLThru

Kbps

Air downlink throughput Collects the data transmitted to the UE as the air downlink throughput for each cell and QCI.

Y

OW

10 s

float

0~3.4*10^38

(AirRlcDLBy te*K_UNIT* 8)/(10*AirRlc DLByteCnt* 1000)

(sum(AirRlcDLByte) *K_UNIT*8)/(10*su m(AirRlcDLByteCnt )*1000)

AirRlcDLThruTot

Kbps

The sum of collected AirRlcDLThru

-

OW

10 s

float

0~3.4*10^38

-

-

AirRlcDLThruCnt

count

Collected AirRlcDLThru count

-

OW

10 s

int

0~2147483647

-

-

IpThru

Kbps

IP throughput Collects the IP throughput for each cell and QCI using the method specified in 3GPP TS 32.450.

Y

SI

10 s

float

0~3.4*10^38

IpThruTot/Ip ThruCnt

sum(IpThruTot)/su m(IpThruCnt)

IpThruTot

Kbps

The sum of collected IpThru

-

SI

10 s

float

0~3.4*10^38

-

-

IpThruCnt

count

Collected IpThru count

-

SI

10 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

17

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

AirRlcULByteCurr

Kbytes

The most recently collected AirRlcULByte

-

CC

10 s

int

0~2147483647

-

-

AirRlcDLByteCurr

Kbytes

The most recently collected AirRlcDLByte

-

CC

10 s

int

0~2147483647

-

-

AirRlcULByteCnt

count

AirRlcULByte collection count

-

CC

10 s

int

0~2147483647

-

-

AirRlcDLByteCnt

count

AirRlcDLByte collection count

-

CC

10 s

int

0~2147483647

-

-

AirRlcULThruMin

Kbps

Air uplink throughput Min

Y

OW

10 s

float

0~3.4*10^38

-

min(AirRlcULThruM in)

AirRlcULThruMax

Kbps

Maximum air uplink throughput

Y

OW

10 s

float

0~3.4*10^38

-

max(AirRlcULThru Max)

AirRlcDLThruMin

Kbps

Minimum air downlink throughput

Y

OW

10 s

float

0~3.4*10^38

-

min(AirRlcDLThruM in)

AirRlcDLThruMax

Kbps

Maximum air downlink throughput

Y

OW

10 s

float

0~3.4*10^38

-

max(AirRlcDLThru Max)

IpThruMin

Kbps

Minimum IP throughput

Y

OW

10 s

float

0~3.4*10^38

-

min(IpThruMin)

IpThruMax

Kbps

Maximum IP throughput

Y

OW

10 s

float

0~3.4*10^38

-

max(IpThruMax)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

18

Chapter 2 Counter Description

PDCP Packet This section provides statistics for bytes, packet counts and throughput of user data transmitted and received between the eNB and S-GW, which are collected per QCI according to the 3GPP standard (TS32.425 Performance Measurements). Each item is collected by the PDCP layer within the eNB. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EnbQciULByte

Kbytes

Total bytes of user data transmitted from the eNB to the S-GW.

Y

CC

2s

int

0~2147483647

-

-

EnbQciULThru

Kbps

(Total bits of user data transmitted to the S-GW)/ (Total time when user data were transmitted)

Y

OW

Period

float

0~3.4*10^38

(EnbQciULByte *K_UNIT*8)/En bQciULByteCnt /1000

(sum(EnbQciULByt e)*K_UNIT*8)/sum( EnbQciULByteCnt)/ 1000

EnbQciULThruMa x

Kbps

Maximum value over a five-minute period of (Total bits of user data transmitted to the S-GW)/(Total time when user data were transmitted).

Y

GAUGE

2s

float

0~3.4*10^38

-

max(EnbQciULThr uMax)

EnbQciULThruTot

Kbps

The sum of collected EnbQci ULByte

-

GAUGE

Period

float

0~3.4*10^38

-

-

EnbQciULThruCnt

count

Collected EnbQciULByte count

-

GAUGE

Period

int

0~2147483647

-

-

PacketULCnt

count

Total number of packets

Y

CC

2s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

19

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

transmitted from the eNB to the SGW EnbQciDLByte

Kbytes

Total bytes of user data the eNB received from the S-GW.

Y

CC

2s

int

0~2147483647

-

-

EnbQciDLThru

Kbps

(Total bits of user data received from the S-GW)/(Total time when user data were received)

Y

OW

Period

float

0~3.4*10^38

(EnbQciDLByte *K_UNIT*8)/En bQciDLByteCnt /1000

(sum(EnbQciDLByt e)*K_UNIT*8)/sum( EnbQciDLByteCnt)/ 1000

EnbQciDLThruMa x

Kbps

Maximum value over a five-minute period of (Total bits of user data transmitted to the S-GW)/(Total time when user data were transmitted)

Y

GAUGE

2s

float

0~3.4*10^38

-

max(EnbQciDLThr uMax)

EnbQciDLThruTot

Kbps

The sum of collected EnbQci DLThru

-

GAUGE

Period

float

0~3.4*10^38

-

-

EnbQciDLThruCnt

count

Collected EnbQciDLThru count

-

GAUGE

Period

int

0~2147483647

-

-

PacketDLCnt

count

Total number of packets the eNB received from the S-GW

Y

CC

2s

int

0~2147483647

-

-

EnbQciULByteCnt

s

Statistics Data collection interval

Y

OW

Period

int

0~2147483647

-

-

EnbQciDLByteCnt

s

Statistics Data collection interval

Y

OW

Period

int

0~2147483647

-

-

EnbQciULThruMin

Kbps

Minimum value over a five-minute period of (Total bits of user data transmitted to the S-GW)/(Total time when user data were transmitted)

Y

GAUGE

2s

float

0~3.4*10^38

-

min(EnbQciULThru Min)

EnbQciDLThruMin

Kbps

Minimum value over a five-minute period of (Total bits of user data transmitted to the S-GW)/(Total time when user data were transmitted)

Y

GAUGE

2s

float

0~3.4*10^38

-

min(EnbQciDLThru Min)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

20

Chapter 2 Counter Description

Ethernet Packet (Pico) Shows the number of normal, error and dropped Ethernet packets received from the External Interface (e.g. backhaul) port. Index Name

Description

PortNum

Port number that can be connected to external device.

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PicoRxLinkUtiliz ationAvg

%

Average link utilization of Ethernet frames received from the Ethernet port

Y

OW

Period

float

0~100

(PicoRxGoodOctetSu mBadOctetTot*8*100* K_UNIT*K_UNIT+((Pic oRxUnicastPacket+Pic oRxBroadcastPacket+ PicoRxMulticastPacket )*20)*8*100)/(10*PicoR xGoodOctetSumBadO ctetCnt*PicoIfSpeed*1 000000)

(sum(PicoRxGoodOctet SumBadOctetTot)*8*100 *K_UNIT*K_UNIT+((sum (PicoRxUnicastPacket)+ sum(PicoRxBroadcastPa cket)+sum(PicoRxMultic astPacket))*20)*8*100)/( 10*sum(PicoRxGoodOct etSumBadOctetCnt)*avg (PicoIfSpeed)*1000000)

PicoRxLinkUtiliz ationMax

%

Maximum link utilization of Ethernet frames received from the Ethernet port

Y

OW

Period

float

0~100

-

max(PicoRxLinkUtilizatio nMax)

PicoRxErrorRate

%

Rate of error Ethernet frame received from the Ethernet port

Y

OW

Period

float

0~100

((PicoRxFifoOverrun+ PicoRxUndersize+Pico RxFragment+PicoRxO versize+PicoRxJabber +PicoRxBadCrc)*100)/ (PicoRxUnicastPacket +PicoRxBroadcastPac ket+PicoRxMulticastPa cket+PicoRxFifoOverru n+PicoRxUndersize+Pi

((sum(PicoRxFifoOverru n)+sum(PicoRxUndersiz e)+sum(PicoRxFragment )+sum(PicoRxOversize)+ sum(PicoRxJabber)+su m(PicoRxBadCrc))*100)/ (sum(PicoRxUnicastPac ket)+sum(PicoRxBroadc astPacket)+sum(PicoRx MulticastPacket)+sum(Pi

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21

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula coRxFragment+PicoRx Oversize+PicoRxJabb er+PicoRxBadCrc)

Hourly, Daily, Monthly Formula coRxFifoOverrun)+sum( PicoRxUndersize)+sum( PicoRxFragment)+sum( PicoRxOversize)+sum(Pi coRxJabber)+sum(PicoR xBadCrc))

PicoRxGoodOct et

Mbytes

Total length of normal Ethernet frames received from the Ethernet port

Y

CC_LL

10 s

int

0~21474836 47

-

-

PicoRxUnicastP acket

count

Number of unicast Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxBroadcas tPacket

count

Number of broadcast Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxMulticast Packet

count

Number of Multicast Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxFifoOverr un

count

Number of dropped frames among Ethernet frames received from the Ethernet port due to buffer resource shortage

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxUndersiz e

count

Number of error packets received from the outside that are undersize.

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxFragment

count

Number of error packets received from the outside that are fragmented.

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxOversize

count

Number of error packets received from the outside

Y

CC

10 s

int

0~21474836 47

-

-

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Chapter 2 Counter Description Name

Unit

PicoRxJabber

count

PicoRxBadCrc

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of error packets received from the outside that are jabber.

Y

CC

10 s

int

0~21474836 47

-

-

count

Number of CRC error frames among error Ethernet frames received from the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

PicoRxGoodOct etSumBadOctet Avg

Mbytes

Average value of the total frame length of normal and abnormal packets received

-

GAUGE

10 s

int

0~21474836 47

PicoRxGoodOctetSum BadOctetTot/PicoRxG oodOctetSumBadOctet Cnt

sum(PicoRxGoodOctetS umBadOctetTot)/sum(Pi coRxGoodOctetSumBad OctetCnt)

PicoRxGoodOct etSumBadOctet Max

Mbytes

Maximum value of the total frame length of normal and abnormal packets received

-

GAUGE

10 s

int

0~21474836 47

-

max(PicoRxGoodOctetS umBadOctetMax)

PicoRxGoodOct etSumBadOctet Tot

Mbytes

Sum of the total frame length of normal and abnormal packets received

-

GAUGE

10 s

int

0~21474836 47

-

-

PicoRxGoodOct etSumBadOctet Cnt

count

Collection count of PicoRxGoodOctetSumBad OctetAvg

-

GAUGE

10 s

int

0~21474836 47

-

-

PicoTxLinkUtiliz ationAvg

%

Average link utilization of Ethernet frames transmitted to the Ethernet port

Y

OW

Period

float

0~100

(PicoTxGoodOctetSum BadOctetTot*8*100*K_ UNIT*K_UNIT+((PicoT xUnicastPacket+PicoT xBroadcastPacket+Pic oTxMulticastPacket)*2 0)*8*100)/(10*PicoTxG oodOctetSumBadOctet Cnt*PicoIfSpeed*1000 000)

(sum(PicoTxGoodOctetS umBadOctetTot)*8*100* K_UNIT*K_UNIT+((sum( PicoTxUnicastPacket)+s um(PicoTxBroadcastPac ket)+sum(PicoTxMultica stPacket))*20)*8*100)/(1 0*sum(PicoTxGoodOctet SumBadOctetCnt)*avg(P icoIfSpeed)*1000000)

that are oversize.

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PicoTxLinkUtiliz ationMax

%

Maximum link utilization of Ethernet frames transmitted to the Ethernet port

Y

OW

Period

float

0~100

-

max(PicoTxLinkUtilizatio nMax)

PicoTxErrorRate

%

Rate of error Ethernet frames transmitted to the Ethernet port

Y

OW

Period

float

0~100

(PicoTxUnderflow+Pic oTxDeferred+PicoTxE Collisions+PicoTxSColl isions+PicoTxMCollisio ns)*100/(PicoTxUnicas tPacket+PicoTxBroadc astPacket+PicoTxMulti castPacket+PicoTxUn derflow+PicoTxDeferre d+PicoTxECollisions+ PicoTxSCollisions+Pic oTxMCollisions)

(sum(PicoTxUnderflow)+ sum(PicoTxDeferred)+su m(PicoTxECollisions)+su m(PicoTxSCollisions)+su m(PicoTxMCollisions))*1 00/(sum(PicoTxUnicastP acket)+sum(PicoTxBroa dcastPacket)+sum(PicoT xMulticastPacket)+sum( PicoTxUnderflow)+sum( PicoTxDeferred)+sum(Pi coTxECollisions)+sum(Pi coTxSCollisions)+sum(Pi coTxMCollisions))

PicoTxGoodOct et

Mbytes

Total length of normal Ethernet frames transmitted to the Ethernet port

Y

CC_LL

10 s

int

0~21474836 47

-

-

PicoTxUnicastP acket

count

Number of unicast Ethernet frames transmitted to the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxBroadcast Packet

count

Number of broadcast Ethernet frames transmitted to the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxMulticast Packet

count

Number of multicast Ethernet frames transmitted to the Ethernet port

Y

CC

10 s

int

0~21474836 47

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PicoTxUnderflow

count

Count of Ethernet Frame of which remission to Ethernet Port was cut due to Transmit Underflow

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxDeferred

count

Number of delayed transmissions due to „media busy‟ state when ports are open in halfduplex mode.

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxECollision s

count

Number of packets whose transmission is cancelled due to excessive collision when ports are open in half-duplex mode.

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxSCollision s

count

Number of Ethernet frames where a single collision is detected before the Ethernet frames are transmitted to the media

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxMCollisio ns

count

Number of Ethernet frames where multiple collisions are detected before the Ethernet frames are transmitted to the media

Y

CC

10 s

int

0~21474836 47

-

-

PicoTxGoodOct etSumBadOctet Avg

Mbytes

Average value of the total frame length of normal and abnormal packets transmitted

-

GAUGE

10 s

int

0~21474836 47

PicoTxGoodOctetSum BadOctetTot/PicoTxGo odOctetSumBadOctet Cnt

sum(PicoTxGoodOctetS umBadOctetTot)/sum(Pi coTxGoodOctetSumBad OctetCnt)

PicoTxGoodOct etSumBadOctet Max

Mbytes

Maximum value of the total frame length of normal and abnormal packets transmitted

-

GAUGE

10 s

int

0~21474836 47

-

max(PicoTxGoodOctetS umBadOctetMax)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PicoTxGoodOct etSumBadOctet Tot

Mbytes

Sum of the total frame length of normal and abnormal packets transmitted

-

GAUGE

10 s

int

0~21474836 47

-

-

PicoTxGoodOct etSumBadOctet Cnt

count

Collection count of PicoTxGoodOctetSumBad OctetAvg

-

GAUGE

10 s

int

0~21474836 47

-

-

PicoIfSpeed

Mbps

Maximum bandwidth that can be transmitted to the ports

-

OW

10 s

int

0~21474836 47

-

avg(PicoIfSpeed)

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Chapter 2 Counter Description

RRC The following figure shows the statistical definition and message flow for each stage of the Idle to Active (Service Request) procedure by the UE, which allows to identify the overall handling of the RRC/E-RAB/S1 SIG statistics. Figure 1. RRC/E-RAB/S1 SIG Statistics Processing

EPC eNB

UE

MME

S-GW

1) Random Access Procedure 2) RRCConnectionRequest 3) RRCConnectionSetup [Step 1] RRC establishment 4) RRCConnectionSetupComplete 5) Initial UE Message (SERVICE REQUEST) (SERVICE REQUEST) 6) Authentication/NAS Security Setup

[Step 2] S1SIG setting

7) INITIAL CONTEXT SETUP REQUEST (SERVICE ACCEPT) 8) SecurityModeCommand [Step 3] E-RAB establishment

9) SecurityModeComplete 10) RRCConnectionReconfiguration (SERVICE ACCEPT) 11) RRCConnectionReconfiguration Complete

Uplink data

Uplink data

12) INITIAL CONTEXT SETUP RESPONSE 13) Modify Bearer Request 14) Modify Bearer Response Downlink data

Downlink data

Step

Description

1)

The UE performs the Random Access procedure with the eNB.

2)-4)

The UE transmits the NAS SERVICE REQUEST message to the MME. The SERVICE REQUEST message is encapsulated in an RRC message transmitted to the eNB.

5)

The Pico eNB includes the SERVICE REQUEST message in the INITIAL UE message, which is an S1-AP Control message, and transmits it to the MME.

6)

If there is no UE context for the UE in the network, the integrity is not protected for the ATTACH REQUEST message, or the integrity check fails, an authentication and an NAS security setup are always performed. The UE

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27

Chapter 2 Counter Description Step

Description performs the EPS AKA procedure (TS 33.401, 6.1.1) with the MME. The MME sets up an NAS security association with the UE using the NAS SMC procedure (TS 33.401, 7.2.4.4).

7)

The MME transmits the S1-AP Initial Context Setup Request message to the eNB. his step activates both the radio bearer and S1 bearer for all active EPS bearers.

8)-11)

The eNB sets up the RRC radio bearers. The user plane security is set up at this step. The uplink data from the UE can be sent to the S-GW by the S-GW. The eNB transmits the uplink data to the S-GW, and then the S-GW transmits it to the P-GW.

12)

The Pico eNB transmits the INITIAL CONTEXT SETUP RESPONSE message (S1-AP) to the MME.

13)-14)

For each PDN connection, the MME transmits the Modify Bearer Request message to the S-GW. Now, the S-GW can transmit the downlink data to the UE. The S-GW transmits the Modify Bearer Response message to the MME.

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Chapter 2 Counter Description

RRC Connection Establishment This section provides access statistics between RRC connection request and RRC connection setup completions collected for each cell. The access call is identified by the establishment cause within the RRC connection request message initially informed by the UE. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EstabCause

RRC Connection Establishment Cause  0: emergency (Emergency call connection)  1: highPriorityAccess (Access by the UE with a specific access class)  2: mt_Access (Access by the UE due to paging received)  3: mo_Signaling (Access by the UE due to attach)  4: mo_Data (Access by the UE due to service request)  5: delay_tolerant_access: Access by the delay tolerant access

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnEstabAtt

count

The attempt count for RRC ESTAB

Y

CC

event

int

0~2147483647

-

-

ConnEstabSucc

count

RRC ESTAB success count.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_CpCcT o

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP and GTP) during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_CpCcF

count

A call is released due to reset

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

notification (eNB failure or block restart) from ECMB or by ECCB during RRC establishment.

ConnEstabFail_UpMac Fail

count

A call is released due to the failure in the MAC block during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_UpPdcp Fail

count

A call is released due to the failure in the PDCP block during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_UpRlcF ail

count

A call is released due to the failure in the RLC block during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_RrcSigT o

count

A call is released due to RRC uplink message timeout (not received) during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_S1apLi nkFail

count

A call is released due to S1 SCTP link failure during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabFail_S1apSi gFail

count

A call is released due to receiving S1AP signaling during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabReject_CpC cFail

count

A call cannot be accepted because the cell is barred after receiving the RRC Connection Request message, or there is no MME available for service during RRC establishment.

Y

CC

event

int

0~2147483647

-

-

ConnEstabReject_CpC apaCacFail

count

A call cannot be accepted due to Call Admission Control after receiving the RRC Connection Request message during RRC

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ConnEstabReject_S1ap MmeOvld

count

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Y

CC

event

int

0~2147483647

-

-

establishment. A call cannot be accepted due to MME overload during RRC establishment.

Collection Time (Success) Figure 2. Collection Time for RRC Connection Establishment UE

eNB

MME

S/GW

RRC_IDLE Random Access Preamble Random Access Response Rrc Connection Request 1

Attempt

2

Success

Rrc Connection Setup Rrc Connection Setup Complete Initial UE Message

RRC_CONNECTED

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Chapter 2 Counter Description

Collection Time (Failure) Figure 3. Collection Time for RRC connection establishment (Reject) UE

eNB

MME

S/GW

RRC_IDLE Random Access Preamble Random Access Response Rrc Connection Request Rrc Connection Reject

1 Attempt 2 Reject - ConnEstabReject_CpCcFail - ConnEstabReject_CpCapaCacFail - ConnEstabReject_S1apMmeOvld RRC_CONNECTED

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Chapter 2 Counter Description Figure 4. Collection Time for ConnEstabFail_RrcSigTo (Failure) UE

eNB

MME

S/GW

RRC_IDLE Random Access Preamble Random Access Response Rrc Connection Request 1 Attempt Rrc Connection Setup Timer RRCConnectionSetup (Rrc Connection Setup Complete)

2 Failure - ConnEstabFail_RrcSigTo RRC_CONNECTED

For statistics on RRC connection establishment, Attempt, Success, Fail and Reject statistics are counted. Attempt statistic is counted when the RRC Connection Request message is received. Success statistic is counted when the messages up to RRC Connection Setup Complete are successfully received. When a timeout or internal failure occurs during the procedure from 1 to 2 in the figure above, it is counted as Fail, returning the cause value. Reject statistic is counted when the eNB determines that the call cannot be accepted after receiving the RRC Connection Request message, and the applicable cause value is recorded.

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Chapter 2 Counter Description

RRC Connection Reconfiguration This section provides statistics for RRC Connection Reconfiguration’s count for each cell. There is no Fail statistic as the RRC Connection Reconfiguration message is transmitted down from the SeNB and the RRC Connection Reconfiguration Complete message is transmitted to the TeNB. In this case, the attempt and success counts in the reconfiguration statistics for the eNB can be different. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnReconfigAtt

count

RRC Connection Reconfiguration attempt count.

Y

CC

event

int

0~2147483647

-

-

ConnReconfigSucc

count

RRC Connection Reconfiguration success count.

Y

CC

event

int

0~2147483647

-

-

SCellAddCount

count

Number of times that ScellTo AddMod is included in RRC Connection Reconfiguration during the CA procedure

Y

CC

event

int

0~2147483647

-

-

SCellReleaseCount

count

Number of times that ScellTo Release is included in RRC Connection Reconfiguration during the CA procedure

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 5. Collection Time for RRC Connection Reconfiguration UE

eNB

MME

S/GW

RRC_IDLE

Rrc Connection Reconfiguration

1

Attempt

Rrc Connection Reconfiguration Complete 2 Success

RRC_CONNECTED

The transmission of the RRC Connection Reconfiguration to the UE is counted as Attempt, while the receipt of RRC Connection Reconfiguration Complete from the UE is counted as Success. Upon handover, the source eNB transmits RRC Connection Reconfiguration (handover command) to the UE; the UE transmits RRC Connection Reconfiguration Complete (handover command complete) to the target eNB. Therefore, a fail count is not returned because it is not possible to determine transmission failure.

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Chapter 2 Counter Description

RRC Connection Re-establishment As shown below, when a RRC Reestablishment cause occurs with the UE in RRC connected state, statistics on the RRC connection Reestablishment are collected for each cell. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

ReEstabCause

RRC Connection Reestablishment Cause  0 (reconfigurationFailure): Reestablishment occurs due to reconfiguration failure  1 (handoverFailure): Reestablishment occurs due to handover failure  2 (otherFailure): Reestablishment occurs due to other failures  3: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Collection Time

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnReEstabAtt

count

The attempt count for RRC_ REESTAB

Y

CC

event

int

0~2147483647

-

-

ConnReEstabSucc

count

The success count for RRC_REESTAB

Y

CC

event

int

0~2147483647

-

-

ConnReEstabFail_CpC cFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

ConnReEstabFail_UpM acFail

count

A call is released due to the failure in the MAC block during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Collection Time

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnReEstabFail_UpP dcpFail

count

A call is released due to the failure in the PDCP block during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

ConnReEstabFail_UpRl cFail

count

A call is released due to the failure in the RLC block during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

ConnReEstabFail_RrcS igTo

count

A call is released due to RRC uplink message timeout (not received) during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

ConnReEstabFail_S1ap LinkFail

count

A call is released due to receiving S1AP signaling during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

ConnReEstabFail_S1ap SigFail

count

A call is released due to S1AP signaling timeout (not received) during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

ConnReEstabReject_C pCcFail

count

This count collects when eNB cannot perform Reestablishment procedure.  The eNB could not find the UE Context information when RRC Connection Reestablishment Request message is received.  The eNB received the RRC Connection Reestablishment Request message while waiting for the SN Status Transfer message from the source eNB or the MME Status

Y

CC

event

int

0~2147483647

-

-

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37

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Collection Time

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Transfer message from the MME.  The relevant cell is barred when the RRC Connection Reestablishment Request message is received from UE. ConnReEstabReject_C pCapaCaccFail

count

A call cannot be accepted due to Call Admission Control when eNB receive the RRC Connection Reestablishment Request message from UE

Y

CC

event

int

0~2147483647

-

-

ConnReEstabReject_C pQosCacFail

count

A call cannot be accepted due to insufficient QoS-based eNB resources during RRC Reestablishment.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 6. Collection Time for RRC Connection Re-Establishment UE

eNB

MME

S/GW

RRC_IDLE Rrc Connection Reestablishment Request 1

Attempt

Rrc Connection Reestablishment

Rrc Connection Reestablishment Complete 2 Success

RRC_CONNECTED

When RRC Connection Reestablishment Request is received, it is counted as an attempt. If the call context exists in the eNB and the security key value uploaded by the UE matches, RRC Connection Re-establishment is transmitted to the UE; and when RRC Connection Re-establishment Complete is received, it is counted as Success. If a call text does not exist in the eNB or the security key value uploaded by the UE does not match, the RRC Connection Reestablishment Reject is transmitted to the UE and is counted as a Reject. Then, if the RRC Connection Reestablishment Complete is not received, the call is released.

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Chapter 2 Counter Description

Collection Time (Failure) Figure 7. Collection Time for ConnReEstabFail_RrcSigTo UE

eNB

MME

S/GW

RRC_IDLE Rrc Connection Reestablishment Request Rrc Connection Reestablishment Rrc Connection Reestablishment Complete

1 Attempt

Timer RRCConnectonReEstablish 2 Failure - ConnReEstabFail_RrcSigTo RRC_CONNECTED

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40

Chapter 2 Counter Description Figure 8. Collection Time for ConnReEstabFail_S1apSigFail (1) UE

eNB

MME

S/GW

RRC_IDLE Rrc Connection Reestablishment Request 1 Attempt Rrc Connection Reestablishment UE Contexst Release Command 2 Failure - ConnReEstabFail_S1apSigFail RRC_CONNECTED

Figure 9. Collection Time for ConnReEstabFail_S1apSigFail (2) UE

eNB

MME

S/GW

RRC_IDLE Rrc Connection Reestablishment Request Rrc Connection Reestablishment

1 Attempt S1AP Reset 2 Failure - ConnReEstabFail_S1apSigFail RRC_CONNECTED

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41

Chapter 2 Counter Description

RRC Connection Release This section provides statistics data for RRC Connection Release for each cell. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnRelease_CpCcNo rmal

count

A call is released in eNB upon RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_CpCcTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP and GTP) during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_CpCcFai l

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_UpGtpF ail

count

A call is released due to the failure in the GTP block during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_UpMacF ail

count

A call is released due to the failure in the MAC block during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_UpMacU EInact

count

A call is released due to UE inactivity in the eNB during RRC release.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnRelease_UpPdcp Fail

count

A call is released due to the failure in the PDCP block during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_UpRlcFa il

count

A call is released due to the failure in the RLC block during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_RrcHcTo

count

A call is released due to HO command timeout (not received) during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_RrcSigF ail

count

A call is released due to receiving RRC signaling during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_RrcSigT o

count

A call is released due to RRC uplink message timeout (not received) during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_CpBhCa cFail

count

A call is released due to insufficient backhaul-based eNB resources during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_CpCapa CacFail

count

A call is released due to insufficient capacity-based eNB resources during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_CpQosC acFail

count

A call is released due to insufficient QoS-based eNB resources during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_S1apCu Fail

count

A call is released due to the S1AP specification cause during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_S1apLin kFail

count

A call is released due to S1 SCTP link failure during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_S1apRo

count

A call is released due to S1AP relocoverall timeout (not received)

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

To

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

during RRC release.

ConnRelease_S1apSig Fail

count

A call is released due to receiving S1AP signaling during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_S1apSig To

count

A call is released due to S1AP signaling timeout (not received) during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_X2apCu Fail

count

A call is released due to the X2AP specification cause during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_X2apLin kFail

count

A call is released due to X2 SCTP link failure during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_X2apRo To

count

A call is released due to X2AP RelocOverall timeout (not received) during RRC release.

Y

CC

event

int

0~2147483647

-

-

ConnRelease_X2apSig Fail

count

A call is released due to X2AP signaling received during RRC release.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time Figure 10. Collection Time for RRC Connection Release UE

eNB

MME

S/GW

RRC_IDLE

Rrc Connection Release 1

Count

RRC_CONNECTED

Call statistics are released when RRC connection is released. Since RRC connection release cause is returned, it is possible to determine call release cause.

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Chapter 2 Counter Description

RRC Connection Number This section provides statistics data for the average RRC connection count per unit time and the maximum RRC connection count for each cell. The RRC connection count is collected every 2 seconds, and the statistics block calculates the average, maximum and total values per minute using the collected data. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnNoAvg

count

Average RRC connection per unit time

Y

GAUGE

2s

float

0~3.4*10^38

ConnNoTot/C onnNoCnt

sum(ConnNoTot)/sum(C onnNoCnt)

ConnNoMax

count

Maximum RRC connection per unit time

Y

GAUGE

2s

float

0~3.4*10^38

-

max(ConnNoMax)

ConnNoTot

count

Sum of ConnNoAvg collected

Y

GAUGE

2s

float

0~3.4*10^38

-

-

ConnNoCnt

count

Collected ConnNoAvg count

-

GAUGE

2s

int

0~2147483647

-

-

ReleaseCallHolding TimeAvg

s

Average Release Call Holding Time during which the RRC connection was maintained which is calculated based on call release.

Y

SI

event

float

0~60*Period

ReleaseCallH oldingTimeTot /ReleaseCallH oldingTimeCnt

sum(ReleaseCallHolding TimeTot)/sum(ReleaseC allHoldingTimeCnt)

ReleaseCallHolding TimeTot

s

Total RRC Connection Release Call Holding Time

Y

SI

event

float

0~60*Period

-

-

ReleaseCallHolding TimeCnt

count

Call Release Count

Y

SI

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

RRC Connection Setup Time This section provides statistics for the RRC connection count by PLMN and Cell. Collects the statistics data for the average RRC connection count and the maximum RRC connection count for each PLMN and cell. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EstabCause

RRC Connection Establishment Cause  0: emergency: Emergency call connection  1: highPriorityAccess: Access by the UE with a specific access class  2: mt_Access: Access by the UE due to paging received  3: mo_Signaling: Access by the UE due to attach  4: mo_Data: Access by the UE due to service request  5: delay_tolerant_access: Access by the delay tolerant access

EarfcnDl

Cell Frequency(EARFCN DL)

Type Name

Unit

Description

Visible

Counter Type

Collection Time

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnEstabTimeAvg

ms

Average RRC connection setup time

Y

GAUGE

event

float

0~60*Period *1000

ConnEstabTime Tot/ConnEstabTi meCnt

sum(ConnEstabTimeT ot)/sum(ConnEstabTim eCnt)

ConnEstabTimeMax

ms

Maximum RRC connection setup time

Y

GAUGE

event

float

0~60*Period *1000

-

max(ConnEstabTimeM ax)

ConnEstabTimeTot

ms

Sum of ConnEstabTimeAvg collected

Y

GAUGE

event

float

0~3.4*10^38

-

-

ConnEstabTimeCnt

count

Collected ConnEstabTime Avg count

-

GAUGE

event

int

0~21474836 47

-

-

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Chapter 2 Counter Description

Collection Time Figure 11. Collection Time for RRC Connection Number UE

eNB

MME

S/GW

RRC_IDLE

Rrc Connection Request Rrc Connection Setup

RRC Connection Setup time

Rrc Connection Setup Complete Initial UE Message RRC_CONNECTED

The RRC Connection setup time is taken from receiving the RRC Connection Request message up to receiving the RRC Connection Setup Complete message. The eNB calculates and reports to the LSM the average and maximum values for the collection period (in milliseconds).

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Chapter 2 Counter Description

RRC Connection Re-establishment Time This section provides statistics data for the average and maximum RRC Connection Reestablishment Setup times. The cause is identified by the RRC connection Reestablishment cause informed by the UE. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

ReEstabCause

RRC Connection Reestablishment Cause  0: reconfigurationFailure: Reestablishment occurs due to reconfiguration failure  1: handoverFailure: Reestablishment occurs due to handover failure  2: otherFailure: Reestablishment occurs due to other failures  3: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnReEstabT imeAvg

ms

Average RRC connection reestablishment setup time

Y

GAUGE

event

float

0~60*Period*1000

ConnReEstabTi meTot/ConnRe EstabTimeCnt

sum(ConnReEstabTimeTot)/ sum(ConnReEstabTimeCnt)

ConnReEstabT imeMax

ms

Maximum RRC connection reestablishment setup time

Y

GAUGE

event

float

0~60*Period*1000

-

max(ConnReEstabTimeMax )

ConnReEstabT imeTot

ms

Sum of ConnReEstab TimeAvg collected

Y

GAUGE

event

float

0~3.4*10^38

-

-

ConnReEstabT imeCnt

count

Collected ConnReEstab TimeAvg count

-

GAUGE

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time Figure 12. Collection Time for RRC Connection Reestablishment Time UE

eNB

MME

S/GW

RRC_IDLE

Rrc Connection Reestablishment Request Rrc Connection Reestablishment

RRC Connection Resetup time

Rrc Connection Reestablishment Complete

RRC_CONNECTED

The RRC Connection setup time is a time taken from receiving the RRC Connection Request message up to receive in the RRC Connection Setup Complete message. The eNB calculates and reports to the LSM the average and maximum values for the collection period (in milliseconds).

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Chapter 2 Counter Description

Call Drop Call drop statistics are calculated for successfully connected calls that abnormally dropped due to eNB failure or by the MME. They are identified by the RRC connection establishment cause informed by the UE. Successful call connection indicates that the default bearer setup is successful or incoming handover is successful for a call. However, calls released by the eNB due to user inactivity, normally released by the MME, and released by the UE duplication are not considered abnormally terminated. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

CallDropEstabCause

RRC Connection Establishment Cause  0: emergency: Emergency call connection  1: highPriorityAccess: Access by the UE with a specific access class  2: mt_Access: Access by the UE due to paging received  3: mo_Signaling: Access by the UE due to attach  4: mo_Data: Access by the UE due to service request  5: delay_tolerant_access: Access by the delay tolerant access  6: relocated: Access by the UE due to handover

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CallDrop_EccbDspAuditR lcMacCallRelease

count

A call is released due to the resource mismatch, because the ECCB has remaining calls but the RLC and the MAC have no call remaining.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbRcvReset

count

A call is released due to

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

RequestFromEcmb

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

receiving a reset request from the ECMB block due to refork of a specific block in eNB.

CallDrop_EccbRcvCellRe leaseIndFromEcmb

count

A call is released due to the Cell Release Ind message received from the ECMB block because of DSP down or CPRI failure caused by DSP problem.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbRadioLink Failure

count

A call is released due to radio link fail.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbDspAuditM acCallRelease

count

A call is released due to the resource mismatch, because the ECCB and the RLC have remaining calls but the MAC has no call remaining.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbArqMaxRe Transmission

count

A call is released when ARQ ACK is not received from the UE after the RLC performs transmission as many as the Max Retransmission to the UE.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbDspAuditR lcCallRelease

count

A call is released due to the resource mismatch, because the ECCB and the MAC have remaining calls but the RLC has no call remaining.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbTmoutRrc ConnectionReconfig

count

A call is released when the RRC Connection Reconfiguration Complete message is not received from the UE after transmitting the RRC Connection Reconfiguration message.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CallDrop_EccbTmoutRrc ConnectionReestablish

count

A call is released when the RRC Connection Reestablishment Complete message is not received from the UE after transmitting the RRC Connection Reestablishment message to the UE.

Y

CC

event

int

0~2147483647

-

-

CallDrop_EccbS1SctpOut OfService

count

A call is released when the S1 Association‟s status is changed from In Service to Out of Service state.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

E-RAB E-RAB Setup This section provides statistics data for the default bearer setup to activate the initial DRB’s radio and S1 bearer. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EstabCause

RRC Connection Establishment Cause  0: emergency: Emergency call connection  1: highPriorityAccess: Access by the UE with a specific access class  2: mt_Access: Access by the UE due to paging received  3: mo_Signaling: Access by the UE due to attach  4: mo_Data: Access by the UE due to service request  5: delay_tolerant_access: Access by the delay tolerant access

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EstabInitAttNbr

count

ERAB setup attempt count.

Y

CC

event

int

0~2147483647

-

-

EstabInitSuccNbr

count

ERAB setup success count.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_CpC cTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP and

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ErabInitFailNbr_CpC cFail

count

ErabInitFailNbr_UpGt pFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

count

A call is released due to the failure in the GTP block during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_UpM acFail

count

A call is released due to the failure in the MAC block during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_UpP dcpFail

count

A call is released due to the failure in the PDCP block during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_UpRl cFail

count

A call is released due to the failure in the RLC block during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_RrcSi gFail

count

A call is released due to receiving RRC signaling during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_RrcSi gTo

count

A call is released due to ERAB uplink message timeout (not received) during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_CpB hCacFail

count

A call is released due to insufficient backhaul-based eNB resources during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_CpC apaCacFail

count

A call is released due to insufficient capacity-based eNB resources during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabInitFailNbr_CpQ osCacFail

count

A call is released due to insufficient QoS-based eNB

Y

CC

event

int

0~2147483647

-

-

GTP) during ERAB setup.

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Chapter 2 Counter Description Name

Unit

ErabInitFailNbr_S1ap CuFail

count

ErabInitFailNbr_S1ap LinkFail ErabInitFailNbr_S1ap SigFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released due to the S1AP specification cause during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

count

A call is released due to S1 SCTP link failure during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

count

A call is released due to receiving S1AP signaling during ERAB setup.

Y

CC

event

int

0~2147483647

-

-

resources during ERAB setup.

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Chapter 2 Counter Description

Collection Time (Success) Figure 13. Collection Time for E-RAB Setup UE

eNB

MME

S/GW

RRC_CONNECTED Authentication Procedure (NAS) Initial Context Setup Request Security Mode Command

1

Attempt

2

Success

Security Mode Complete Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete Initial Context Setup Response RRC_CONNECTED

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Chapter 2 Counter Description

Collection Time (Failure) Figure 14. Collection Time for ErabInitFailNbr_RrcSigTo UE

eNB

MME

S/GW

RRC_CONNECTED Authentication Procedure (NAS) Initial Context Setup Request

1 Attempt

Security Mode Command

(Security Mode Complete)

Timer SecurityModeCommand - ErabInitFailNbr_ RrcSigTo

Rrc Connection Reconfiguration

(Security Mode Complete)

Timer RRCConnectonReconfiguration - ErabInitFailNbr_ RrcSigTo Initial Context Setup failure

2 Failure - ErabInitFailNbr_ RrcSigTo

RRC_CONNECTED

For E-RAB setup count statistics, Attempt is counted when the Initial Context Setup Request message is received during the initial call setup, and Success is counted when the Initial Context Setup Response message is transmitted. A failure is counted when a timeout or failure occurs during the procedure and the applicable cause value is recorded.

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Chapter 2 Counter Description

E-RAB Setup Add This section provides statistics data for the number of additional E-RAB (dedicated bearer) setups by the MME following the initial default bearer setup. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EstabAddAttNbr

count

The number of attempts for additional ERAB setup

Y

CC

event

int

0~2147483647

-

-

EstabAddSuccNbr

count

The number of successes for additional ERAB setup

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_CpC cTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_CpC cFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_UpG tpFail

count

A call is released due to the failure in the GTP block during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_UpM

count

A call is released due to the failure in

Y

CC

event

int

0~214743647

-

-

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Chapter 2 Counter Description Name

Unit

acFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

the MAC block during additional ERAB setup.

ErabAddFailNbr_UpP dcpFail

count

A call is released due to the failure in the PDCP block during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_UpR lcFail

count

A call is released due to the failure in the RLC block during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_Rrc SigFail

count

A call is released due to receiving RRC signaling during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_Rrc SigTo

count

A call is released due to ERAB uplink message timeout (not received) during additional RRC setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_CpB hCacFail

count

A call is released due to insufficient backhaul-based eNB resources during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_CpC apaCacFail

count

A call is released due to insufficient capacity-based eNB resources during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_CpQ osCacFail

count

A call is released due to insufficient QoS-based eNB resources during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_S1a pCuFail

count

A call is released due to the S1AP specification cause during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_S1a pLinkFail

count

A call is released due to S1 SCTP link failure during additional ERAB setup.

Y

CC

event

int

0~2147483647

-

-

ErabAddFailNbr_S1a pSigFail

count

A call is released due to receiving S1AP signaling during additional

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ErabAddFailNbr_CpC cInteraction

count

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Y

CC

event

int

0~2147483647

-

-

ERAB setup. A failure occurs due to ERAB Setup request from the MME during inter eNB handover

Collection Time (Success) Figure 15. Collection Time for E-RAB Setup Add UE

eNB

MME

S/GW

RRC_CONNECTED E-RAB Setup Request

1

Attempt

2

Success

Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete E-RAB Setup Response

RRC_CONNECTED

For additional E-RAB setup count statistics, Attempt is counted when the E-RAB Setup Request message is received during the additional E-RAB setup, and Success is counted when the E-RAB Setup Response message is transmitted. A Failure is counted when a timeout or failure occurs during the procedure and the applicable cause value is recorded.

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Chapter 2 Counter Description

Collection Time (Failure) Figure 16. Collection Time for ErabAddFailNbr_RrcSigFail UE

eNB

MME

S/GW

RRC_CONNECTED E-RAB Setup Request 1 Attempt

Rrc Connection Request E-RAB Setup Response

2 Failure - ErabAddFailNbr_ RrcSigFail

Figure 17. Collection Time for ErabAddFailNbr_RrcSigTo UE

eNB

MME

S/GW

RRC_CONNECTED E-RAB Setup Request 1 Attempt Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete

PLDTimerInfoPhy:: rrcConnectionReconfig

E-RAB Setup Response 2 Failure - ErabAddFailNbr_ RrcSigTo

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Chapter 2 Counter Description Figure 18. Collection Time for ErabAddFailNbr_S1apSigFail (1) UE

eNB

MME

S/GW

RRC_CONNECTED E-RAB Setup Request 1 Attempt Rrc Connection Reconfiguration UE Context Release Command Failure - ErabAddFailNbr_ S1apSigFail

2

Figure 19. Collection Time for ErabAddFailNbr_S1apSigFail (2) UE

eNB

eNB

MME

S/GW

RRC_CONNECTED X2 HandoverRequest E-RAB Setup Request

1 Attempt

E-RAB Setup Response Failure - ErabAddFailNbr_ S1apSigFail

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63

Chapter 2 Counter Description

E-RAB Setup Time This section provides statistics data for the average E-RAB Setup time and the maximum E-RAB Setup time for each cell. Collects when the initial E-RAB Setup procedure and additional E-RAB Setup procedure. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EstabTimeAvg

ms

Average E-RAB setup time

Y

GAUGE

event

int

0~60*Period*1000

EstabTimeTot/Est abTimeCnt

sum(EstabTimeTot)/s um(EstabTimeCnt)

EstabTimeMax

ms

Maximum E-RAB setup time

Y

GAUGE

event

int

0~60*Period*1000

-

max(EstabTimeMax)

EstabTimeTot

ms

Sum of EstabTimeAvg collected

Y

GAUGE

event

int

0~2147483647

-

-

EstabTimeCnt

count

Number of EstabTimeAvg events collected

Y

GAUGE

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time Figure 20. Collection Time for E-RAB Setup Time UE

eNB

MME

S/GW

RRC_IDLE Initial Context Setup Request Security Mode Command Security Mode Complete

E-RAB Setup time

RRC Connection Reconfiguration RRC Connection Reconfiguration Complete Initial Context Setup Response

RRC_CONNECTED

The E-RAB setup time indicates the duration from receiving the Initial Context Setup Request message up to transmitting the Initial Context Setup Response, which is reported in milliseconds. The statistics block calculates the average and maximum values of the setup time during the collection period.

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Chapter 2 Counter Description

E-RAB Erase Request This section provides statistics data for the E-RAB release requests made by the eNB by transmitting the UE Context Release Request message. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EraseAttbyEnb_ CpCcTo

count

A call is released due to the call control timeout of the protocol block (MAC, RLC, PDCP, GTP) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ CpCcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB when an eNB-initiated UE Context Release occurs or by the ECCB block.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ UpGtpFail

count

A call is released due to internal failure of the GTP block when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ UpMacFail

count

A call is released due to internal failure of the MAC block when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ UpMacUEInact

count

A call is released due to UE inactivity in eNB when an eNB-initiated UE Context

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

EraseAttbyEnb_ UpPdcpFail

count

EraseAttbyEnb_ UpRlcFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released due to internal failure of the PDCP block when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

count

A call is released due to internal failure of the RLC block when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ RrcHcTo

count

A call is released due to HO command timeout (not received) when an eNBinitiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ RrcSigFail

count

A call is released due to receiving RRC signaling when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ RrcSigTo

count

A call is released due to S1AP signaling timeout (not received) when an eNBinitiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ S1apCuFail

count

A call is released due to the S1AP specification cause occurred when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ S1apRoTo

count

A call is released due to S1AP RelocOverall timeout (not received) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ S1apSigTo

count

A call is released due to S1AP signaling timeout (not received) when an eNBinitiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

EraseAttbyEnb_ X2apRoTo

count

A call is released due to X2AP RelocOverall timeout (not received) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483647

-

-

Release occurs.

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Chapter 2 Counter Description

Collection Time (Success) Figure 21. Collection Time for eNB E-RAB Erase Request UE

eNB

MME

S/GW

RRC_CONNECTED Count

1

UE Context Release Request UE Context Release Command

RRC Connection Release

UE Context Release Complete

RRC_CONNECTED

The eNB E-RAB erase request refers to deleting the UE context. When the eNB needs to release the UE context, it transmits the UE Context Release Request message to the MME, and counts statistics.

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Chapter 2 Counter Description

Collection Time (Failure) Figure 22. Collection Time for EraseAttbyEnb_RrcHcTo (Inter X2 Handover) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision

1 Attempt

Handover Request 2 Prepare

Handover Request Acknowledge

Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete

Timer RRCConnectionReconfiguration Erase AttbyEnb_RRC_HC_TO (Intra eNB HO) EraseAttbyEnb_RrcHcTo (Intra eNB HO)

3 Failure

RRCC2 nectionReconfig uration

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Chapter 2 Counter Description Figure 23. Collection Time for EraseAttbyEnb_RrcHoTo (Inter S1 Handover) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision

1 Attempt Handover Request Handover Request Handover Request Acknowledge

2 Prepare

Handover Command

Rrc Connection Reconfiguration

Timer RRCConnectionReconfiguration eNB Status Transfer

Rrc Connection Reconfiguration Complete

3 Failure EraseAttbyEnb_RrcHcTo (Intra eNB HO)

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Chapter 2 Counter Description Figure 24. Collection Time for EraseAttbyEnb_RrcHcTo (Intra eNB Handover) UE

eNB

UE moves to Intra eNB Cell Measurement Report Attempt

1

Prepare 2 Rrc Connection Reconfiguration

HO Decision Target Cell Preparation

Rrc Connection Reconfiguration Complete

Timer RRCConnectionReconfiguration 3 Failure EraseAttbyEnb_RrcHcTo (Intra eNB HO)

Figure 25. Collection Time for EraseAttbyEnb_RrcSigFail UE

eNB

MME

S/GW

RRC_CONNECTED Count 1 RRC Connection Request

UE Context Release Request

UE Context Release Command 2 Failure EraseAttbyEnb_RrcSigFail

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Chapter 2 Counter Description Figure 26. Collection Time for EraseAttbyEnb_S1apSigTo UE

eNB

MME

S/GW

RRC_CONNECTED Count

1

UE Context Release Request

Timer s1UeContextRelease UE Context Release Command 2 Failure EraseAttbyEnb_S1apSigTo

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Chapter 2 Counter Description

E-RAB Erase This section provides statistics data for the E-RAB release request through the UE Context Release Request transmission and the E-RAB release request through the UE Context Release Command from the MME for each cell. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EraseErabAtt

count

The number of the E-RAB release attempts using the UE Context Release command.

Y

CC

event

int

0~2147483 647

-

-

EraseErabSucc

count

The number of the E-RAB release successes using the UE Context Release command.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnbT ot

count

The number of the E-RAB release requests made by the eNB using the UE Context Release Request message

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ CpCcTo

count

A call is released due to the call control timeout of the protocol block (MAC, RLC, PDCP, GTP) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_

count

A call is released due to reset notification (eNB failure or block

Y

CC

event

int

0~2147483

-

-

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Chapter 2 Counter Description Name

Unit

CpCcFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

647

restart) from ECMB when an eNBinitiated UE Context Release occurs or by the ECCB block.

EraseErabAttbyEnb_ UpGtpFail

count

A call is released due to internal failure of the GTP block when an eNBinitiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ UpMacFail

count

A call is released due to internal failure of the MAC block when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ UpMacUEInact

count

A call is released due to UE inactivity in eNB when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ UpPdcpFail

count

A call is released due to internal failure of the PDCP block when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ UpRlcFail

count

A call is released due to internal failure of the RLC block when an eNBinitiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ RrcHcTo

count

A call is released due to HO command timeout (not received) when an eNBinitiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ RrcSigFail

count

A call is released due to receiving RRC signaling when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ RrcSigTo

count

A call is released due to S1AP signaling timeout (not received) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_

count

A call is released due to the S1AP

Y

CC

event

int

0~2147483

-

-

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Chapter 2 Counter Description Name

Unit

S1apCuFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

647

specification cause occurred when an eNB-initiated UE Context Release occurs.

EraseErabAttbyEnb_ S1apRoTo

count

A call is released due to S1AP RelocOverall timeout (not received) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ S1apSigTo

count

A call is released due to S1AP signaling timeout (not received) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

EraseErabAttbyEnb_ X2apRoTo

count

A call is released due to X2AP RelocOverall timeout (not received) when an eNB-initiated UE Context Release occurs.

Y

CC

event

int

0~2147483 647

-

-

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Chapter 2 Counter Description

Collection Time Figure 27. Collection Time for E-RAB Erase UE

eNB

MME

S/GW

RRC_CONNECTED UE Context Release Command Attempt

1

Rrc Connection Release

UE Context Release Complete Success

2 RRC_CONNECTED

For E-RAB ERASE statistics, an Attempt is counted when the UE Context Release Command is received, and Success is counted when the UE Context Release Complete message is transmitted.

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Chapter 2 Counter Description

E-RAB Modify This section provides statistics data for the E-RAB Modify count for each cell. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ModQoSAttNbr

count

The number of ERAB Modify attempts.

Y

CC

event

int

0~2147483647

-

-

ModQoSSuccNbr

count

The number of ERAB Modify successes.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_C pCcTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP and GTP) during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_C pCcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by the ECCB block during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_U pGtpFail

count

A call is released due to the failure in the GTP block during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_U pMacFail

count

A call is released due to the failure in the MAC block during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_U

count

A call is released due to the failure in

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

pPdcpFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

the PDCP block during ERAB Modify.

ModQoSFailNbr_U pRlcFail

count

A call is released due to the failure in the RLC block during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_Rr cSigFail

count

A call is released due to receiving RRC signaling during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_Rr cSigTo

count

A call is released due to ERAB uplink message timeout (not received) during RRC Modify procedure

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_C pBhCacFail

count

A call is released due to insufficient backhaul-based eNB resources during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_C pCapaCacFail

count

A call is released due to insufficient capacity-based eNB resources during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_C pQosCacFail

count

A call is released due to insufficient QoS-based eNB resources during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_S 1apCuFail

count

A call is released due to the S1AP specification cause during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_S 1apLinkFail

count

A call is released due to S1 SCTP link failure during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_S 1apSigFail

count

A call is released due to receiving S1AP signaling during ERAB Modify.

Y

CC

event

int

0~2147483647

-

-

ModQoSFailNbr_C pCcInteraction

count

A failure occurs due to ERAB Modify request from the MME during inter eNB handover

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 28. Collection Time for E-RAB Modify UE

eNB

MME

S/GW

RRC_CONNECTED E-RAB Modify Request Attempt

1

Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete E-RAB Modify Response Success

2 RRC_CONNECTED

For E-RAB Modify statistics, Attempt is counted when the E-RAB Modify Request message is received from the MME, and Success is counted when the E-RAB Modify Response message is transmitted. A Failure is counted when the E-RAB Modify procedure fails due to an internal timeout or failure, and the applicable cause value is recorded.

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Chapter 2 Counter Description

Collection Time (Failure) Figure 29. Collection Time for ModQoSFailNbr_RrcSigTo UE

eNB

MME

S/GW

RRC_CONNECTED Attempt

E-RAB Modify Request

1

Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete

Timer RRCConnectionReconfiguration 2 Failure - ModQosFailNbr_RrcSigTo RRC_CONNECTED

Figure 30. Collection Time for ModQoSFailNbr_S1apSigFail UE

eNB

MME

S/GW

RRC_CONNECTED Attempt

1

E-RAB Modify Request

Rrc Connection Reconfiguration S1AP Reset 2 Failure - ModQosFailNbr_S1apSigFail

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Chapter 2 Counter Description Figure 31. Collection Time for ModQoSFailNbr_S1apSigFail UE

eNB

MME

S/GW

RRC_CONNECTED Attempt

1

E-RAB Modify Request

Rrc Connection Reconfiguration UE Context Release Command 2 Failure - ModQosFailNbr_S1apSigFail

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Chapter 2 Counter Description

E-RAB Release Request This section provides statistics data for the E-RAB release requests made by the eNB using the E-RAB Release Indication message for each cell. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RelAttbyEnbNbr _CpCcTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP and GTP) during eNBinitiated ERAB release.

Y

CC

event

int

0~2147483647

-

-

RelAttbyEnbNbr _S1apCuFail

count

Release due the S1AP specification cause during eNB-initiated ERAB release.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 32. Collection Time for eNB E-RAB Erase Request UE

eNB

MME

S/GW

RRC_CONNECTED Attempt

1

E-RAB Modify Request

Rrc Connection Reconfiguration UE Context Release Command 2 Failure - ModQosFailNbr_S1apSigFail

The eNB E-RAB Release statistics are counted when the eNB deletes the applicable bearers as needed and transmits the E-RAB Release Indication message to the MME.

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Chapter 2 Counter Description

Collection Time (Failure) Figure 33. Collection Time for RelAttbyEnbNbr_S1apCuFail UE

eNB

MME

S/GW

RRC_CONNECTED Count

1

E-RAB Release Indication E-RAB Release Command

Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete Fail

E-RAB Release Response 2

RelAttbyEnbNbr_S1apCuFail

RRC_CONNECTED

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Chapter 2 Counter Description

E-RAB Release This section provides statistics data for the E-RAB releases using the E-RAB Release Command. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RelAttNbr

count

Attempt count for E-RAB release by the ERAB Release command

Y

CC

event

int

0~2147483647

-

-

RelSuccNbr

count

Success count for E-RAB release by the ERAB Release command

Y

CC

event

int

0~2147483647

-

-

RelFailNbr_Cp CcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB block during MME-initiated ERAB release.

Y

CC

event

int

0~2147483647

-

-

RelFailNbr_S1 apSigFail

count

A call is released due to receiving S1AP signaling during MME-initiated ERAB release.

Y

CC

event

int

0~2147483647

-

-

RelFailNbr_S1 apCuFail

count

A call is released due to S1AP specification cause during MME-initiated ERAB release.

Y

CC

event

int

0~2147483647

-

-

RelActive

count

Number of active E-RABs, for which a call is released due to abnormal operation in eNB.

Y

CC

event

int

0~2147483647

-

-

RelFailNbr_Cp CcInteraction

count

A failure occurs due to ERAB Release request from the MME during inter eNB

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

handover

Collection Time (Success) Figure 34. Collection Time for E-RAB Release UE

eNB

MME

S/GW

RRC_CONNECTED E-RAB Release Command Attempt

1

Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete E-RAB Release Response Success

2 RRC_CONNECTED

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Chapter 2 Counter Description

Collection Time (Failure) Figure 35. Collection Time for RelFailNbr_S1apSigFail UE

eNB

MME

S/GW

RRC_CONNECTED Attempt

1

E-RAB Release Command UE Context Release Command

Fail RelFailNbr_S1apSigFail

E-RAB Release Response 2

RRC_CONNECTED

For E-RAB release statistics, when the E-RAB Release Request message is received from the MME, it is counted as Attempt; when the ERAB Release Response message is transmitted, it is counted as Success. A Failure is counted when the E-RAB Release procedure fails due to S1 MSG receiving, and the applicable cause value is recorded. Also, A Failure is counted when the procedure fails due to the ERAB Release Command or an internal timeout and failure, the applicable cause value is recorded.

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Chapter 2 Counter Description

E-RAB Session Time per Cell This section provides statistics data for the in-session time of the UE. In-session is defined as valid if a data transmission took place during the last 100 ms; it collects the in-session time of the UE which had data transmissions with the PDSCH/PUSCH during the statistics period. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SessionTimeU EAvg

ms

Average in-session time per UE

Y

SI

5.12 s

float

0~60*Period*10 00

SessionTimeUETot/S essionTimeUECnt

sum(SessionTimeUET ot)/sum(SessionTime UECnt)

SessionTimeU ETot

ms

Sum of SessionTimeUEAvg collected

Y

SI

5.12 s

float

0~3.4*10^38

-

-

SessionTimeU ECnt

count

Collected SessionTimeUE Avg count

-

SI

5.12 s

int

0~2147483647

-

-

Collection Time TTI

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Chapter 2 Counter Description

E-RAB Session Time per QCI This section provides statistics data for the in-session time per QCI. In-session is defined as valid if a data transmission took place during the last 100 ms; it collects the in-session time of the Bearer which had data transmissions with the PDSCH/PUSCH during the statistics period for each QCI. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SessionTimeQci Avg

ms

Average in-session time per QCI

Y

SI

5.12 s

float

0~60*Period *1000

SessionTimeQci Tot/SessionTim eQciCnt

sum(SessionTimeQciTot)/su m(SessionTimeQciCnt)

SessionTimeQci Tot

ms

Sum of SessionTime SessionTimeQciAvg collected

Y

SI

5.12 s

float

0~3.4*10^ 38

-

-

SessionTimeQci Cnt

count

Collected SessionTimeQciAvg count

-

SI

5.12 s

int

0~21474836 47

-

-

Collection Time TTI

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Chapter 2 Counter Description

Active E-RAB Number This section provides statistics data for E-RAB setup count. Collects statistics data for the average E-RAB setup count and the maximum E-RAB setup count for each cell. Index Name

Description

cNum

Cell Id

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

UsageNbrAvg

count

Average E-RAB count per unit time.

Y

GAUGE

2s

float

0~3.4*10^38

UsageNbrTot/ UsageNbrCnt

sum(UsageNbrTot)/ sum(UsageNbrCnt)

UsageNbrMax

count

Maximum E-RAB count per unit time.

Y

GAUGE

2s

float

0~3.4*10^38

-

max(UsageNbrMax)

UsageNbrTot

count

The sum of collected UsageNbrAvg

-

GAUGE

2s

float

0~3.4*10^38

-

-

UsageNbrCnt

count

Collected UsageNbrAvg count

-

GAUGE

2s

int

0~214748364 7

-

-

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Chapter 2 Counter Description

E-RAB QCI per-PLMN rejected If the requested QCI is rejected because it is not allowed for a PLMN, it is collected. A PLMN ID consists of MCC and MNC under the condition that plmnIndex is 0 in PLDEnbPlmnInfo, and it may be viewed with RTRVENBPLMN-INF. Index Name

Description

cNum

Cell Id

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PLMN0QCIReje ct

count

If the requested QCI is rejected because it is not allowed for the PLMN0, it is collected.

Y

CC

event

int

0~21474836 47

-

-

PLMN1QCIReje ct

count

If the requested QCI is rejected because it is not allowed for the PLMN1, it is collected.

Y

CC

event

int

0~21474836 47

-

-

PLMN2QCIReje ct

count

If the requested QCI is rejected because it is not allowed for the PLMN2, it is collected.

Y

CC

event

int

0~21474836 47

-

-

PLMN3QCIReje ct

count

If the requested QCI is rejected because it is not allowed for the PLMN3, it is collected.

Y

CC

event

int

0~21474836 47

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PLMN4QCIReje ct

count

If the requested QCI is rejected because it is not allowed for the PLMN4, it is collected.

Y

CC

event

int

0~21474836 47

-

-

PLMN5QCIReje ct

count

If the requested QCI is rejected because it is not allowed for the PLMN5, it is collected.

Y

CC

event

int

0~21474836 47

-

-

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Chapter 2 Counter Description

HO EUTRAN The statistics on handovers are collected for intra LTE handover and inter RAT handover respectively. Intra LTE handover includes intra eNB, inter eNB S1, and inter eNB X2 handovers. Inter RAT handover includes inter RAT optimized HRPD and inter RAT UTRAN handovers. Intra-LTE handover statistics are based on the source and target cells, which are collected through the respective source and target eNBs. Inter-RAT handover statistics are based on the eNB’s served cells. Intra eNB Handover This section provides statistics data for handovers between cells within the eNB. Intra eNB handover is performed when the UE moves between the cells that belong to the same eNB. The following figure illustrates this procedure. Figure 36. Intra-eNB Handover Statistics Processing

Target Cell

Source Cell

UE

1) MeasurementReport

HO Attempt 2) Target Cell Preparation

3) RRCConnection-Reconfiguration

HO Preparation

(mobilityControlinfo)

HO Success

4) RRCConnectionReconfigurationComplete

Steps

Description

1)

Intra eNB handover is determined based on the measurement report.

2)

New RLC, MAC and PHY configurations are set for the target cell.

3)

When the resource setup is completed in the target cell, the RRC Connection Reconfiguration message is transmitted to instruct the UE to perform handover.

4)

The RRC Connection Reconfiguration Complete message is received to complete the intra handover successfully.

X2 Handover When the UE moves between cells of different eNBs that belong to the same MME group, handover is performed via the X2 interface. Upon performing the X2 handover, the source provides the statistics on outgoing handover; and the target provides statistics for incoming.

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Chapter 2 Counter Description

The procedure of collecting Attempt, Preparation, and Success statistics is shown in the following figure. Figure 37. X2-based Handover Statistics Processing

EPC Target eNB

Source eNB

UE

Downlink/Uplink data

1) MeasurementReport

4) RRCConnectionReconfiguration

MME

S-GW

Downlink/Uplink data

HO Attempt

2) HANDOVER REQUEST 3) HANDOVER REQUEST ACKNOWLEDGE

HO Preparation

(mobilityControlinfo)

5) SN STATUS TRANSFER Data forwarding

6) Synchronization/UL allocation and timing advance 7) RRCConnectionReconfigurationComplete Forwarded data Uplink data

Uplink data

8) PATH SWITCH REQUEST 9) Modify Bearer Request End marker Forwarded data End marker Downlink data

12) UE CONTEXT RELEASE Down/Uplink data

Downlink data

11) PATH SWITCH REQUEST ACKNOWLEDGE

10) Modify Bearer Response HO Success

Down/Uplink data

Step

Description

1)

The UE transmits the MeasurementReport message according to the system information, standards and rules. The source eNB determines whether to perform the UE handover based on the MeasurementReport message and the radio resource management information.

2)

The source eNB sends the target eNB a HANDOVER REQUEST message containing the information required for handover. The target eNB can perform management control in accordance with the E-RAB QoS information received.

3)-4)

The target eNB creates the RRCConnectionReconfiguration message which contains the mobileControlInfo IE for preparing and executing the handover. The target eNB transmits RRCConnectionReconfiguration to the source eNB, which is encapsulated in the HANDOVER REQUEST ACKNOWLEDGE message. The source eNB transmits the RRCConnectionReconfiguration message and the necessary parameters to the UE to command it to perform

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Chapter 2 Counter Description Step

Description the handover.

5)

To transmit the uplink PDCP SN receiver status and the downlink PDCP SN transmitter status of the E-RABs of which the PDCP status must be preserved, the source eNB transmits the SN STATUS TRANSFER message to the target eNB.

6)

After receiving the RRCConnectionReconfiguration message that encapsulates the mobileControlInfo IE, the UE performs synchronization with the target eNB and accesses the target cell via the Random Access CHannel (RACH). The target eNB responds with UL allocation and a timing advance value.

7)

After having connected to the target cell successfully, the UE notifies the target eNB that the Handover procedure has been completed using an RRCConnection-ReconfigurationComplete message.

8)

The target eNB, using the PATH SWITCH REQUEST message, notifies the MME that the UE has changed the cell.

9)-10)

The MME sends the Modify Bearer Request message to the S-GW. The S-GW changes the downlink data path into the target eNB. The S-GW transmits at least one „end marker‟ to the source eNB through the previous path, and releases the user plane resources for the source eNB. The S-GW transmits a Modify Bearer Response message to the MME.

11)

The MME transmits the PATH SWITCH REQUEST ACKNOWLEDGE message to acknowledge the PATH SWITCH REQUEST message

12)

The target eNB sends the UE CONTEXT RELEASE message to the source eNB to notify the handover has succeeded and to make the source eNB release its resources. If the source eNB receives the UE CONTEXT RELEASE message, it releases the radio resources and the control plane resources related to the UE context.

S1 Handover Generally, when two eNBs belong to the same MME group, handover is performed via the X2 interface, and if two eNBs belong to different MME groups, handover is performed via the S1 interface. However, if they belong to the same MME, but there is no X2 interface between the two eNBs or there is X2 link failure, handover is performed via the S1 interface. Upon performing the S1 handover, the source provides the statistics on outgoing handover; and the target provides statistics for the incoming handover. The procedure of collecting Attempt, Preparation, and Success statistics is shown below.

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Chapter 2 Counter Description Figure 38. S1-based Handover Procedure

EPC UE

Target eNB

Source eNB

MME

S-GW

Downlink/Uplink data

Downlink/Uplink data

1) Decision to trigger a relocation via S1

2) HANDOVER REQUIRED

HO Attempt

HO Attempt

HO Preparation HO Preparation 8) RRCConnectionReconfiguration (mobilityControlinfo)

3) HANDOVER REQUEST 4) HANDOVER REQUEST 5) Create Indirect Data ACKNOWLEDGE Forwarding Tunnel Request 6) Create Indirect Data Forwarding Tunnel Response

7) HANDOVER COMMAND 9) eNB STATUS TRANSFER 10) MME STATUS TRANSFER 1) Direct data forwarding 2) Indirect data forwarding Indirect data forwarding

11) Detach from old cell/Synchronize to new cell 12) RRCConnectionReconfigurationComplete Forwarded data Uplink data

Uplink data 13) HANDOVER NOTIFY HO Success

14) Modify Bearer Request

15) Modify Bearer Response End marker Forwarded data End marker

Downlink data

Downlink data

16) Tracking Area Update procedure 17) UE CONTEXT RELEASE COMMAND HO Success 18) UE CONTEXT RELEASE COMPLETE

Downlink/Uplink data

19) Delete Indirect Data Forwarding Tunnel Request 20) Delete Indirect Data Forwarding Tunnel Response

Downlink/Uplink data

Step

Description

1)

The source eNB determines whether to perform S1-based handover into the

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Chapter 2 Counter Description Step

Description target eNB. The source eNB can make this decision when there is no X2 connection to the target or when an error is notified by the target eNB after an X2-based handover has failed, or based on the information the source eNB has obtained dynamically.

2)

The source eNB transmits the HANDOVER REQUIRED message to the MME. The source eNB notifies the target eNB which bearer is used for data forwarding and whether forwarding can be made directly from the source eNB to the target eNB.

3)-4)

The MME transmits the HANDOVER REQUEST message to the target eNB. This message makes the target eNB create a UE context containing the bearerrelated information and the security context. The target eNB transmits the HANDOVER REQUEST ACKNOWLEDGE message to the MME.

5)-6)

If indirect forwarding is used, the MME sends the Create Indirect Data Forwarding Tunnel Request message to the S-GW. The S-GW replies the MME with the Create Indirect Data Forwarding Tunnel Response message.

7)-8)

The MME sends the HANDOVER COMMAND message to the source eNB. The source eNB creates the RRCConnectionReconfiguration message using the Target to Source Transparent Container IE encapsulated in the HANDOVER COMMAND message and then transmits it to the UE.

9)-10)

To transmit the PDCP and HFN status of the E-RABs of which the PDCP status must be preserved, the source eNB transmits the eNB/MME STATUS TRANSFER message to the target eNB via the MME. The source eNB must start forwarding the downlink data to the target eNB through the bearer which was determined to be used for data forwarding. This can be either direct or indirect forwarding.

11)

The UE performs synchronization with the target eNB and connects to the target cell via a RACH. The target eNB responds with UL allocation and a timing advance value.

12)

After having synchronized with the target cell, the UE notifies the target eNB that the Handover procedure has been completed using the RRCConnectionReconfigurationComplete message. The downlink packets forwarded from the source eNB can be transmitted to the UE. The uplink packets can also be transmitted from the UE to the S-GW via the target eNB.

13)

The target eNB sends the HANDOVER NOTIFY message to the MME. The MME starts the timer which tells when the resources of the source eNB and the temporary resources used by the S-GW for indirect forwarding will be released.

14)

The MME transmits the Modify Bearer Request message for each PDN connection to the S-GW. Downlink packets are transmitted from the S-GW to the target eNB immediately.

15)

The S-GW transmits a Modify Bearer Response message to the MME. As soon as the target eNB changes the path to help packet reordering, the S-GW transmits at least one „end marker‟ packet to the source eNB through the previous path.

16)

If any of the conditions listed in section 5.3.3.0 of TS 23.401 (6) are met, the UE starts the Tracking Area Update procedure.

17)-18)

When the timer started at step 13) expires, the MME sends the UE CONTEXT RELEASE COMMAND message to the source eNB. The source eNB releases the resources related to the UE and replies with the UE CONTEXT RELEASE COMPLETE message.

19)-20)

If indirect forwarding has been used, when the timer started at Step 13) expires

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Chapter 2 Counter Description Step

Description the MME transmits the Delete Indirect Data Forwarding Tunnel Request message to the S-GW. This message gets the S-GW to release the temporary resources allocated for indirect forwarding at Step 5). The S-GW responds to the MME with the Delete Indirect Data Forwarding Tunnel Response message.

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Chapter 2 Counter Description

Intra-eNB Handover This section provides statistics data for handovers between cells within the eNB. Index Name

Description

cNum

Cell Id

tcID

Target Cell Id

HoCause

Handover cause  0: Handover desirable for radio reasons  1: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

IntraEnbAtt

count

Intra-handover attempt count.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepSucc

count

Intra-handover preparation success count.

Y

CC

event

int

0~2147483647

-

-

IntraEnbSucc

count

Intra-handover execution success count.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ CpCcTo

count

Preparation fails due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ CpCcFail

count

Preparation fails due to reset notification (eNB failure or block restart) from ECMB or by the ECCB

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

block during the intra handover preparation. IntraEnbPrepFail_ UpMacFail

count

Preparation fails due to internal failure in the MAC block during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ UpRlcFail

count

Preparation fails due to internal failure in the RLC block during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ RrcSigFail

count

A call is released due to receiving RRC signaling during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ CpBhCacFail

count

Preparation fails due to insufficient backhaul-based eNB resources during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ CpCapaCacFail

count

Preparation fails due to insufficient capacity-based eNB resources during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ CpQosCacFail

count

Preparation fails due to insufficient QoS-based eNB resources during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ S1apCuFail

count

Preparation fails due to S1AP specification cause during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ S1apLinkFail

count

Preparation fails due to S1 SCTP link failure during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

IntraEnbPrepFail_ S1apSigFail

count

Preparation fails due to receiving S1AP signaling during the intra handover preparation.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

IntraEnbFail_CpCc To

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP and GTP) during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_CpCc Fail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by the ECCB block during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_UpGt pFail

count

A call is released due to the internal failure in the GTP block during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_UpMa cFail

count

A call is released due to the internal failure in the MAC block during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_UpRlc Fail

count

A call is released due to the internal failure in the RLC block during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_RrcH cTo

count

A call is released due to HO command timeout (not received) during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_RrcSi gFail

count

A call is released due to receiving RRC signaling during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_S1ap CuFail

count

A call is released due to the S1AP specification cause during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_S1ap LinkFail

count

A call is released due to S1 SCTP link failure during the intra handover execution.

Y

CC

event

int

0~2147483647

-

-

IntraEnbFail_S1ap

count

A call is released due to S1AP

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

SigFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

signaling timeout (not received) during the intra handover execution.

IntraEnbCnt

count

Intra-eNB handover collection count

-

CC

event

int

0~2147483647

-

-

IntraEnbNbrCid

tcID

tcID of which collection is requested

-

OW

event

int

0~2147483647

-

-

Collection Time (Success) Figure 39. Collection Time for Intra eNB Handover eNB

UE

UE moves to Intra eNB Cell Measurement Report

Attempt 1

HO Decision

Prepare 2

Target Cell Preparation

Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete Success

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Internal Path Switch

102

Chapter 2 Counter Description

Collection Time (Failure) Figure 40. Collection Time for IntraEnbFail_RrcHcTo UE

eNB

UE moves to Intra eNB Cell Measurement Report Attempt

1

Prepare 2 Rrc Connection Reconfiguration

HO Decision Target Cell Preparation

(Rrc Connection Reconfiguration Complete)

Timer rrcConnectionReconfig 3 Failure - IntraEnbFail_RrcHcTo

For intra-handover statistics, Attempt is counted when an intra-handover is decided after the Measurement Report message arrival, and Prepare is counted when the intra-handover preparation is complete and at the time of transmitting the RRC Connection Reconfiguration message to the UE. Success is counted when the target cell successfully receives the RRC Connection Reconfiguration Complete message from the UE. When the procedure from 1 to 2 fails, it is counted as Prepare Fail, returning the cause value. When the procedure from 2 to 3 fails, it is counted as Intra Fail, returning the cause value.

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Chapter 2 Counter Description

X2 Out Handover This section provides statistics data for X2 handover between eNBs in reference with the source eNB for each cell. Index Name

Description

cNum

Cell Id

tcID

Target Cell Id

HoCause

Handover cause  0: Handover desirable for radio reasons  1: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterX2OutAtt

count

Attempt count for X2 handover from SeNB.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepSucc

count

Success count for X2 handover preparation from SeNB.

Y

CC

event

int

0~2147483647

-

-

InterX2OutSucc

count

Success count for X2 handover execution from SeNB.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepFail_ CpCcFail

count

Preparation fails due to reset notification (eNB failure or block restart) from ECMB or by ECCB block during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepFail_

count

Preparation fails due to S1 SCTP link failure during the inter X2 handover

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

S1apLinkFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

preparation.

InterX2OutPrepFail_ S1apSigFail

count

Preparation fails due to receiving S1AP signaling during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepFail_ X2apCuFail

count

Preparation fails due to X2AP specification cause during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepFail_ X2apLinkFail

count

Preparation fails due to X2 SCTP link failure during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepFail_ X2apRpTo

count

Preparation fails due to X2AP relocprep timeout (not received) during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2OutPrepFail_ X2apSigFail

count

Preparation fails due to receiving X2AP signaling during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_CpC cTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_CpC cFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by the ECCB block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_UpG tpFail

count

A call is released due to the failure in the GTP block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_UpM acFail

count

A call is released due to the internal failure in the MAC block during the

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

InterX2OutFail_UpP dcpFail

count

InterX2OutFail_UpR lcFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released due to the internal failure in the PDCP block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

count

A call is released due to the internal failure in the RLC block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_Rrc SigFail

count

A call is released due to receiving RRC signaling during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_S1a pCuFail

count

A call is released due to the S1AP specification cause during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_S1a pLinkFail

count

A call is released due to the S1 SCTP link failure during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_S1a pSigFail

count

A call is released due to receiving S1AP signaling during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_X2a pCuFail

count

A call is released due to the X2AP specification cause during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_X2a pLinkFail

count

A call is released due to the X2 SCTP link failure during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_X2a pRoTo

count

A call is released due to X2AP RelocOverall timeout (not received) during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2OutFail_X2a pSigFail

count

A call is released due to receiving the X2AP signaling during the inter X2

Y

CC

event

int

0~2147483647

-

-

inter X2 handover execution.

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Chapter 2 Counter Description Name

Unit

InterX2OutCnt

count

InterX2OutCid

tcID

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

X2 Handover Out collection count

-

CC

event

int

0~2147483647

-

-

tcID of which collection is requested

-

OW

event

int

0~2147483647

-

-

handover execution.

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Chapter 2 Counter Description

Collection Time (Success) Figure 41. Collection Time for X2 Out Handover Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision

1

Attempt

Handover Request 2

Handover Request Acknowledge Prepare

Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete Path Switch Request Path Switch RequestAcknowledge Release Request Call Release

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Success

108

Chapter 2 Counter Description

For Inter-X2 Handover Out statistics, Attempt is counted when the X2 Handover Request message can be transmitted to the target eNB after the Inter-X2 handover decision following the Measurement Report message arrival. Prepare is counted when the X2 Handover Request Acknowledge message is received from the target eNB. The source eNB transmits the RRC Connection Reconfiguration message to the UE, and the target eNB receives the RRC Connection Reconfiguration Complete message from the UE. The target eNB transmits the X2 UE Context Release message to the source eNB when the handover is successfully completed. At this point, the source eNB is counted as Success. When the procedure from 1 to 2 fails, it is counted as Prepare Fail, returning the cause value. When the procedure from 2 to 3 fails, it is counted as Inter-X2 Fail, returning the cause value. Collection Time (Failure) Figure 42. Collection Time for InterX2OutPrepFail_X2apRpTo Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision

1 Attempt

Handover Request Timer x2HandoverPreparation

Handover Acknowledge

2 InterX2OutPrepFail_X2apRpTo Call Release

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Chapter 2 Counter Description Figure 43. Collection Time for InterX2OutFail_X2apRoTo Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision

1 Attempt

Handover Request Handover Request Acknowledge 2 Prepare Rrc Connection Reconfiguration SN Status Transfer Timer x2RelocOverall

Release Request

3 InterX2OutFail_X2apRoTo Call Release

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Chapter 2 Counter Description

X2 In Handover This section provides statistics data for X2 handover between eNBs in reference with the target eNB. Index Name

Description

cNum

Cell Id

HoCause

Handover cause  0: Handover desirable for radio reasons  1: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterX2InAtt

count

The number of attempts for X2 handover in TeNB

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepSuc c

count

The number of successes for X2 handover preparation in TeNB

Y

CC

event

int

0~2147483647

-

-

InterX2InSucc

count

The number of successes for X2 handover execution in TeNB

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _CpCcTo

count

Preparation fails due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _CpCcFail

count

Preparation fails due to reset notification (eNB failure or block restart) from ECMB or by ECCB block during the inter X2 handover

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

InterX2InPrepFail _UpGtpFail

count

InterX2InPrepFail _UpMacFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Preparation fails due to internal failure in the GTP block during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

count

Preparation fails due to internal failure in the MAC block during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _UpPdcpFail

count

Preparation fails due to internal failure in the PDCP block during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _UpRlcFail

count

Preparation fails due to internal failure in the RLC block during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _CpBhCacFail

count

Preparation fails due to insufficient backhaul-based eNB resources during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _CpCapaCacFail

count

Preparation fails due to insufficient capacity-based eNB resources during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _CpQosCacFail

count

Preparation fails due to insufficient QoS-based eNB resources during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _S1apLinkFail

count

Preparation fails due to S1 SCTP link failure during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _S1apSigFail

count

Preparation fails due to receiving S1AP signaling during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _X2apCuFail

count

Preparation fails due to X2AP specification cause during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

preparation.

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterX2InPrepFail _X2apLinkFail

count

Preparation fails due to X2 SCTP link failure during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InPrepFail _X2apSigFail

count

Preparation fails due to receiving X2AP signaling during the inter X2 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Cp CcTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Cp CcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by the ECCB block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Up GtpFail

count

A call is released due to the failure in the GTP block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Up MacFail

count

A call is released due to the internal failure in the MAC block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_UpP dcpFail

count

A call is released due to the internal failure in the PDCP block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Up RlcFail

count

A call is released due to the internal failure in the RLC block during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Rrc HcTo

count

A call is released due to HO command timeout (not received) during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_Rrc

count

A call is released due to receiving RRC

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

SigFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

signaling during the inter X2 handover execution.

InterX2InFail_S1a pCuFail

count

A call is released due to the S1AP specification cause during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_S1a pLinkFail

count

A call is released due to the S1 SCTP link failure during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_S1a pPathTo

count

A call is released due to S1AP path switch timeout (not received) during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_S1a pSigFail

count

A call is released due to receiving S1AP signaling during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_X2a pCuFail

count

A call is released due to the X2AP specification cause during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_X2a pLinkFail

count

A call is released due to the X2 SCTP link failure during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_X2a pSigFail

count

A call is released due to receiving the X2AP signaling during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterX2InFail_X2a pSigTo

count

A call is released due to X2AP signaling timeout (not received) during the inter X2 handover execution.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 44. Collection Time for X2 Handover In Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request

1

Attempt

2

Prepare

Handover Request Acknowledge Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete Path Switch Request Path Switch Request Acknowledge Release Request

3

Success

Call Release

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Chapter 2 Counter Description

For Inter-X2 Handover In statistics, Attempt is counted when the target eNB receives the X2 Handover Request message, and Prepare is counted after the target eNB transmits the X2 Handover Request Acknowledge message. The source eNB transmits the RRC Connection Reconfiguration message to the UE, and the target eNB receives the RRC Connection Reconfiguration Complete message from the UE. Success is counted when the handover is successfully completed and the X2 UE Context Release message is transmitted to the source eNB. When the procedure from 1 to 2 fails, it is counted as Prepare Fail, returning the cause value. When the procedure from 2 to 3 fails, it is counted as Inter-X2 In Fail, returning the cause value. Collection Time (Failure) Figure 45. Collection Time for InterX2InPrepFail_X2apSigFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Reset Request

1 Attempt 2 InterX2InPrepFail_X2apSigFail

Call Release

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Chapter 2 Counter Description Figure 46. Collection Time for InterX2InPrepFail_S1apSigFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request

1 Attempt

UE Context Release Command 2 InterX2InPrepFail_S1apSigFail Call Release

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Chapter 2 Counter Description Figure 47. Collection Time for InterX2InPrepFail_X2apCuFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request

1 Attempt 2 InterX2InPrepFail_X2apCuFail

Call Release

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Chapter 2 Counter Description Figure 48. Collection Time for InterX2InFail_RrcHcTo Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Handover Request Acknowledge

1 Attempt 2 Prepare

Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete

3 InterX2InFail_RrcHcTo

Call Release

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Chapter 2 Counter Description Figure 49. Collection Time for InterX2InFail_RrcSigFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request

1 Attempt

Handover Request Acknowledge 2 Prepare Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Request

3 InterX2InFail_RrcSigFail Call Release

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Chapter 2 Counter Description Figure 50. Collection Time for InterX2InFail_S1apCuFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request

1 Attempt

Handover Request Acknowledge 2 Prepare Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete Path Switch Request Path Switch Request Failure InterX2InFail_S1apCuFail

3

Call Release

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Chapter 2 Counter Description Figure 51. Collection Time for InterX2InFail_S1apSigFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Handover Request Acknowledge

1 Attempt 2 Prepare

Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete Path Switch Request UE Context Release Command InterX2InFail_S1apSigFail

3 Call Release

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Chapter 2 Counter Description Figure 52. Collection Time for InterX2InFail_S1apPathTo Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Handover Request Acknowledge

1 Attempt 2 Prepare

Rrc Connection Reconfiguration SN Status Transfer Rrc Connection Reconfiguration Complete PLDTimerInfoPhy::s1PathSwitch Default Value::3000 ms

Path Switch Request

Path Switch Request Acknolodge InterX2InFail_S1apPathTo

3 Call Release

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Chapter 2 Counter Description Figure 53. Collection Time for InterX2InFail_X2apSigTo Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Handover Request Acknowledge Rrc Connection Reconfiguration SN Status Transfer

1 Attempt 2 Prepare PLDTimerInfoPhy::rrcConnectionReconfig Default Value::1500 ms

3

InterX2InFail_X2apSigTo

Call Release

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Chapter 2 Counter Description

S1 Out Handover This section provides statistics data for S1 handovers between eNBs for each cell in reference with the source eNB. Index Name

Description

cNum

Cell Id

tcID

Target Cell Id

HoCause

Handover cause  0: Handover desirable for radio reasons  1: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterS1OutAtt

count

The number of attempts for S1 handover in SeNB

Y

CC

event

int

0~2147483647

-

-

InterS1OutPrepSu cc

count

The number of successes for S1 handover preparation in SeNB

Y

CC

event

int

0~2147483647

-

-

InterS1OutSucc

count

The number of successes for S1 handover execution in SeNB

Y

CC

event

int

0~2147483647

-

-

InterS1OutPrepFa il_CpCcFail

count

Preparation fails due to reset notification (eNB failure or block restart) from ECMB or by ECCB block during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1OutPrepFa il_S1apCuFail

count

Preparation fails due to S1AP specification cause during inter S1

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

InterS1OutPrepFa il_S1apLinkFail

count

InterS1OutPrepFa il_S1apRpTo

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Preparation fails due to S1 SCTP link failure during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

count

Preparation fails due to S1AP relocprep timeout (not received) during the inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1OutPrepFa il_S1apSigFail

count

Preparation fails due to receiving S1AP signaling during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_C pCcTo

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_C pCcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_U pGtpFail

count

A call is released due to the failure in the GTP block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_U pMacFail

count

A call is released due to the failure in the MAC block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_U pPdcpFail

count

A call is released due to the failure in the PDCP block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_U pRlcFail

count

A call is released due to the failure in the RLC block during the inter S1

Y

CC

event

int

0~2147483647

-

-

handover preparation.

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Chapter 2 Counter Description Name

Unit

InterS1OutFail_Rr cSigFail

count

InterS1OutFail_S1 apCuFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released due to receiving RRC signaling during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

count

A call is released due to the S1AP specification cause during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_S1 apLinkFail

count

A call is released due to the S1 SCTP link failure during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_S1 apRoTO

count

A call is released due to S1AP relocoverall timeout (not received) during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutFail_S1 apSigFail

count

A call is released due to receiving S1AP signaling during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1OutCnt

count

S1 Handover Out collection count

-

CC

event

int

0~2147483647

-

-

InterS1OutCid

tcID

tcID of which collection is requested

-

OW

event

int

0~2147483647

-

-

handover execution.

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Chapter 2 Counter Description

Collection Time Figure 54. Collection Time for S1 Handover Out Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision

1

Attempt Handover Required Handover Request Handover Request Acknowledge

2

Prepare

Handover Command

Rrc Connection Reconfiguration eNB Status Transfer MME Status Transfer Rrc Connection Reconfiguration Complete Handover Notify Tracking Area Update Procedure (NAS) UE Context Release Command UE Context Release Complete Call Release

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Chapter 2 Counter Description

For Inter-S1 Handover Out statistics, Attempt is counted when the S1 Handover Required message can be transmitted to the MME after the inter S1 handover decision following the Measurement Report message arrival. Prepare is counted when the S1 Handover Command message is received from the MME. The source eNB transmits the RRC Connection Reconfiguration message to the UE, and the target eNB receives the RRC Connection Reconfiguration Complete message from the UE. The MME transmits the S1 UE Context Release Command message to the source eNB when the handover is successfully completed in the target eNB. At this point, the source eNB is counted as Success. When the procedure from 1 to 2 fails, it is counted as Prepare Fail and returns the cause value, and when the procedure from 2 to 3 fails, it is counted as Inter-S1 Out Fail and returns the cause value.

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Chapter 2 Counter Description

S1 In Handover This section provides statistics data for S1 handovers between eNBs for each cell in reference with the target eNB. Index Name

Description

cNum

Cell Id

HoCause

Handover cause  0: Handover desirable for radio reasons  1: reserved

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterS1InAtt

count

S1 handover attempt count in TeNB

Y

CC

event

int

0~2147483647

-

-

InterS1InPrepSucc

count

S1 handover preparation success count in TeNB

Y

CC

event

int

0~2147483647

-

-

InterS1InSucc

count

S1 handover execution success count in TeNB

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailC pCcTo

count

Preparation fails due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailC pCcFail

count

Preparation fails due to reset notification (eNB failure or block restart) from the ECMB or by the ECCB block during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterS1InPrep_FailU pGtpFail

count

Preparation fails due to internal failure in the GTP block during the inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailU pMacFail

count

Preparation fails due to internal failure in the MAC block during the inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailU pPdcpFail

count

Preparation fails due to internal failure in the PDCP block during the inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailU pRlcFail

count

Preparation fails due to internal failure in the RLC block during the inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailC pBhCacFail

count

Preparation fails due to insufficient backhaul-based eNB resources during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailC pCapaCacFail

count

Preparation fails due to insufficient capacity-based eNB resources during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailC pQosCacFail

count

Preparation fails due to insufficient QoS-based eNB resources during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailS 1apCuFail

count

Preparation fails due to S1AP specification cause during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailS 1apLinkFail

count

Preparation fails due to S1 SCTP link failure during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

InterS1InPrep_FailS 1apSigFail

count

Preparation fails due to receiving S1AP signaling during inter S1 handover preparation.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterS1InFail_CpCc To

count

A call is released due to call control timeout in the protocol blocks (MAC, RLC, PDCP, GTP) during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_CpCc Fail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_UpGt pFail

count

A call is released due to the failure in the GTP block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_UpMa cFail

count

A call is released due to the failure in the MAC block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_UpPd cpFail

count

A call is released due to the failure in the PDCP block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_UpRlc Fail

count

A call is released due to the failure in the RLC block during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_RrcHc To

count

A call is released due to HO command timeout (not received) during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_RrcSi gFail

count

A call is released due to receiving RRC signaling during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_S1ap CuFail

count

A call is released due to the S1AP specification cause during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_S1ap

count

A call is released due to the S1 SCTP

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

LinkFail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

link failure during the inter S1 handover execution.

InterS1InFail_S1ap SigFail

count

A call is released due to receiving S1AP signaling during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

InterS1InFail_S1ap SigTo

count

A call is released due to S1AP signaling timeout (not received) during the inter S1 handover execution.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 55. Collection Time for S1 Handover In (Success) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Required Attempt Prepare Rrc Connection Reconfiguration

1 2

Handover Request Handover Request Acknowledge

Handover Command eNB Status Transfer MME Status Transfer

Rrc Connection Reconfiguration Complete Success

3

Handover Notify

Tracking Area Update Procedure (NAS) UE Context Release Command UE Context Release Complete Call Release

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Chapter 2 Counter Description

For inter S1 handover in statistics, when the target eNB receives the S1 Handover Request message, it is counted as Attempt; when the target eNB transmits the S1 Handover Request Acknowledge message, it is counted as Prepare. The source eNB transmits the RRC Connection Reconfiguration message to the UE, and the target eNB receives the RRC Connection Reconfiguration Complete message from the UE. Success is counted after the handover is successfully completed and the S1 Handover Notify message is transmitted to the MME. When the procedure from 1 to 2 fails, it is counted as Prepare Fail, returning the cause value. When the procedure from 2 to 3 fails, it is counted as Inter S1 In Fail, returning the cause value.

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Chapter 2 Counter Description

Collection Time (Failure) Figure 56. Collection Time for S1 Handover In (Failure) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Attempt

1

Failure

2

Handover Required Handover Failure

InterS1InPrep_FailCpCcTo InterS1InPrep_FailCpCcFail InterS1InPrep_FailUpGtpFail InterS1InPrep_FailUpMacFail InterS1InPrep_FailUpPdcpFail InterS1InPrep_FailUpRlcFail InterS1InPrep_FailCpBhCacFail InterS1InPrep_FailCpCapaCacFail InterS1InPrep_FailCpQosCacFail InterS1InPrep_FailS1apCuFail InterS1InPrep_FailS1apLinkFail

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Chapter 2 Counter Description Figure 57. Collection Time for InterS1InPrepFail_S1apSigFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Attempt

1

InterS1InPrep_FailS1apSigFail

2

Handover Required Reset

Call Release

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Chapter 2 Counter Description Figure 58. Collection Time for S1 Handover In (Failure) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Attempt

1

Prepare

2

Handover Required Handover Request Acknowledge

Handover Command Rrc Connection Reconfiguration eNB Status Transfer Timer rrcConnectionReconfig Rrc Connection Reconfiguration Complete Failure InterS1InFail_RrcHcTo

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MME Status Transfer 3 Failure

InterS1InFail_S1apSigTo

138

Chapter 2 Counter Description Figure 59. Collection Time for S1 Handover In (Failure) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Attempt

1

Prepare

2

Failure

3

Handover Required Handover Request Acknowledge Handover Failure

InterS1InFail_CpCcTo InterS1InFail_CpCcFail InterS1InFail_UpGtpFail InterS1InFail_UpMacFail InterS1InFail_UpPdcpFail InterS1InFail_UpRlcFail InterS1InFail_RrcSigFail InterS1InFail_S1apCuFail InterS1InFail_S1apLinkFail

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Chapter 2 Counter Description Figure 60. Collection Time for InterS1InFail_S1apSigFail Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Attempt

1

Prepare

2

Failure

3

Handover Required Handover Request Acknowledge Reset

InterS1InFail_S1apSigFail Call Release

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Chapter 2 Counter Description

Handover Time This section provides statistics data for the average setup time and the maximum setup time of the handover interrupt time in the TeNB for each cell. Index Name

Description

cNum

Cell Id

scID

Source Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

IntraHoTimeAv g

ms

Time taken from transmitting the RRCConnection Reconfiguration message to the UE until after receiving the RRCConnectionReconfigurationC omplete message from the UE.

Y

GAUGE

event

float

0~60*Period*1000

IntraHoTimeTot /IntraHoTimeC nt

sum(IntraHoTimeTot)/s um(IntraHoTimeCnt)

IntraHoTimeMa x

ms

Average maximum intra HO interrupt time

Y

GAUGE

event

float

0~60*Period*1000

-

max(IntraHoTimeMax)

IntraHoTimeTot

ms

Sum of Intra HO Interrupt time

Y

GAUGE

event

float

0~3.4*10^38

-

-

IntraHoTimeCnt

count

Count of IntraHoTimeAvg collected

Y

GAUGE

event

int

0~2147483647

-

-

S1HoTimeAvg

ms

Average S1 HO interrupt time

Y

GAUGE

event

float

0~3.4*10^38

S1HoTimeTot/ S1HoTimeCnt

sum(S1HoTimeTot)/su m(S1HoTimeCnt)

S1HoTimeMax

ms

Average maximum S1 HO interrupt time

Y

GAUGE

event

float

0~60*Period*1000

-

max(S1HoTimeMax)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

S1HoTimeTot

ms

Sum of S1 HO interrupt time

Y

GAUGE

event

float

0~3.4*10^38

-

-

S1HoTimeCnt

count

Count of S1HoTimeAvg collected

Y

GAUGE

event

int

0~2147483647

-

-

X2HoTimeAvg

ms

Average X2 HO interrupt time

Y

GAUGE

event

float

0~60*Period*1000

X2HoTimeTot/ X2HoTimeCnt

sum(X2HoTimeTot)/su m(X2HoTimeCnt)

X2HoTimeMax

ms

Average maximum X2 HO interrupt time

Y

GAUGE

event

float

0~60*Period*1000

-

max(X2HoTimeMax)

X2HoTimeTot

ms

Sum of X2 HO Interrupt time

Y

GAUGE

event

float

0~3.4*10^38

-

-

X2HoTimeCnt

count

Count of X2HoTimeAvg collected

Y

GAUGE

event

int

0~2147483647

-

-

HoTimeCnt

count

Count of HoTime collected

-

CC

event

int

0~2147483647

-

-

HoTimeCid

scID

scID which collection is requested

-

OW

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time Figure 61. Collection Time for Handover Time (INTRA) eNB

UE UE moves to Intra eNB Cell Measurement Report

HO Decision

Target Cell Preparation Rrc Connection Reconfiguration HO Time

Rrc Connection Reconfiguration Complete Internal Path Switch

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Chapter 2 Counter Description Figure 62. Collection Time for Handover Time (INTER S1) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Required Handover Request Handover Request Acknowledge Handover Command Rrc Connection Reconfiguration

HO Time

Rrc Connection Reconfiguration Complete

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Chapter 2 Counter Description Figure 63. Collection Time for Handover Time (INTER X2) Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Measurement Report HO Decision Handover Request Handover Request Acknowledge Rrc Connection Reconfiguration

HO Time

Rrc Connection Reconfiguration Complete

Handover time statistics are based on the Target eNB. Intra handover time refers to the time taken from transmitting the RRC Connection Reconfiguration message to the UE until after receiving the RRC Connection Reconfiguration Complete message. Inter-X2 handover time refers to the time taken from after transmission of the X2 Handover Request Acknowledge message at the target eNB until receiving the RRC Connection Reconfiguration Complete message from the UE. Inter-X2 handover time refers to the time taken from after transmission of the S1 Handover Request Acknowledge message at the Target eNB until receiving the RRC Connection Reconfiguration Complete message from the UE.

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Chapter 2 Counter Description

Measurement Results of Source Cell Displays the Measurement result of the collected Source Cell Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HoTriggeringScellRs rpEventA3Avg

dBm

Average RSRP value of for EventA3 in the source cell

Y

GAUGE

event

float

-1000~1000

HoTriggeringScell RsrpEventA3Tot/ HoTriggeringScell RsrpEventA3Cnt

sum(HoTriggeringScellR srpEventA3Tot)/sum(Ho TriggeringScellRsrpEven tA3Cnt)

HoTriggeringScellRs rpEventA3Min

dBm

Minimum RSRP value of for EventA3 in the source cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringScellRs rpEventA3Min)

HoTriggeringScellRs rpEventA3Max

dBm

Maximum RSRP value of for EventA3 in the source cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringScellR srpEventA3Max)

HoTriggeringScellRs rpEventA3Tot

dBm

Total RSRP value of for EventA3 in the source cell

Y

GAUGE

event

float

-3.4*10^38 ~3.4*10^38

-

-

HoTriggeringScellRs rpEventA3Cnt

count

Number of times that RSRP statistics for EventA3 are called in the source cell

Y

GAUGE

event

int

0~21474836 47

-

-

HoTriggeringScellRs rqEventA3Avg

dB

Average RSRQ value of for EventA3 in the source cell

Y

GAUGE

event

float

-1000~1000

HoTriggeringScell RsrqEventA3Tot/ HoTriggeringScell RsrqEventA3Cnt

sum(HoTriggeringScellR srqEventA3Tot)/sum(Ho TriggeringScellRsrqEven tA3Cnt)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HoTriggeringScellRs rqEventA3Min

dB

Minimum RSRQ value of for EventA3 in the source cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringScellRs rqEventA3Min)

HoTriggeringScellRs rqEventA3Max

dB

Maximum RSRQ value of for EventA3 in the source cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringScellR srqEventA3Max)

HoTriggeringScellRs rqEventA3Tot

dB

Total RSRQ value of for EventA3 in the source cell

Y

GAUGE

event

float

-3.4*10^38 ~3.4*10^38

-

-

HoTriggeringScellRs rqEventA3Cnt

count

Number of times that RSRQ statistics for EventA3 are called in the source cell

Y

GAUGE

event

int

0~21474836 47

-

-

HoTriggeringScellRs rpEventA4Avg

dBm

Average RSRP value of for EventA4 in the source cell

Y

GAUGE

event

float

-1000~1000

HoTriggeringScell RsrpEventA4Tot/ HoTriggeringScell RsrpEventA4Cnt

sum(HoTriggeringScellR srpEventA4Tot)/sum(Ho TriggeringScellRsrpEven tA4Cnt)

HoTriggeringScellRs rpEventA4Min

dBm

Minimum RSRP value of for EventA4 in the source cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringScellRs rpEventA4Min)

HoTriggeringScellRs rpEventA4Max

dBm

Maximum RSRP value of for EventA4 in the source cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringScellR srpEventA4Max)

HoTriggeringScellRs rpEventA4Tot

dBm

Total RSRP value of for EventA4 in the source cell

Y

GAUGE

event

float

-3.4*10^38 ~3.4*10^38

-

-

HoTriggeringScellRs rpEventA4Cnt

count

Number of times that RSRP statistics for EventA4 are called in the source cell

Y

GAUGE

event

int

0~21474836 47

-

-

HoTriggeringScellRs rqEventA4Avg

dB

Average RSRQ value of for EventA4 in the source cell

Y

GAUGE

event

float

-1000~1000

HoTriggeringScell RsrqEventA4Tot/ HoTriggeringScell RsrqEventA4Cnt

sum(HoTriggeringScellR srqEventA4Tot)/sum(Ho TriggeringScellRsrqEven tA4Cnt)

HoTriggeringScellRs rqEventA4Min

dB

Minimum RSRQ value of for EventA4 in the source cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringScellRs rqEventA4Min)

HoTriggeringScellRs rqEventA4Max

dB

Maximum RSRQ value of for EventA4 in the source cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringScellR srqEventA4Max)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HoTriggeringScellRs rqEventA4Tot

dB

Total RSRQ value of for EventA4 in the source cell

Y

GAUGE

event

float

-3.4*10^38 ~3.4*10^38

-

-

HoTriggeringScellRs rqEventA4Cnt

count

Number of times that RSRQ statistics for EventA4 are called in the source cell

Y

GAUGE

event

int

0~21474836 47

-

-

HoTriggeringScellRs rpEventA5Avg

dBm

Average RSRP value of for EventA5 in the source cell

Y

GAUGE

event

float

-1000~1000

HoTriggeringScell RsrpEventA5Tot/ HoTriggeringScell RsrpEventA5Cnt

sum(HoTriggeringScellR srpEventA5Tot)/sum(Ho TriggeringScellRsrpEven tA5Cnt)

HoTriggeringScellRs rpEventA5Min

dBm

Minimum RSRP value of for EventA5 in the source cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringScellRs rpEventA5Min)

HoTriggeringScellRs rpEventA5Max

dBm

Maximum RSRP value of for EventA5 in the source cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringScellR srpEventA5Max)

HoTriggeringScellRs rpEventA5Tot

dBm

Total RSRP value of for EventA5 in the source cell

Y

GAUGE

event

float

-3.4*10^38 ~3.4*10^38

-

-

HoTriggeringScellRs rpEventA5Cnt

count

Number of times that RSRP statistics for EventA5 are called in the source cell

Y

GAUGE

event

int

0~21474836 47

-

-

HoTriggeringScellRs rqEventA5Avg

dB

Average RSRQ value of for EventA5 in the source cell

Y

GAUGE

event

float

-1000~1000

HoTriggeringScell RsrqEventA5Tot/ HoTriggeringScell RsrqEventA5Cnt

sum(HoTriggeringScellR srqEventA5Tot)/sum(Ho TriggeringScellRsrqEven tA5Cnt)

HoTriggeringScellRs rqEventA5Min

dB

Minimum RSRQ value of for EventA5 in the source cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringScellRs rqEventA5Min)

HoTriggeringScellRs rqEventA5Max

dB

Maximum RSRQ value of for EventA5 in the source cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringScellR srqEventA5Max)

HoTriggeringScellRs rqEventA5Tot

dB

Total RSRQ value of for EventA5 in the source cell

Y

GAUGE

event

float

-3.4*10^38 ~3.4*10^38

-

-

HoTriggeringScellRs rqEventA5Cnt

count

Number of times that RSRQ statistics for EventA5 are

Y

GAUGE

event

int

0~21474836 47

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

called in the source cell

Collection Time Figure 64. Collection Time for Measurement Results of Source Cell Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete Measurement Report 1 HoTriggeringScellRsrpEventA3[Avg/Min/Max/Tot/Cnt] HoTriggeringScellRsrqEventA3[Avg/Min/Max/Tot/Cnt] HoTriggeringScellRsrpEventA4[Avg/Min/Max/Tot/Cnt] HoTriggeringScellRsrqEventA4[Avg/Min/Max/Tot/Cnt] HoTriggeringScellRsrpEventA5[Avg/Min/Max/Tot/Cnt] HoTriggeringScellRsrqEventA5[Avg/Min/Max/Tot/Cnt]

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Chapter 2 Counter Description

Measurement Results of Target Cell This section provides statistics data for the measurement results of the collected target cell. Index Name

Description

cNum

Cell Id

tcID

Target Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HoTriggeringTcell RsrpEventA3Avg

dBm

Average RSRP value for EventA3 in the target cell

Y

GAUGE

event

float

-1000~1000

HoTriggering TcellRsrpEv entA3Tot/Ho TriggeringTc ellRsrpEvent A3Cnt

sum(HoTriggeringT cellRsrpEventA3Tot )/sum(HoTriggering TcellRsrpEventA3C nt)

HoTriggeringTcell RsrpEventA3Min

dBm

Minimum RSRP value for EventA3 in the target cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringTc ellRsrpEventA3Min)

HoTriggeringTcell RsrpEventA3Max

dBm

Maximum RSRP value for EventA3 in the target cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringT cellRsrpEventA3Ma x)

HoTriggeringTcell RsrpEventA3Tot

dBm

Total of RSRP value for EventA3 in the target cell

Y

GAUGE

event

float

-3.4*10^38~ 3.4*10^38

-

-

HoTriggeringTcell RsrpEventA3Cnt

count

Number of times that RSRP statistics for EventA3 are called in the target cell

Y

GAUGE

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HoTriggeringTcell RsrqEventA3Avg

dB

Average RSRQ value for EventA3 in the target cell

Y

GAUGE

event

float

-1000~1000

HoTriggering TcellRsrqEv entA3Tot/Ho TriggeringTc ellRsrqEvent A3Cnt

sum(HoTriggeringT cellRsrqEventA3Tot )/sum(HoTriggering TcellRsrqEventA3C nt)

HoTriggeringTcell RsrqEventA3Min

dB

Minimum RSRQ value for EventA3 in the target cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringTc ellRsrqEventA3Min)

HoTriggeringTcell RsrqEventA3Max

dB

Maximum RSRQ value for EventA3 in the target cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringT cellRsrqEventA3Ma x)

HoTriggeringTcell RsrqEventA3Tot

dB

Total of RSRQ value for EventA3 in the target cell

Y

GAUGE

event

float

-3.4*10^38~ 3.4*10^38

-

-

HoTriggeringTcell RsrqEventA3Cnt

count

Number of times that RSRQ statistics for EventA3 are called in the target cell

Y

GAUGE

event

int

0~2147483647

-

-

HoTriggeringTcell RsrpEventA4Avg

dBm

Average RSRP value for EventA4 in the target cell

Y

GAUGE

event

float

-1000~1000

HoTriggering TcellRsrpEv entA4Tot/Ho TriggeringTc ellRsrpEvent A4Cnt

sum(HoTriggeringT cellRsrpEventA4Tot )/sum(HoTriggering TcellRsrpEventA4C nt)

HoTriggeringTcell RsrpEventA4Min

dBm

Minimum RSRP value for EventA4 in the target cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringTc ellRsrpEventA4Min)

HoTriggeringTcell RsrpEventA4Max

dBm

Maximum RSRP value for EventA4 in the target cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringT cellRsrpEventA4Ma x)

HoTriggeringTcell RsrpEventA4Tot

dBm

Total of RSRP value for EventA4 in the target cell

Y

GAUGE

event

float

-3.4*10^38~ 3.4*10^38

-

-

HoTriggeringTcell RsrpEventA4Cnt

count

Number of times that RSRP statistics for EventA4 are called in the target

Y

GAUGE

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

HoTriggeringTcell RsrqEventA4Avg

dB

HoTriggeringTcell RsrqEventA4Min

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Average RSRQ value for EventA4 in the target cell

Y

GAUGE

event

float

-1000~1000

HoTriggering TcellRsrqEv entA4Tot/Ho TriggeringTc ellRsrqEvent A4Cnt

sum(HoTriggeringT cellRsrqEventA4Tot )/sum(HoTriggering TcellRsrqEventA4C nt)

dB

Minimum RSRQ value for EventA4 in the target cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringTc ellRsrqEventA4Min)

HoTriggeringTcell RsrqEventA4Max

dB

Maximum RSRQ value for EventA4 in the target cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringT cellRsrqEventA4Ma x)

HoTriggeringTcell RsrqEventA4Tot

dB

Total of RSRQ value for EventA4 in the target cell

Y

GAUGE

event

float

3.4*10^38~3.4* 10^38

-

-

HoTriggeringTcell RsrqEventA4Cnt

count

Number of times that RSRQ statics for EventA4 are called in the target cell

Y

GAUGE

event

int

0~2147483647

-

-

HoTriggeringTcell RsrpEventA5Avg

dBm

Average RSRP value for EventA5 in the target cell

Y

GAUGE

event

float

-1000~1000

HoTriggering TcellRsrpEv entA5Tot/Ho TriggeringTc ellRsrpEvent A5Cnt

sum(HoTriggeringT cellRsrpEventA5Tot )/sum(HoTriggering TcellRsrpEventA5C nt)

HoTriggeringTcell RsrpEventA5Min

dBm

Minimum RSRP value for EventA5 in the target cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringTc ellRsrpEventA5Min)

HoTriggeringTcell RsrpEventA5Max

dBm

Maximum RSRP value for EventA5 in the target cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringT cellRsrpEventA5Ma x)

HoTriggeringTcell RsrpEventA5Tot

dBm

Total of RSRP value for EventA5 in the target cell

Y

GAUGE

event

float

-3.4*10^38~ 3.4*10^38

-

-

cell

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HoTriggeringTcell RsrpEventA5Cnt

count

Number of times that RSRP statistics for EventA5 are called in the target cell

Y

GAUGE

event

int

0~2147483647

-

-

HoTriggeringTcell RsrqEventA5Avg

dB

Average RSRQ value for EventA5 in the target cell

Y

GAUGE

event

float

-1000~1000

HoTriggering TcellRsrqEv entA5Tot/Ho TriggeringTc ellRsrqEvent A5Cnt

sum(HoTriggeringT cellRsrqEventA5Tot )/sum(HoTriggering TcellRsrqEventA5C nt)

HoTriggeringTcell RsrqEventA5Min

dB

Minimum RSRQ value for EventA5 in the target cell

Y

GAUGE

event

float

-1000~1000

-

min(HoTriggeringTc ellRsrqEventA5Min)

HoTriggeringTcell RsrqEventA5Max

dB

Maximum RSRQ value for EventA5 in the target cell

Y

GAUGE

event

float

-1000~1000

-

max(HoTriggeringT cellRsrqEventA5Ma x)

HoTriggeringTcell RsrqEventA5Tot

dB

Total of RSRQ value for EventA5 in the target cell

Y

GAUGE

event

float

-3.4*10^38~ 3.4*10^38

-

-

HoTriggeringTcell RsrqEventA5Cnt

count

Number of times that RSRQ statistics for EventA5 are called in the target cell

Y

GAUGE

event

int

0~2147483647

-

-

HoTriggeringTcell Cnt

count

Count of collections of measurement results of the target cell

-

CC

event

int

0~2147483647

-

-

HoTriggeringTcell Cid

tcID

tcID which collection is requested

-

OW

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time Figure 65. Collection Time for measurement Report of Target Cell Source eNB

UE

Target eNB

MME

S/GW

UE moves to Inter eNB Cell Rrc Connection Reconfiguration Rrc Connection Reconfiguration Complete

Acknowledge Measurement Report

ase Request

1

HoTriggeringTcellRsrpEventA3[Avg/Min/Max/Tot/Cnt] iguration Complete HoTriggeringTcellRsrqEventA3[Avg/Min/Max/Tot/Cnt] HoTriggeringTcellRsrpEventA4[Avg/Min/Max/Tot/Cnt] HoTriggeringTcellRsrqEventA4[Avg/Min/Max/Tot/Cnt] HoTriggeringTcellRsrpEventA5[Avg/Min/Max/Tot/Cnt] HoTriggeringTcellRsrqEventA5[Avg/Min/Max/Tot/Cnt] HoTriggeringTcellCnt, HoTriggeringTcellCid

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Chapter 2 Counter Description

CSL The Call Summary Log (CSL) is counted when the call is dropped. It can be used to collect various information and actual release cause for the call for example Call Release Cause. These statistics items are described in the following tables.

Call Fail This section provides statistics data for the CSL. The CSL statistics are collected when the call is released, and can help identify the actual cause of the call release. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0FFF]NoFault

count

The call is terminated normally.

Y

CC

event

int

0~2147483647

-

-

[0x0100]S1ap_Cause RadioNetworkUnspeci fied

count

During handover, the target eNB transmits the Path Switch Request message, and then does not receive the Path Switch Response, but receives the UE Context Release Command message.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0101]S1ap_Tx2Rel ocOverallExpiry

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0102]S1ap_Succes sfulHandover

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0103]S1ap_Releas eDueToEutranGenera tedReason

count

A call is released due to redirection when MR is received from the UE.

Y

CC

event

int

0~2147483647

-

-

[0x0104]S1ap_Hando verCancelled

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0105]S1ap_Partial Handover

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0106]S1ap_HoFail ureInTargetEpcEnbOr TargetSystem

count

When a failure cause is received from target system as the Forward Relocation Response during InterMME/Inter-RAT S1 handover, it is transmitted by being specified in the Handover Preparation Failure.

Y

CC

event

int

0~2147483647

-

-

[0x0107]S1ap_HoTar getNotAllowed

count

If S1 handover fails due to AccessRestriction (such as Utran Not Allow) of the UE, it is transmitted by being specified in the Handover Preparation Failure.

Y

CC

event

int

0~2147483647

-

-

[0x0108]S1ap_TS1Re locOverallExpiry

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0109]S1ap_TS1Re locPrepExpiry

count

In S1_OUT statistics event, when the timer waiting for the handover command expires after the source eNB transmits the Handover Required message.

Y

CC

event

int

0~2147483647

-

-

[0x010A]S1ap_CellNo tAvailable

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x010B]S1ap_Unkno wnTargetId

count

When it is not possible to find the TAI information for the TargetID received via the Handover Required or the remote MME information, it is transmitted by being specified in the Handover Preparation Failure.

Y

CC

event

int

0~2147483647

-

-

[0x010C]S1ap_NoRad ioResourcesAvailableI nTargetCell

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x010D]S1ap_Unkno wnMmeUES1apId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x010E]S1ap_Unkno wnEnbUES1apId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x010F]S1ap_Unkno wnPairUES1apId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0110]S1ap_Hando verDesirableForRadio Reason

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0111]S1ap_TimeCr iticalHandover

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0112]S1ap_Resour ceOptimizationHando ver

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0113]S1ap_Reduc eLoadInServingCell

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0114]S1ap_UserIn activity

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0115]S1ap_Radio ConnectionWithUELo

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0116]S1ap_LoadB alancingTauRequired

count

When the RLB value of MME-INF is changed to other value than NONE, it is transmitted by being specified in the UE context release command for MME re-load balancing.

Y

CC

event

int

0~2147483647

-

-

[0x0117]S1ap_CsFall backTriggered

count

A call is released due to CSFB that causes the inter-RAT redirection.

Y

CC

event

int

0~2147483647

-

-

[0x0118]S1ap_UENot AvailableForPsServic e

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0119]S1ap_Radio ResourcesNotAvailabl e

count

A call is released due to resource allocation failure in eNB for the bearer where setup is requested by the MME.

Y

CC

event

int

0~2147483647

-

-

[0x011A]S1ap_Failure InRadioInterfaceProce dure

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x011B]S1ap_Invalid QosCombination

count

 When gbrType of QCI received within E_RABLevelQoSParameters IE of the Initial Context Setup Request message is GBR but the gbrQosInformation received is the „not present‟ message  When gbrType of QCI received within E_RABLevelQoSParameters IE of the E_RAB Setup Request message is GBR but the gbrQosInformation received is

Y

CC

event

int

0~2147483647

-

-

st

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

the „not present‟ message  When gbrType of QCI received within E_RABLevelQoSParameters IE of the E_RAB Modify Request message is GBR but the gbrQosInformation received is the „not present‟ message [0x011C]S1ap_InterR atRedirection

count

A call is released due to the interRAT redirection. It occurs when redirection is processed normally due to the inter-RAT redirection.

Y

CC

event

int

0~2147483647

-

-

[0x011D]S1ap_Interac tionWithOtherProcedu re

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x011E]S1ap_Unkno wnErabId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x011F]S1ap_Multipl eErabIdInstances

count

A call is released due to receiving the information with the same ERAB ID after the Initial Context Setup Request message is received.

Y

CC

event

int

0~2147483647

-

-

[0x0120]S1ap_Encryp tionAndOrIntegrityProt ectionAlgorithmsNotS upported

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0121]S1ap_S1Intra SystemHandoverTrigg ered

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0122]S1ap_S1Inter SystemHandoverTrigg

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0123]S1ap_X2Han doverTriggered

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0124]S1ap_Redire ctionTowards1xRtt

count

A call is released due to redirection to 1xRTT.

Y

CC

event

int

0~2147483647

-

-

[0x0125]S1ap_NotSu pportedQciValue

count

A call is released due to receiving the QCI value not supported by eNB through the Initial Context Setup Request message.

Y

CC

event

int

0~2147483647

-

-

[0x0126]S1ap_Invalid CsgId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0128]S1ap_Transp ortResourceUnavailab le

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0129]S1ap_Cause TransportUnspecified

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0132]S1ap_Normal Release

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0133]S1ap_Authen ticationFailure

count

MME transmits the UE Context Release Command message including the cause value due to the UE authentication failure during the attach.

Y

CC

event

int

0~2147483647

-

-

[0x0134]S1ap_Detach

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0135]S1ap_Cause NasUnspecified

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0136]S1ap_CsgSu bscriptionExpiry

count

If S1 is released because the UE whose location was registered in the CSG area has no or expired CSG subscription, the UE Context

Y

CC

event

int

0~2147483647

-

-

ered

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Release command is transmitted. The CSG-related causes will be supported later. [0x013C]S1ap_Transf erSyntaxError

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x013D]S1ap_Abstra ctSyntaxErrorReject

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x013E]S1ap_Abstra ctSyntaxErrorIgnoreA ndNotify

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x013F]S1ap_Messa geNotCompatibleWith ReceiverState

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0140]S1ap_Seman ticError

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0141]S1ap_Abstra ctSyntaxErrorFalselyC onstructedMessage

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0142]S1ap_Cause ProtocolUnspecified

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0146]S1ap_Control ProcessingOverload

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0147]S1ap_NotEn oughUserPlaneProces singResources

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0148]S1ap_Hardw areFailure

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0149]S1ap_OmInte rvention

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x014A]S1ap_Cause MiscUnspecified

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x014B]S1ap_Unkno wnPlmn

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0200]X2ap_Hando verDesirableForRadio Reasons

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0201]X2ap_TimeCr iticalHandover

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0202]X2ap_Resour ceOptimizationHando ver

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0203]X2ap_Reduc eLoadInServingCell

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0204]X2ap_Partial Handover

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0205]X2ap_Unkno wnNewEnbUEX2apId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0206]X2ap_Unkno wnOldEnbUEX2apId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0207]X2ap_Unkno wnPairOfUEX2apId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0208]X2ap_HoTar getNotAllowed

count

If the DRB CAC procedure fails in the target during X2 handover, this will be included in the X2_IN and X2_OUT preparation fail statistics.

Y

CC

event

int

0~2147483647

-

-

[0x0209]X2ap_Tx2Rel ocOverallExpiry

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x020A]X2ap_Treloc

count

If the Handover Request Acknowledge message is not

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

prepExpiry

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

received from the target eNB during X2 handover, this will be included in the X2_OUT preparation fail statistics of the source eNB.

[0x020B]X2ap_CellNo tAvailable

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x020C]X2ap_NoRad ioResourcesAvailableI nTargetCell

count

If the cell information corresponding to the target ID transmitted via the handover request message is not found in the target eNB, this will be included in the X2_IN and X2_OUT preparation fail statistics.

Y

CC

event

int

0~2147483647

-

-

[0x020D]X2ap_Invalid MmeGroupId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x020E]X2ap_Unkno wnMmeCode

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x020F]X2ap_Encryp tionAndOrIntegrityProt ectionAlgorithmsNotS upported

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0210]X2ap_Report CharacteristicsEmpty

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0211]X2ap_NoRep ortPeriodicity

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0212]X2ap_Existin gMeasurementId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0213]X2ap_Unkno wnEnbMeasurementId

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0214]X2ap_Measu

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

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Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0215]X2ap_Cause RadioNetworkUnspeci fied

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0216]X2ap_LoadB alancing

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0217]X2ap_Hando verOptimization

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0218]X2ap_Value OutOfAllowedRange

count

A call is released when the QCI value of the E-RAB level QoS parameters is out of the range specified in the specification during bearer setup in the target eNB. This will be included in the X2_IN and X2_OUT preparation fail statistics.

Y

CC

event

int

0~2147483647

-

-

[0x0219]X2ap_Multipl eErabIdInstances

count

A call is released when setup is requested for the same ERAB ID during bearer setup in the target eNB. This will be included in the X2_IN and X2_OUT preparation fail statistics.

Y

CC

event

int

0~2147483647

-

-

[0x021A]X2ap_Switch OffOngoing

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x021E]X2ap_Transp ortResourceUnavailab le

count

A call is released when the internal resource setup fails in the target eNB during X2 handover; this will be included in the X2 IN Preparation Fail cause.

Y

CC

event

int

0~2147483647

-

-

[0x021F]X2ap_Cause

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

rementTemporarilyNot Available

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Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0228]X2ap_Transf erSyntaxError

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0229]X2ap_Abstra ctSyntaxErrorReject

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x022A]X2ap_Abstra ctSyntaxErrorIgnoreA ndNotify

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x022B]X2ap_Messa geNotCompatibleWith ReceiverState

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x022C]X2ap_Sema nticError

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x022D]X2ap_Cause ProtocolUnspecified

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x022E]X2ap_Abstra ctSyntaxErrorFalselyC onstructedMessage

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0232]X2ap_Control ProcessingOverload

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0233]X2ap_Hardw areFailure

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0234]X2ap_OmInte rvention

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0235]X2ap_NotEn oughUserPlaneProces singResources

count

Currently not in use.

Y

CC

event

int

0~2147483647

-

-

[0x0236]X2ap_Cause MiscUnspecified

count

The Handover Cancel message is transmitted to the target eNB due to reestablishment to the source

Y

CC

event

int

0~2147483647

-

-

TransportUnspecified

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

eNB during X2 handover. This call release will be included the X2_IN Fail statistics. [0x0300]EccTmout_Rr cConnectionSetupCo mplete

count

A call is released when the RRC Connection Setup Complete message is not received after the RRC Connection Setup message is transmitted to the UE.

Y

CC

event

int

0~2147483647

-

-

[0x0301]EccTmout_Rr cConnectionReconfig Complete

count

A call is released when the RRC Connection Reconfiguration Complete message is not received after transmitting the RRC Connection Reconfiguration message.

Y

CC

event

int

0~2147483647

-

-

[0x0302]EccTmout_Rr cConnectionReestabli shComplete

count

A call is released when the RRC Connection Reestablishment Complete message is not received from the UE after transmitting the RRC Connection Reestablishment message to the UE.

Y

CC

event

int

0~2147483647

-

-

[0x0303]EccTmout_Rr cSecurityModeCompl ete

count

A call is released when the Security Mode Complete message is not received after the Security Mode Command message is transmitted to the UE.

Y

CC

event

int

0~2147483647

-

-

[0x0304]EccTmout_Rr cUECapabilityInformat ion

count

A call is released when the UE Capability Information message is not received after the UE Capability Enquiry message is transmitted to the UE.

Y

CC

event

int

0~2147483647

-

-

[0x0306]EccTmout_Rr cHandoverPreparation

count

A call is released when the UL Handover Preparation Transfer

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

message is not received after transmitting the Handover From EUTRA Preparation Request during the Inter RAT HRPD handover. Not applicable to the service provider who does not use the HRPD handover. [0x0307]EccTmout_Int raHandoverCmdComp lete

count

A call is released when the target cell cannot receive the RRC Connection Reconfiguration Complete message during the intra-handover.

Y

CC

event

int

0~2147483647

-

-

[0x0308]EccTmout_Int erX2HandoverCmdCo mplete

count

A call is released when the target eNB cannot receive the RRC Connection Reconfiguration Complete message during the X2 handover.

Y

CC

event

int

0~2147483647

-

-

[0x0309]EccTmout_Int erS1HandoverCmdCo mplete

count

A call is released when the target eNB cannot receive the RRC Connection Reconfiguration Complete message during the S1 handover.

Y

CC

event

int

0~2147483647

-

-

[0x0313]EccTmout_S 1InitialContextSetupR equest

count

A call is released when the Initial Context Setup Request message is not received after transmitting the Initial UE message to the MME.

Y

CC

event

int

0~2147483647

-

-

[0x0316]EccTmout_S 1PathSwitchAck

count

A call is released when the Path Switch Request Acknowledge message is not received after the target eNB transmits the Path Switch Request message during

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

[0x0317]EccTmout_S 1HandoverPreparatio n

count

[0x0318]EccTmout_S 1RelocOverall

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released when DownlinkS1 cdma2000tunneling message is not received after transmitting the UplinkS1cdma 2000tunneling message to MME during the Inter RAT HRPD handover. Not applicable to the service provider who does not use the HRPD handover.

Y

CC

event

int

0~2147483647

-

-

count

A call is released when a RelocOverall Timeout occurs in the source eNB during the S1 handover.

Y

CC

event

int

0~2147483647

-

-

[0x031A]EccTmout_S 1MmeStatusTransfer

count

A call is released when the target eNB cannot receive the MME Status Transfer message after the source eNB transmits the eNB Status Transfer message to the MME.

Y

CC

event

int

0~2147483647

-

-

[0x0324]EccTmout_X 2RelocOverall

count

A call is released when a RelocOverall Timeout occurs in the source eNB during the X2 handover.

Y

CC

event

int

0~2147483647

-

-

[0x0325]EccTmout_X 2SnStatusTransfer

count

A call is released when the target eNB cannot receive the X2 SN Status Transfer message transmitted from the source eNB.

Y

CC

event

int

0~2147483647

-

-

[0x0330]EccTmout_Int ernalResourceSetup

count

A response message is not received after the SetupReq message is transmitted to allocate

Y

CC

event

int

0~2147483647

-

-

the X2 handover.

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Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

resources to the protocol blocks within the eNB. [0x0332]EccTmout_Int ernalSecurityControl

count

A call is released when a response is not received from the PDCB block while transferring the security information to eNB‟s internal PDCB block during attach procedure.

Y

CC

event

int

0~2147483647

-

-

[0x0334]EccTmout_Int ernalForwardingPathS etup

count

A call is released when no response is received for the request of uplink and downlink path setup between the ECCB block and the eNB‟s internal block GTPB during handover.

Y

CC

event

int

0~2147483647

-

-

[0x0335]EccTmout_Int ernalReestablishContr ol

count

A call is released when no response message is received from RLCB and PDCB blocks while configuring the eNB‟s ECCB block and internal RLCB and PDCB blocks for RLC and PDCP Reestablishment during X2/S1 handover.

Y

CC

event

int

0~2147483647

-

-

[0x0336]EccTmout_Int ernalBufferFlush

count

A call is released when no response message is received from the PDCB while interfacing between the ECCB and PDCB for buffer flush during handover.

Y

CC

event

int

0~2147483647

-

-

[0x0337]EccTmout_Int ernalDataTransferStar t

count

A call is released when PDCP setup fails in the target eNB during handover.

Y

CC

event

int

0~2147483647

-

-

[0x0341]Ecc_UserIna ctivity

count

A call is released due to no traffic transmission during the given period of time (user inactivity time)

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

for a specific UE when the MACB block detects the user inactivity, and notifies the fact to the ECCB block. [0x0342]Ecc_ArqMax ReTransmission

count

A call is released when the RLCB block made transmission to the UE as many times as the Max Retransmission, but ARQ ACK is not received from the UE, which is notified to the ECCB.

Y

CC

event

int

0~2147483647

-

-

[0x0343]Ecc_RadioLin kFailure

count

When the MACB determines the Sync disconnection with the UE, it notifies the ECCB of OutOfSync. If the ECCB is notified of the MACB of being InSync again (HARQ-ACK/NACK received 20 times), or if it fails to receive the RRC Connection Reestablishment Request from the UE, the call is released after a timeout (default: 5 seconds).

Y

CC

event

int

0~2147483647

-

-

[0x0344]Ecc_UECont extNotFound

count

Although the UE requested the Reestablishment, cannot perform Reestablishment because could not find the UE Context information in eNB.

Y

CC

event

int

0~2147483647

-

-

[0x0345]Ecc_S1ApSn StatusNotReceived

count

If the RRC Connection Reestablishment Request message is received while waiting for the SN Status Transfer message from the source eNB or the MME Status Transfer message from the MME, the RRC

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Connection Reestablishment Reject message is transmitted to the UE. [0x0346]Ecc_ReestFa ilInvalidState

count

If the RRC Connection Reestablishment Request message is received during Attach, the eNB detects that reestablishment occurs while the DRB setup is not normal, and releases the call.

Y

CC

event

int

0~2147483647

-

-

[0x0347]Ecc_CdmaHa ndoverPreparationFail ure

count

A call is released when the UL Handover Preparation Transfer message is not received after transmitting the Handover From EUTRA Preparation Request during the Inter RAT HRPD handover.

Y

CC

event

int

0~2147483647

-

-

[0x0348]Ecc_RcvS1U ECtxtReleaseCmdAbn ormalState

count

A call is released when the UE Context Release Command message is received when the UE Associated setup is not made with the MME. If this cause occurs, it is necessary to check the cause value delivered to the MME.

Y

CC

event

int

0~2147483647

-

-

[0x0349]Ecc_RcvRes etRequestFromEcmb

count

A call is released due to receiving a reset request from ECMB due to refork of a specific block in eNB.

Y

CC

event

int

0~2147483647

-

-

[0x034A]Ecc_RcvS1R esetFromMme

count

The call in the handover process is released by receiving a reset message from the MME.

Y

CC

event

int

0~2147483647

-

-

[0x034B]Ecc_RcvX2R

count

A call is released due to the

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

esetRequest

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

reception of the Reset Request message from other eNB.

[0x034C]Ecc_S1Sctp OutOfService

count

A call is released when the S1 Association‟s status is changed from In Service to Out of Service state.

Y

CC

event

int

0~2147483647

-

-

[0x034D]Ecc_RcvCell ReleaseIndFromEcmb

count

A call is released due to the Cell Release Ind message received from the ECMB block because of DSP down or CPRI failure caused by DSP problem. (CPRI deleted)

Y

CC

event

int

0~2147483647

-

-

[0x034E]Ecc_DspAudi tRlcCallRelease

count

A call is released when the call remains in the ECCB and MACB, but not in the RLCB, which causes resource mismatch.

Y

CC

event

int

0~2147483647

-

-

[0x034F]Ecc_DspAudi tMacCallRelease

count

A call is released when the call remains in the ECCB and RLC, but not in the MACB, which causes resource mismatch.

Y

CC

event

int

0~2147483647

-

-

[0x0350]Ecc_DspAudi tRlcMacCallRelease

count

A call is released when the call remains in the ECCB, but not in the RLC and MAC, which causes resource mismatch.

Y

CC

event

int

0~2147483647

-

-

[0x0351]Ecc_SecAlgo rithmsCombinationInv alid

count

The security algorithm value is received in the Initial Context Setup Request, S1 Handover Request, X2 Handover Request, S1 UE Context Modification message. A call is released when the ciphering algorithm does not have the null algorithm value if the

Y

CC

event

int

0~2147483647

-

-

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Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

integrity algorithm supports the null algorithm. [0x0352]Ecc_X2Sctp OutOfService

count

A call is released when the X2 Association‟s status is changed from In Service to Out of Service state.

Y

CC

event

int

0~2147483647

-

-

[0x0353]Ecc_Release DueToEnbGenerated Reason

count

A call is released due to the internal cause in eNB.

Y

CC

event

int

0~2147483647

-

-

[0x0354]Ecc_InterFaR edirection

count

When processing the redirection to the inter FA (If it conflicts with the CRR output conditions based on the S1AP cause, the CRR in the column D (Call Release Cause) is displayed.)

Y

CC

event

int

0~2147483647

-

-

[0x0355]Ecc_CSFBCo nfigFailure

count

A call is released when, even if CSFB was triggered by the InitialContextSetupRequest message, the CSFB redirection cannot be processed due to eNB setting error (Inter RAT FA information not specified).

Y

CC

event

int

0~2147483647

-

-

[0x0365]Rrm_Fail

count

The DB initialization procedure managed by the ERRM fails.

Y

CC

event

int

0~2147483647

-

-

[0x0366]Rrm_CellBarr ed

count

A call is released when RRC Connection Reject message is transmitted due to call rejection because the relevant cell is barred even when the RRC Connection Request message is received.

Y

CC

event

int

0~2147483647

-

-

[0x0367]Rrm_MaxCall CountOver

count

When calls are generated exceeding the number of calls that

Y

CC

event

int

0~2147483647

-

-

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Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

can be accommodated, they are rejected by CAC. [0x0368]Rrm_MaxDrb CountOver

count

When calls are generated exceeding the number of DRB that can be accommodated by cell, they are rejected by CAC.

Y

CC

event

int

0~2147483647

-

-

[0x0369]Rrm_QosCac Fail

count

The call with the QoS that cannot be allowed by the cell is generated; it is rejected by CAC.

Y

CC

event

int

0~2147483647

-

-

[0x036A]Rrm_Preemp tionFail

count

Preemption fails because the requested ERAB‟s priority is under the priority of the existing UE.

Y

CC

event

int

0~2147483647

-

-

[0x036B]Rrm_CallRsc Fail

count

Call ID is all assigned thus Call ID cannot be assigned any more.

Y

CC

event

int

0~2147483647

-

-

[0x036C]Rrm_BhCac Fail

count

A call is released when the BH link usage by a specific QoS (GBR Bearer) exceeds the threshold defined in the PLD.

Y

CC

event

int

0~2147483647

-

-

[0x036D]Rrm_SrsRsc Fail

count

When a new call supports both SRS and DRX, the SRS resources need to assigned in advance to assign the DRX resources but the DRX resources cannot be assigned because the SRS resource is not assigned.

Y

CC

event

int

0~2147483647

-

-

[0x036E]Rrm_CqiRsc Fail

count

CQI/PMI resources are all assigned thus cannot assign the resource any more.

Y

CC

event

int

0~2147483647

-

-

[0x036F]Rrm_SpsRsc Fail

count

SPS resources are all assigned thus the SPS resource cannot be assigned any more.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0370]Rrm_N1Pucc hRscFail

count

n1PucchAnRep resources are all assigned thus the resource cannot be assigned any more.

Y

CC

event

int

0~2147483647

-

-

[0x0371]Rrm_SrRscF ail

count

During SR resource allocation and release, the SR resource search is not allowed to exceed the Max value of the SR resource DB.

Y

CC

event

int

0~2147483647

-

-

[0x0372]Rrm_TpcRsc Fail

count

During TPC PUCCH RNTI resource allocation and release, the TPC PUCCH resource search is not allowed to exceed the Max value of TPC PUCCH resource DB.

Y

CC

event

int

0~2147483647

-

-

[0x0373]Rrm_AllMme NotService

count

A call is rejected because there no MME exists currently in connection.

Y

CC

event

int

0~2147483647

-

-

[0x0374]Rrm_MmeOv erload

count

When the MME is in Overload status, cannot accommodate the calls because overloadAction and establishmentCause does not match.

Y

CC

event

int

0~2147483647

-

-

[0x0375]Rrm_NotExist Mme

count

The registered MME information that the UE informs in the RRC Connection Setup Complete message does not exist in the eNB database.

Y

CC

event

int

0~2147483647

-

-

[0x0376]Rrm_Availabl eMmeNotExist

count

The MME with the PLMN value informed by the UE does not exist in the RRC Connection Setup Complete message.

Y

CC

event

int

0~2147483647

-

-

[0x0377]Rrm_UEStms iDuplicate

count

The same UE transmits the RRC Connection Request with the same

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

[0x0600]Gtp_SetupFai l

count

[0x0601]Gtp_Release Fail

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released when a response to GTP Setup Fail is transmitted after the SetupReq message is received from the ECCB. Tunnel information error managed by the GTPB block and tunnel setting failure due to DB management error are notified to the ECCB.

Y

CC

event

int

0~2147483647

-

-

count

An error response is generated when GTP Release fails.

Y

CC

event

int

0~2147483647

-

-

[0x0602]Gtp_ModifyF ail

count

A call is released when a response to GTP Modify Fail is transmitted after the ModifyReq message is received from the ECCB. Tunnel information error managed by the GTPB block and tunnel setting failure due to DB management error are notified to the ECCB.

Y

CC

event

int

0~2147483647

-

-

[0x0603]Gtp_ResetFai l

count

A call is released if there is response for Gtp setup fail after receiving the ModifyReq message from the ECMB.

Y

CC

event

int

0~2147483647

-

-

[0x0604]Gtp_PathFail

count

If there is no Echo Response within 60 seconds after Echo Request is transmitted periodically to the peer node of the EPS bearer, the request is retransmitted five times at the interval of 5 seconds.

Y

CC

event

int

0~2147483647

-

-

S-TMSI value.

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

If there is still no response, ECCB receives the response indicating a path to the peer node is abnormal. The GTPB block determines that a bearer path to the peer node is abnormal or GTP entity within the peer node is abnormal and notifies the ECCB block of the failure. [0x0605]Gtp_NotSupp ortEh

count

Send a response when receiving the message with the extension header that cannot be supported by the system from dst peer during tunnel setup.

Y

CC

event

int

0~2147483647

-

-

[0x0606]Gtp_RcvError IndFromGw

count

A bearer is released when an error indication message is received from the peer node of GTPB, which is notified to the ECCB.

Y

CC

event

int

0~2147483647

-

-

[0x0700]Pdcp_Invalid CallId

count

An error response is generated when the callid of the downloaded message from the ECCB is the value of the MAX_USER_ENB or higher.

Y

CC

event

int

0~2147483647

-

-

[0x0701]Pdcp_Invalid RbId

count

When Rbid of the message received from ECCB is MAX_RB or less for PDCP_DRB and MAX_SRB or less for PDCP_ SRB, the message is normal. Otherwise, an error response is generated. There is no possibility that it will a CSL cause.

Y

CC

event

int

0~2147483647

-

-

[0x0702]Pdcp_Invalid NumOfRb

count

An error response is generated when the NumRb of the downloaded message from the

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ECCB is the value of the CI_MAX_RB or higher. [0x0703]Pdcp_Invalid RlcMode

count

An error response is generated when the RLC mode of the message downloaded from the ECCB is invalid.

Y

CC

event

int

0~2147483647

-

-

[0x0704]Pdcp_Invalid SetupType

count

An error response is generated when the setupType of the message downloaded from the ECCB is invalid.

Y

CC

event

int

0~2147483647

-

-

[0x0705]Pdcp_Invalid CntlType

count

An error response is generated when the CntlType of the message downloaded from the ECCB is invalid.

Y

CC

event

int

0~2147483647

-

-

[0x0706]Pdcp_Invalid PdcpSnType

count

An error response is generated when the SNType of the message downloaded from the ECCB is UM, but not 7-bit or 12-bit.

Y

CC

event

int

0~2147483647

-

-

[0x0707]Pdcp_Invalid LochType

count

An error response is generated when the logical type of the message downloaded from the ECCB is other than either LOCH_DCCH (for the SRB) or LOCH_DTCH (for the DRB). There is no possibility that it will a CSL cause.

Y

CC

event

int

0~2147483647

-

-

[0x0708]Pdcp_RohcS etupFail

count

An error response is generated when the ROHC context setup procedure fails due to lack of memory while receiving ConfigReq from the ECCB.

Y

CC

event

int

0~2147483647

-

-

[0x0709]Pdcp_Inactiv

count

A call is released when the

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ateRbId

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

message on Inactive RB is received while receiving the msgCpdcpModifyReq from the ECCB.

[0x070A]Pdcp_SrbInte grityFail

count

A call is released when SRB‟s integrity check failure notification is received from the PDCB.

Y

CC

event

int

0~2147483647

-

-

[0x0846]Rlc_InvalidPa rameter

count

An error response is generated when the parameter of the message received from the ECCB is not the value within the defined range.

Y

CC

event

int

0~2147483647

-

-

[0x0847]Rlc_NoMore Resource

count

An error response is generated when a new connection cannot be allowed due to insufficient resources to be allocated to the message received from the ECCB.

Y

CC

event

int

0~2147483647

-

-

[0x0848]Rlc_CellIsIdle

count

An error response is generated when cell ID status of the message received from the ECCB is IDLE, not ACTIVE.

Y

CC

event

int

0~2147483647

-

-

[0x0849]Rlc_CallIsNot Active

count

An error response is generated when the call ID status of the message received from the ECCB is not ACTIVE.

Y

CC

event

int

0~2147483647

-

-

[0x0880]Rlc_ErrorEm ptyMsg

count

An error response is generated when the message received by the RLC is NULL.

Y

CC

event

int

0~2147483647

-

-

[0x0881]Rlc_ErrorUnk nownMsgId

count

An error response is generated when the type of the message received by the RLC is unknown

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0882]Rlc_ErrorInva lidDataLen

count

An error response is generated when the size of the message received by the RLC is abnormal.

Y

CC

event

int

0~2147483647

-

-

[0x0883]Rlc_ErrorNo RspFromDL

count

An error response is generated when the RLC downlink does not respond to the message received.

Y

CC

event

int

0~2147483647

-

-

[0x0884]Rlc_ErrorNo RspFromUL

count

An error response is generated when the RLC uplink does not respond to the message received.

Y

CC

event

int

0~2147483647

-

-

[0x0885]Rlc_ErrorNo RspFromDLUL

count

An error response is generated when the RLC downlink and uplink do not respond to the message received.

Y

CC

event

int

0~2147483647

-

-

[0x0886]Rlc_ErrorRxB eforeRlcReady

count

An error response is generated when the RLC uplink receives a signaling message before it operates properly.

Y

CC

event

int

0~2147483647

-

-

[0x0887]Rlc_ErrorInva lidRlcTransactionId

count

An error response is generated when the transaction ID exceeds the specified range while the RLC processes the message received from the ECCB.

Y

CC

event

int

0~2147483647

-

-

[0x0888]Rlc_ErrorInva lidContext

count

An error response is generated when a response is retransmitted from the RLC downlink for the signaling message that the RLC has already processed.

Y

CC

event

int

0~2147483647

-

-

[0x0889]Rlc_ErrorRlc ContextFull

count

An error code is generated when the number of the signaling messages received exceeds the capacity that the RLC can process.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

[0x0900]Mac_InvalidM sgId

count

An undefined Message Id is received.

Y

CC

event

int

0~2147483647

-

-

[0x0901]Mac_InvalidS etupType

count

An undefined SetupType is received.

Y

CC

event

int

0~2147483647

-

-

[0x0902]Mac_InvalidC allCellId

count

When the „cell call ID‟ value of the message received from the ECCB is outside the defined range.

Y

CC

event

int

0~2147483647

-

-

[0x0903]Mac_InvalidP arameter

count

When the parameter received is outside the defined range.

Y

CC

event

int

0~2147483647

-

-

[0x0904]Mac_Insuffici entResource

count

The RB cannot be allocated due to insufficient MACB internal resource required to manage the RB.

Y

CC

event

int

0~2147483647

-

-

[0x0905]Mac_NotAssi gnedRb

count

A reconfig/delete request is received for the RB that is not allocated.

Y

CC

event

int

0~2147483647

-

-

[0x0906]Mac_NotAssi gnedUE

count

A config/delete request is received for the UE that is not allocated.

Y

CC

event

int

0~2147483647

-

-

[0x0908]Mac_NotAssi gnSrb1

count

When the call setup message is received without SRB1 setup.

Y

CC

event

int

0~2147483647

-

-

[0x0909]Mac_InvalidR bConfig

count

When the RB number within the Logical Channel Config exceeds the maximum value.

Y

CC

event

int

0~2147483647

-

-

[0x090A]Mac_InvalidC ellId

count

When the cell that corresponds to the received message is idle.

Y

CC

event

int

0~2147483647

-

-

[0x0357]EccTmout_s CellAdditionFailure

count

A call is released when RRC Connection Reconfiguration Complete message is not received from UE, after RRC Connection Reconfiguration message is transmitted to UE for SCell

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

[0x0358]EccTmout_s CellReleaseFailure

count

[0x0359]Ecc_RcvGtp AliveInd

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

A call is released when RRC Connection Reconfiguration Complete message is not received from UE, after a RRC Connection Reconfiguration message is transmitted to UE for SCell Release.

Y

CC

event

int

0~2147483647

-

-

count

Restart GTP in Inter DU

Y

CC

event

int

0~2147483647

-

-

[0x035A]Ecc_RcvSeR estart

count

Restart SE in Inter DU

Y

CC

event

int

0~2147483647

-

-

[0x0378]Rrm_LbhoCa cFailure

count

when receiving the handover request for the purpose of load balancing, it adds up if the cell load exceeds the target cell load threshold

Y

CC

event

int

0~2147483647

-

-

[0x035C]Rrm_Overloa dProtection

count

A call is rejected by Overload Protection control funtion

Y

CC

event

int

0-2147483647

-

-

Addition.

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Chapter 2 Counter Description

MRO Mobility Robustness Optimization (MRO) statistics are intended to collect and classify handover issues due to Radio Link Failure (RLF) occurring during or after a handover, and use them in the MRO algorithm to optimize handover parameters (e.g. Cell Individual Offset) and improve the handover performance.

MRO RLF Classification The causes of the handover-related RLF recorded as MRO issues are: too-late handover, too-early handover, and handover to a wrong cell. The causes of the RLF not recorded as MRO issues are recorded as coverage holes. Index Name

Description

cNum

Cell number to detect Handover problem

Neighbor Cell

Neighbor Cell Identity that is the subject of Handover problem

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CoverageHole

count

Number of RLF/HO failures due to the coverage hole

Y

CC

event

int

0~2147483647

-

-

CoverageHoleN

count

Number of RLF/HO failures due to the coverage hole toward Cell N

Y

CC

event

int

0~2147483647

-

-

TooEarlyHoFailur e

count

The number of too-early handovers after transmitting the handover

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

TooEarlyHoRlfAft erHo

count

TooLateHoRlfBef oreTriggering

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The number of too-early handovers after completing the handover process.

Y

CC

event

int

0~2147483647

-

-

count

The number of RLFs before triggering the handover.

Y

CC

event

int

0~2147483647

-

-

TooLateHoRlfAfte rTriggering

count

The number of RLFs after the handover command is transmitted.

Y

CC

event

int

0~2147483647

-

-

WrongCellRlfAfter Triggering

count

The number of handovers to a wrong cell before transmitting the handover command.

Y

CC

event

int

0~2147483647

-

-

WrongCellRlfAfter Ho

count

The number of handovers to a wrong cell after transmitting the handover command.

Y

CC

event

int

0~2147483647

-

-

BlackCellRlfAfter Ho

count

The number of handovers to a black cell RLF after HO (X2)

-

CC

event

int

0~2147483647

-

-

PingpongHandov er

count

The number of ping-pong handovers detected by the ping-pong detection algorithm.

Y

CC

event

int

0~2147483647

-

-

MroRlfCnt

count

MRO RLF Classification collection count

CC

event

int

0~2147483647

-

-

MroRlfCid

Neighbor Cell ID

NeighborCell ID of which collection is requested

OW

event

int

0~2147483647

-

-

command

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Chapter 2 Counter Description

MRO RLF at RRC Connection Statistics on MRO for RLF information received at the step of RRC connection setup after failure in RRC reestablishment Index Name

Description

cNum

Cell number in a base station detecting a handover problem

NeighborCell

Identifier of a neighboring cell which is a subject of handover problem (Cell Identity)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CoverageHoleAtSetup

count

Occurrence in radio link failure by a coverage hole in a serving cell RRC reestablishment in the serving cell

Y

CC

event

int

0~21474836 47

-

-

CoverageHoleAtSetup N

count

RRC reestablishment in the target cell during or after handover

Y

CC

event

int

0~21474836 47

-

-

TooEarlyHoFailureAtS etup

count

RRC reestablishment in the source cell without the terminal moving to the target cell due to the attempt for too-early handover

Y

CC

event

int

0~21474836 47

-

-

TooEarlyHoRlfAfterH OAtSetup

count

Occurrence in radio link failure after the terminal moves to the target cell due to the attempt for too-early handover RRC reestablishment in the source cell

Y

CC

event

int

0~21474836 47

-

-

TooLateHoRlfBeforeT riggeringAtSetup

count

Occurrence in radio link failure in the serving cell by failing to attempt the handover even though the

Y

CC

event

int

0~21474836 47

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

terminal has moved to another cell RRC reestablishment in the serving cell HoToWrongCellRlfAft erTriggeringAtSetup

count

RRC reestablishment by the terminal in other cell while the handover procedure is not complete by attempting at the handover to the cell where the terminal is not located

Y

CC

event

int

0~21474836 47

-

-

HoToWrongCellRlfAft erHOAtSetup

count

Occurrence in radio link failure in the target cell after completion of handover by attempting at the handover to the target cell RRC reestablishment in other cell by the terminal

Y

CC

event

int

0~21474836 47

-

-

MroRrcConnCnt

count

MRO RRC connection collection count

-

CC

event

int

0~21474836 47

-

-

MroRrcConnCid

Neighbo rCell ID

NeighborCell ID requested for collection

-

OW

event

int

0~21474836 47

-

-

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Chapter 2 Counter Description

VoLTE VoLTE Handover This section provides statistics data for VoLTE Handover Per QCI1. Index Name

Description

cNum

Cell Id

tcID

Target Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistic Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

VoLTE_IntraEnbAt t

count

Intra handover attempt count

Y

CC

event

int

0~2147483647

-

-

VoLTE_IntraEnbPr epSucc

count

Successful intra handover preparation count

Y

CC

event

int

0~2147483647

-

-

VoLTE_IntraEnbS ucc

count

Successful intra handover execution count

Y

CC

event

int

0~2147483647

-

-

VoLTE_InterX2Out Att

count

X2 handover attempt count

Y

CC

event

int

0~2147483647

-

-

VoLTE_InterX2Out PrepSucc

count

Successful X2 handover preparation count

Y

CC

event

int

0~2147483647

-

-

VoLTE_InterX2Out

count

Successful X2 handover

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Succ

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

execution count

VoLTE_InterS1Out Att

count

S1 handover attempt count

Y

CC

event

int

0~2147483647

-

-

VoLTE_InterS1Out PrepSucc

count

Successful S1 handover preparation count

Y

CC

event

int

0~2147483647

-

-

VoLTE_InterS1Out Succ

count

Successful S1 handover execution count

Y

CC

event

int

0~2147483647

-

-

VoLTE_Cnt

count

Handover collection count

-

CC

event

int

0~2147483647

-

-

VoLTE_Cid

tcID

tcID of which collection is requested

-

OW

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

GTP The GPRS Tunneling Protocol Block (GTPB) handles the GPRS Tunneling Protocol for data access from the S1-U or X2-U, manages the GTP tunnels for the E-RAB, and transmits/receives user data. GTP statistics are on the GTP layer packets that are received from the S1-U (S-GW) over the downlink, which allow the operator to detect the backhaul condition.

GTP Sequence Number per QCI This section provides the statistics data for the count of lost downlink packets and the count of Out of Sequence downlink packets in the GTP layer. Index Name

Description

QCI

QoS Class Identifier

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

GtpSnQciPeakLo ss

count

Count of downlink GTP packets which have been regarded to be lost until the statistics collection time. Minus value means that the packets counted as loss at previous collection time have come to out-of-sequence at current collection time.

Y

CC

5s

int

-2147483647 ~2147483647

-

-

GtpSnQciOos

count

Count of Out of Sequence downlink packets (that is the accumulated count of

Y

CC

5s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

packets which order of the GTP Sequence Number is reversed) for each QCI.

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Chapter 2 Counter Description

GTP Sequence Number per eNB This section provides statistics data for the count of lost downlink packets and the count of Out of Sequence downlink packets in the GTP layer for the eNB. Index Name

Description

-

-

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

GtpSnEnbPeakLo ss

count

Count of downlink GTP packets which have been regarded to be lost until the statistics collection time. Minus value means that the packets counted as loss at previous collection time have come to out-of-sequence at current collection time.

Y

CC

5s

int

-2147483647 ~2147483647

-

-

GtpSnEnbOos

count

Count of Out of Sequence downlink packets (that is the accumulated count of packets which order of the GTP Sequence Number is reversed) for each QCI.

Y

CC

5s

int

0~2147483647

-

-

GtpSnEnbDLCnt

count

Number of the downlink GTP packets received until the time of counting the statistic.

Y

CC

5s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

GtpSnEnbLossRa te

%

Ratio of the downlink GTP packets lost against the total packets until the time of collecting the statistics *loss packet=GtpSnEnb PeakLoss *total packet=GtpSnEnb DLCnt+(GtpSnEnbDLCntGtpSnEnbOos). Minus value means that the packets counted as loss at previous collection time have come to out-of-sequence at current collection time.

Y

OW

Period

float

-100~100

GtpSnEnbPeakLos s/(GtpSnEnbDLCnt +GtpSnEnbPeakLo ss)*100

sum(GtpSnEnbPeakLo ss)/(sum(GtpSnEnbDL Cnt)+sum(GtpSnEnbPe akLoss))*100

GtpSnEnbOosRat e

%

Total GTP Packet OOS rate per eNB

Y

OW

Period

float

0~100

GtpSnEnbOos/Gtp SnEnbDLCnt*100

sum(GtpSnEnbOos)/su m(GtpSnEnbDLCnt)*10 0

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Chapter 2 Counter Description

GTP Forward Traffic The GTP Forward Traffic statistic is defined as the downlink/uplink count/byte/throughput of forwarding traffic during calls, S1/X2 handovers and inter-RAT S1/X2 handovers. In the statistics items, the DL is based on the received packets. The UL is based on the transmitted packets. Index Name

Description

-

-

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CntGtpDLEnbS1Nor

count

Number of S1 downlink GTP packets during the basis call.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbS1Nor

count

Number of S1 uplink GTP packets during the basis call.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpDLEnbS1Fw

count

Number of forwarded packets received in the S1 downlink during the S1 handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbS1Fw

count

Number of packets forwarded to the S1 uplink during the S1 handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpDLEnbX2Fw

count

Number of forwarded packets received in the X2 downlink during the X2 handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbX2Fw

count

Number of packets forwarded to the X2 uplink during the X2 handover.

Y

CC

20 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CntGtpDLEnbIRatUtra nS1Fw

count

Number of forwarded packets received in the S1 downlink during the inter-RAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbIRatUtra nS1Fw

count

Number of packets forwarded to the S1 uplink during the inter-RAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpDLEnbIRatUtra nX2Fw

count

Number of forwarded packets received in the X2 downlink during the inter-RAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbIRatUtra nX2Fw

count

Number of packets forwarded to the X2 uplink during the inter-RAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpDLEnbIRatGer anS1Fw

count

Number of forwarded packets received in the S1 downlink during the inter-RAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbIRatGer anS1Fw

count

Number of packets forwarded to the S1 uplink during the inter-RAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpDLEnbIRatGer anX2Fw

count

Number of forwarded packets received in the X2 downlink during the inter-RAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbIRatGer anX2Fw

count

Number of packets forwarded to the X2 uplink during the inter-RAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpDLEnbIRatCd ma2000HrpdS1Fw

count

Number of forwarded packets received in the S1 downlink during the inter-RAT

Y

CC

20 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

CntGtpULEnbIRatCd ma2000HrpdS1Fw

count

CntGtpDLEnbIRatCd ma2000HrpdX2Fw

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of packets forwarded to the S1 uplink during the inter-RAT (CDMA2000 HRPD) handover.

Y

CC

20 s

int

0~2147483647

-

-

count

Number of forwarded packets received in the X2 downlink during the inter-RAT (CDMA2000 HRPD) handover.

Y

CC

20 s

int

0~2147483647

-

-

CntGtpULEnbIRatCd ma2000HrpdX2Fw

count

Number of packets forwarded to the X2 uplink during the inter-RAT (CDMA2000 HRPD) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbS1Nor

Kbytes

Bytes of S1 downlink GTP packets during the basis call.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbS1Nor

Kbytes

Bytes of S1 uplink GTP packets during the basis call.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbS1Fw

Kbytes

Bytes of forwarded packets received in the S1 downlink during the S1 handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbS1Fw

Kbytes

Bytes of packets forwarded to the S1 uplink during the S1 handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbX2Fw

Kbytes

Bytes of forwarded packets received in the X2 downlink during the X2 handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbX2Fw

Kbytes

Bytes of packets forwarded to the X2 uplink during the X2 handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbIRatUtr anS1Fw

Kbytes

Bytes of forwarded packets received in the S1 downlink

Y

CC

20 s

int

0~2147483647

-

-

(CDMA2000 HRPD) handover.

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

during the inter-RAT (UTRAN) handover. ByteGtpULEnbIRatUtr anS1Fw

Kbytes

Bytes of packets forwarded to the S1 uplink during the interRAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbIRatUtr anX2Fw

Kbytes

Bytes of forwarded packets received in the X2 downlink during the inter-RAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbIRatUtr anX2Fw

Kbytes

Bytes of packets forwarded to the X2 uplink during the interRAT (UTRAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbIRatGe ranS1Fw

Kbytes

Bytes of forwarded packets received in the S1 downlink during the inter-RAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbIRatGe ranS1Fw

Kbytes

Bytes of packets forwarded to the S1 uplink during the interRAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbIRatGe ranX2Fw

Kbytes

Bytes of forwarded packets received in the X2 downlink during the inter-RAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbIRatGe ranX2Fw

Kbytes

Bytes of packets forwarded to the X2 uplink during the interRAT (GERAN) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpDLEnbIRatCd ma2000HrpdS1Fw

Kbytes

Bytes of forwarded packets received in the S1 downlink during the inter-RAT (CDMA2000 HRPD) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbIRatCd

Kbytes

Bytes of packets forwarded to

Y

CC

20 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ma2000HrpdS1Fw

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

the S1 uplink during the interRAT (CDMA2000 HRPD) handover.

ByteGtpDLEnbIRatCd ma2000HrpdX2Fw

Kbytes

Bytes of forwarded packets received in the X2 downlink during the inter-RAT (CDMA2000 HRPD) handover.

Y

CC

20 s

int

0~2147483647

-

-

ByteGtpULEnbIRatCd ma2000HrpdX2Fw

Kbytes

Bytes of packets forwarded to the X2 uplink during the interRAT (CDMA2000 HRPD) handover.

Y

CC

20 s

int

0~2147483647

-

-

ThruGtpDLEnbS1Nor

Kbps

Throughput of S1 downlink GTP packets during the basis call.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbS1Nor*8*K _UNIT)/Thru GtpDLEnbS1 NorCnt/1000

(sum(ByteGtpDLEn bS1Nor)*8*K_UNIT )/sum(ThruGtpDLE nbS1NorCnt)/1000

ThruGtpDLEnbS1Nor Tot

Kbps

The sum of collected ThruGtpDLEnbS1Nor

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbS1Nor Cnt

s

Collected ThruGtpDLEnbS1 Nor count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbS1Nor

Kbps

Throughput of S1 uplink GTP packets during the basis call.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbS1Nor*8*K _UNIT)/Thru GtpULEnbS1 NorCnt/1000

(sum(ByteGtpULEn bS1Nor)*8*K_UNIT )/sum(ThruGtpULE nbS1NorCnt)/1000

ThruGtpULEnbS1Nor Tot

Kbps

The sum of collected ThruGtpULEnbS1Nor

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbS1Nor Cnt

s

Collected ThruGtpULEnbS1 Nor count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbS1Fw

Kbps

Throughput of forwarded packets received in the S1

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbS1Fw*8*K

(sum(ByteGtpDLEn bS1Fw)*8*K_UNIT)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula _UNIT)/Thru GtpDLEnbS1 FwCnt/1000

Hourly, Daily, Monthly Formula /sum(ThruGtpDLEn bS1FwCnt)/1000

downlink during the S1 handover. ThruGtpDLEnbS1FwT ot

Kbps

The sum of collected ThruGtpDLEnbS1Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbS1FwC nt

s

Collected ThruGtpDLEnbS1 Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbS1Fw

Kbps

Throughput of packets forwarded to the S1 uplink during the S1 handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbS1Fw*8*K _UNIT)/Thru GtpULEnbS1 FwCnt/1000

(sum(ByteGtpULEn bS1Fw)*8*K_UNIT) /sum(ThruGtpULEn bS1FwCnt)/1000

ThruGtpULEnbS1FwT ot

Kbps

The sum of collected ThruGtpULEnbS1Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbS1FwC nt

s

Collected ThruGtpULEnbS1 Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbX2Fw

Kbps

Throughput of forwarded packets received in the X2 downlink during the X2 handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbX2Fw*8*K _UNIT)/Thru GtpDLEnbX2 FwCnt/1000

(sum(ByteGtpDLEn bX2Fw)*8*K_UNIT) /sum(ThruGtpDLEn bX2FwCnt)/1000

ThruGtpDLEnbX2FwT ot

Kbps

The sum of collected ThruGtpDLEnbX2Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbX2FwC nt

s

Collected ThruGtpDLEnbX2 Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbX2Fw

Kbps

Throughput of packets forwarded to the X2 uplink during the X2 handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbX2Fw*8*K _UNIT)/Thru GtpULEnbX2 FwCnt/1000

(sum(ByteGtpULEn bX2Fw)*8*K_UNIT) /sum(ThruGtpULEn bX2FwCnt)/1000

ThruGtpULEnbX2FwT

Kbps

The sum of collected ThruGtp

-

CC

20 s

float

0~3.4*10^38

-

-

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Chapter 2 Counter Description Name

Unit

ot

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULEnbX2Fw

ThruGtpULEnbX2FwC nt

s

Collected ThruGtpULEnbX2 Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbIRatUtr anS1Fw

Kbps

Throughput of forwarded packets received in the S1 downlink during the inter-RAT (UTRAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbIRatUtran S1Fw*8*K_U NIT)/ThruGtp DLEnbIRatUt ranS1FwCnt/ 1000

(sum(ByteGtpDLEn bIRatUtranS1Fw)*8 *K_UNIT)/sum(Thru GtpDLEnbIRatUtra nS1FwCnt)/1000

ThruGtpDLEnbIRatUtr anS1FwTot

Kbps

The sum of collected ThruGtp DLEnbIRatUtraS1Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbIRatUtr anS1FwCnt

s

Collected ThruGtpDLEnbIRat UtraS1Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbIRatUtr anS1Fw

Kbps

Throughput of packets forwarded to the S1 uplink during the inter-RAT (UTRAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbIRatUtran S1Fw*8*K_U NIT)/ThruGtp ULEnbIRatUt ranS1FwCnt/ 1000

(sum(ByteGtpULEn bIRatUtranS1Fw)*8 *K_UNIT)/sum(Thru GtpULEnbIRatUtra nS1FwCnt)/1000

ThruGtpULEnbIRatUtr anS1FwTot

Kbps

The sum of collected Thru GtpULEnbIRatUtranS1Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbIRatUtr anS1FwCnt

s

Collected ThruGtpULEnbIRat UtranS1Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbIRatUtr anX2Fw

Kbps

Throughput of forwarded packets received in the X2 downlink during the inter-RAT (UTRAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbIRatUtran X2Fw*8*K_U NIT)/ThruGtp DLEnbIRatUt ranX2FwCnt/

(sum(ByteGtpDLEn bIRatUtranX2Fw)*8 *K_UNIT)/sum(Thru GtpDLEnbIRatUtra nX2FwCnt)/1000

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula 1000

Hourly, Daily, Monthly Formula

ThruGtpDLEnbIRatUtr anX2FwTot

Kbps

The sum of collected Thru GtpDLEnbIRatUtranX2Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbIRatUtr anX2FwCnt

s

Collected ThruGtpDLEnbIRat UtranX2Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbIRatUtr anX2Fw

Kbps

Throughput of packets forwarded to the X2 uplink during the inter-RAT (UTRAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbIRatUtran X2Fw*8*K_U NIT)/ThruGtp ULEnbIRatUt ranX2FwCnt/ 1000

(sum(ByteGtpULEn bIRatUtranX2Fw)*8 *K_UNIT)/sum(Thru GtpULEnbIRatUtra nX2FwCnt)/1000

ThruGtpULEnbIRatUtr anX2FwTot

Kbps

The sum of collected Thru GtpULEnbIRatUtranX2Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbIRatUtr anX2FwCnt

s

Collected ThruGtpULEnbIRat UtranX2Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbIRatGe ranS1Fw

Kbps

Bytes of forwarded packets received in the S1 downlink during the inter-RAT (GERAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbIRatGeran S1Fw*8*K_U NIT)/ThruGtp DLEnbIRatG eranS1FwCn t/1000

(sum(ByteGtpDLEn bIRatGeranS1Fw)* 8*K_UNIT)/sum(Thr uGtpDLEnbIRatGer anS1FwCnt)/1000

ThruGtpDLEnbIRatGe ranS1FwTot

Kbps

The sum of collected ThruGtp DLEnbIRatGeranS1Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbIRatGe ranS1FwCnt

s

Collected ThruGtpDLEnbIRat GeranS1FW count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbIRatGe ranS1Fw

Kbps

Throughput of packets forwarded to the S1 uplink during the inter-RAT (GERAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbIRatGeran S1Fw*8*K_U NIT)/ThruGtp

(sum(ByteGtpULEn bIRatGeranS1Fw)* 8*K_UNIT)/sum(Thr uGtpULEnbIRatGer

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula ULEnbIRatG eranS1FwCn t/1000

Hourly, Daily, Monthly Formula anS1FwCnt)/1000

ThruGtpULEnbIRatGe ranS1FwTot

Kbps

The sum of collected Thru GtpULEnbIRatGeranS1Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbIRatGe ranS1FwCnt

s

Collected ThruGtpULEnbIRat GeranS1FW count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbIRatGe ranX2Fw

Kbps

Throughput of forwarded packets received in the X2 downlink during the inter-RAT (GERAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbIRatGeran X2Fw*8*K_U NIT)/ThruGtp DLEnbIRatG eranX2FwCn t/1000

(sum(ByteGtpDLEn bIRatGeranX2Fw)* 8*K_UNIT)/sum(Thr uGtpDLEnbIRatGer anX2FwCnt)/1000

ThruGtpDLEnbIRatGe ranX2FwTot

Kbps

The sum of collected ThruGtp DLEnbIRatGeranX2Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbIRatGe ranX2FwCnt

s

Collected ThruGtpDLEnbIRat GeranX2Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbIRatGe ranX2Fw

Kbps

Throughput of packets forwarded to the X2 uplink during the inter-RAT (GERAN) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbIRatGeran X2Fw*8*K_U NIT)/ThruGtp ULEnbIRatG eranX2FwCn t/1000

(sum(ByteGtpULEn bIRatGeranX2Fw)* 8*K_UNIT)/sum(Thr uGtpULEnbIRatGer anX2FwCnt)/1000

ThruGtpULEnbIRatGe ranX2FwTot

Kbps

The sum of collected ThruGtp ULEnbIRatGeranX2Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbIRatGe ranX2FwCnt

s

Collected ThruGtpULEnbI RatGeranX2Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpDLEnbIRatCd ma2000HrpdS1Fw

Kbps

Throughput of forwarded packets received in the S1

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbIRatCdma

(sum(ByteGtpDLEn bIRatCdma2000Hr

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula 2000HrpdS1 Fw*8*K_UNI T)/ThruGtpD LEnbIRatCd ma2000Hrpd S1FwCnt/10 00

Hourly, Daily, Monthly Formula pdS1Fw)*8*K_UNI T)/sum(ThruGtpDL EnbIRatCdma2000 HrpdS1FwCnt)/100 0

downlink during the inter-RAT (CDMA2000 HRPD) handover.

ThruGtpDLEnbIRatCd ma2000HrpdS1FwTot

Kbps

The sum of collected ThruGtp DLEnbIRatCdma2000HrpdS1F w

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbIRatCd ma2000HrpdS1FwCnt

s

Collected ThruGtpULEnbIRat Cdma2000HrpdS1Fw count

-

OW

period

int

0~60*Period

-

-

ThruGtpULEnbIRatCd ma2000HrpdS1Fw

Kbps

Throughput of packets forwarded to the S1 uplink during the inter-RAT (CDMA2000 HRPD) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbIRatCdma 2000HrpdS1 Fw*8*K_UNI T)/ThruGtpU LEnbIRatCd ma2000Hrpd S1FwCnt/10 00

(sum(ByteGtpULEn bIRatCdma2000Hr pdS1Fw)*8*K_UNI T)/sum(ThruGtpUL EnbIRatCdma2000 HrpdS1FwCnt)/100 0

ThruGtpULEnbIRatCd ma2000HrpdS1FwTot

Kbps

The sum of collected ThruGtp DLEnbIRatCdma2000HrpdS1F w

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbIRatCd ma2000HrpdS1FwCnt

s

Collected ThruGtpULEnbIRat Cdma2000HrpdS1Fw count

-

OW

period

int

0~2147483647

-

-

ThruGtpDLEnbIRatCd ma2000HrpdX2Fw

Kbps

Throughput of forwarded packets received in the X2 downlink during the inter-RAT (CDMA2000 HRPD) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpDLE nbIRatCdma 2000HrpdX2 Fw*8*K_UNI T)/ThruGtpD LEnbIRatCd

(sum(ByteGtpDLEn bIRatCdma2000Hr pdX2Fw)*8*K_UNI T)/sum(ThruGtpDL EnbIRatCdma2000 HrpdX2FwCnt)/100

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula ma2000Hrpd X2FwCnt/10 00

Hourly, Daily, Monthly Formula 0

ThruGtpDLEnbIRatCd ma2000HrpdX2FwTot

Kbps

The sum of collected ThruGtp ULEnbIRatCdma2000HrpdS1F w

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpDLEnbIRatCd ma2000HrpdX2FwCnt

s

Collected ThruGtpDLEnbIRat Cdma2000HrpdX2Fw count

OW

period

int

0~2147483647

-

-

ThruGtpULEnbIRatCd ma2000HrpdX2Fw

Kbps

Throughput of packets forwarded to the X2 uplink during the inter-RAT (CDMA2000 HRPD) handover.

Y

OW

period

float

0~3.4*10^38

(ByteGtpULE nbIRatCdma 2000HrpdX2 Fw*8*K_UNI T)/ThruGtpU LEnbIRatCd ma2000Hrpd X2FwCnt/10 00

(sum(ByteGtpULEn bIRatCdma2000Hr pdX2Fw)*8*K_UNI T)/sum(ThruGtpUL EnbIRatCdma2000 HrpdX2FwCnt)/100 0

ThruGtpULEnbIRatCd ma2000HrpdX2FwTot

Kbps

The sum of collected Thru GtpULEnbIRatCdma2000Hrpd X2Fw

-

CC

20 s

float

0~3.4*10^38

-

-

ThruGtpULEnbIRatCd ma2000HrpdX2FwCnt

s

Collected ThruGtpULEnbIRat Cdma2000HrpdX2Fw count

-

OW

period

int

0~60*Period

-

-

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Chapter 2 Counter Description

SRB Signalling Radio Bearer (SRB, data Plane of PDCP) statistics provide the Control Plane PDCP SDU bit rates per cell over the downlink and uplink respectively.

Cell PDCP SDU Bit Rate The eNB groups the Control Plane PDCP SDU bit rates per cell by the downlink/uplink in accordance with the 3GPP standard (TS32.425 Performance Measurements) and calculates the average value at every measurement interval. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduBitrat eDLAvg

Kbps

Average cell bit-rate of the control plane PDCP SDUs over the downlink.

Y

OW

period

float

0~3.4*10^38

(PdcpSduBitrateDLTot *8*K_UNIT)/PdcpSduB itrateDLCnt/1000

(sum(PdcpSduBitrateDL Tot)*8*K_UNIT)/sum(Pd cpSduBitrateDLCnt)/100 0

PdcpSduBitrat eDLTot

Kbytes

The sum of collected Pdcp SduBitrateDLAvg

-

CC

2s

float

0~3.4*10^38

-

-

PdcpSduBitrat

s

Collected PdcpSduBitrateDL

-

OW

period

int

0~21474836

-

-

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Chapter 2 Counter Description Name

Unit

eDLCnt

Description

Visible

Counter Type

Trigger Type

Data Type

Avg count

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

47

PdcpSduBitrat eULAvg

Kbps

Average cell bit-rate of the control plane PDCP SDUs over the uplink.

Y

OW

period

float

0~3.4*10^38

(PdcpSduBitrateULTot *8*K_UNIT)/PdcpSduB itrateULCnt/1000

(sum(PdcpSduBitrateUL Tot)*8*K_UNIT)/sum(Pd cpSduBitrateULCnt)/100 0

PdcpSduBitrat eULTot

Kbytes

The sum of collected Pdcp SduBitrateULAvg

-

CC

2s

float

0~3.4*10^38

-

-

PdcpSduBitrat eULCnt

s

Collected PdcpSduBitrate ULAvg count

-

OW

period

int

0~60*Period

-

-

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Chapter 2 Counter Description

DRB Data Radio Bearer (DRB, User Plane of RLC/MAC) statistics provide QCI information of the DRB, such as the number of active UEs, packet delay, packet drop rate, packet loss rate and IP latency.

Active UE Number This section provides the statistics data for the average number of UEs where the buffer data of the DRB is waiting. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

UEActiveDL Avg

count

The number of UEs satisfying one or more of the following conditions in a continuous 20 ms interval (sampling occasion) is summed every 80 ms for each QCI.  If there is a DRB which received a buffer occupancy request from the RLC  If there is a DRB which received an HARQ

Y

SI

5.12 s

float

0~3.4*10^38

UEActiveDLTot/ UEActiveDLCnt

sum(UEActiveDLT ot)/sum(UEActiveD LCnt)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

retransmission request When a collection interval ends, the average is calculated by dividing the summed number of UEs by the number of sampling occasions that occurred. UEActiveDL Tot

count

Sum of UEActiveDLAvg collected

Y

SI

5.12 s

float

0~3.4*10^38

-

-

UEActiveDL Cnt

count

Collected UEActiveDLAvg count

-

SI

5.12 s

int

0~21474836 47

-

-

UEActiveUL Avg

count

The number of UEs satisfying one or more of the following conditions in a continuous 20 ms interval is summed every 80 ms for each QCI.  If there is a DRB where the uplink data requested to be allocated using the Buffer Status Report message is waiting  If there is a DRB which received an HARQ retransmission request When a collection interval ends, the average is calculated by dividing the summed number of UEs by the number of sampling occasions that occurred.

Y

SI

5.12 s

float

0~3.4*10^38

UEActiveULTot/ UEActiveULCnt

sum(UEActiveULT ot)/sum(UEActiveU LCnt)

UEActiveUL Tot

count

Sum of UEActiveULAvg collected

Y

SI

5.12 s

float

0~3.4*10^38

-

-

UEActiveUL Cnt

count

Collected UEActiveULAvg count

-

SI

5.12 s

int

0~21474836 47

-

-

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Chapter 2 Counter Description

Packet Delay This section provides statistics data for the DL PDCP SDU delay defined in the standard 3GPP TS 36.314 for each QCI. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduDelay Avg

ms

Average DL PDCP SDU delay DL PDCP SDU delay on the downlink that occurred for 1 minute.

Y

SI

10 s

float

0~60*Period*1000

PdcpSduDelayTot/ PdcpSduDelayCnt

sum(PdcpSduDelayT ot)/sum(PdcpSduDel ayCnt)

PdcpSduDelay Tot

ms

Sum of PdcpSduDelayAvg collected

Y

SI

10 s

float

0~60*Period*1000

-

-

PdcpSduDelay Cnt

count

Collected PdcpSduDelayAvg count

-

SI

10 s

int

0~2147483647

-

-

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Chapter 2 Counter Description

Packet Drop Rate Statistics provides the per-eNB drop rate for downlink packet drops of the user plane traffic per QCI in accordance with the 3GPP standard (TS 32.425 Performance Measurements. Packet drops can occur due to traffic congestion and are calculated (in ppm) by multiplying it by 1E6 according to the standard (3GPP TS 36.314 Layer 2-Measurements). Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduDropRateDL

ppm

DL PDCP SDU packet drop rate on the downlink that occurred for one minute

Y

SI

1 min

float

0~3.4*10^ 38

PdcpSduDro pRateDLTot/ PdcpSduDro pRateDLCnt

sum(PdcpSduDrop RateDLTot)/sum(Pd cpSduDropRateDLC nt)

PdcpSduDropRateDL Tot

ppm

The sum of collected PdcpSduDropRateDL

-

SI

1 min

float

0~3.4*10^ 38

-

-

PdcpSduDropRateDL Cnt

count

Collected PdcpSduDropRateDL count

-

SI

1 min

int

0~214748 3647

-

-

PdcpPduDropRateDL

ppm

Average DL PDCP SDU drop rate DL PDCP SDU drop rate on the downlink that occurred for 1 minute.

Y

SI

10 s

float

0~3.4*10^ 38

PdcpPduDro pRateDLTot/ PdcpPduDro pRateDLCnt

sum(PdcpPduDrop RateDLTot)/sum(Pd cpPduDropRateDLC nt)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpPduDropRateDL Tot

ppm

The sum of collected PdcpPduDropRateDL

-

SI

10 s

float

0~3.4*10^ 38

-

-

PdcpPduDropRateDL Cnt

count

Collected PdcpPduDropRateDL count

-

SI

10 s

int

0~214748 3647

-

-

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Chapter 2 Counter Description

Packet Loss Rate Statistics provides per-eNB loss rate for PDCP SDUs of the user plane traffic that have not been received successfully over the uplink per QCI in accordance with the 3GPP standard (TS32.425 Performance Measurements). The rate is calculated (in ppm) by multiplying 1E6 according to the standard (TS 36.314 Layer 2-Measurements). Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduLossRa teUL

ppm

UL PDCP SDU packet loss rate on the uplink that occurred for 1 minute

Y

SI

1 min

float

0~3.4*10^38

PdcpSduLos sRateULTot/ PdcpSduLos sRateULCnt

sum(PdcpSduLossRateULTot)/su m(PdcpSduLossRateULCnt)

PdcpSduLossRa teULTot

ppm

The sum of collected PdcpSduLossRateUL

-

SI

1 min

float

0~3.4*10^38

-

-

PdcpSduLossRa teULCnt

count

Collected PdcpSduLossRateUL count

-

SI

1 min

int

0~214748364 7

-

-

PdcpSduAirIntfA vg

ppm

Average DL PDCP SDU loss rate DL PDCP SDU packet loss rate on the downlink that occurred for 10 seconds.

Y

SI

10 s

float

0~3.4*10^38

PdcpSduAirI ntfTot/PdcpS duAirIntfCnt

sum(PdcpSduAirIntfTot)/sum(Pdc pSduAirIntfCnt)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduAirIntfT ot

ppm

The sum of collected PdcpSduAirIntfAvg

-

SI

10 s

float

0~3.4*10^38

-

-

PdcpSduAirIntfC nt

count

Collected PdcpSduAirIntfAvg count

-

SI

10 s

int

0~214748364 7

-

-

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Chapter 2 Counter Description

IP Latency This section provides the statistics data for the DL IP latency defined in the standard 3GPP TS 32.450 for each QCI. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

IpLateDL

ms

IP latency in the downlink, SAE bearer level. IP latency for 10 seconds in the downlink.

Y

SI

10 s

float

0~60*Period*1000

IpLateDLTot/ IpLateDLCnt

sum(IpLateDLTot)/ sum(IpLateDLCnt)

IpLateDLTot

ms

The sum of collected IpLateDL

-

SI

10 s

float

0~60*Period*1000

-

-

IpLateDLCnt

count

Collected IpLateDL count

-

SI

10 s

int

0~2147483647

-

-

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Chapter 2 Counter Description

RRU The Radio Resource Utilization (RRU) statistics include DL/UL PRB Usage, DL/UL Total PRB Usage, and Cell Unavailable Time statistics. These statistics items are described in the following tables.

PRB Usage This section provides rate (per QCI) of PRB allocated to the DTCH among the total PRB on the DL/UL. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PrbDLAvg

%

The PRB usage used as the downlink DTCH traffic

Y

SI

5.12 s

float

0~100

PrbDLTot/PrbD LCnt

sum(PrbDLTot)/sum(Prb DLCnt)

PrbDLTot

%

The sum of collected PrbDLAvg

-

SI

5.12 s

float

0~100

-

-

PrbDLCnt

count

Collected PrbDLAvg count

-

SI

5.12 s

int

0~2147483647

-

-

PrbULAvg

%

The PRB usage used as the

Y

SI

5.12 s

float

0~100

PrbULTot/PrbU

sum(PrbULTot)/sum(Prb

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Chapter 2 Counter Description Name

Unit

PrbULTot

%

PrbULCnt PrbDLCurr PrbULCurr

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula LCnt

Hourly, Daily, Monthly Formula ULCnt)

The sum of collected PrbULAvg

-

SI

5.12 s

float

0~100

-

-

count

Collected PrbULAvg count

-

SI

5.12 s

int

0~2147483647

-

-

%

DL PRB Current Usage for traffic

-

SI

5.12 s

float

0~100

-

-

%

UL PRB Current Usage for traffic

-

SI

5.12 s

float

0~100

-

-

uplink DTCH traffic

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Chapter 2 Counter Description

Total PRB Usage This section provides the statistics data for usage rate (percentage) of the PRB on the downlink PDSCH and the uplink PUSCH among the total PRB. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TotPrbDLAvg

%

The resource used for the PDSCH/PDCCH transmission among the total downlink resource

Y

GAUGE

5.12 s

float

0~100

TotPrbDLTot /TotPrbDLCn t

sum(TotPrbDLTot)/sum(T otPrbDLCnt)

TotPrbDLMin

%

Minimum value of resources used for the PDSCH/PDCCH transmission among the total downlink resources.

-

GAUGE

5.12 s

float

0~100

-

min(TotPrbDLMin)

TotPrbDLMax

%

Maximum value of resources used for the PDSCH/PDCCH transmission among the total downlink resources

-

GAUGE

5.12 s

float

0~100

-

max(TotPrbDLMax)

TotPrbDLTot

%

The sum of collected TotPrbDLAvg

-

GAUGE

5.12 s

float

0~100

-

-

TotPrbDLCnt

count

Collected TotPrbDLAvg count

-

GAUGE

5.12 s

int

0~21474 83647

-

-

TotGbrPrbDLA vg

%

Ratio of the resource used to transmit the GBR traffic against the total downlink resources.

Y

GAUGE

5.12 s

float

0~100

TotGbrPrbDL Tot/TotGbrPr bDLCnt

sum(TotGbrPrbDLTot)/ sum(TotGbrPrbDLCnt)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TotGbrPrbDL Min

%

Minimum value of resources used for the GBR traffic transmission among the total downlink resources

-

GAUGE

5.12 s

float

0~100

-

min(TotGbrPrbDLMin)

TotGbrPrbDL Max

%

Maximum value of resources used for the GBR traffic transmission among the total downlink resources

-

GAUGE

5.12 s

float

0~100

-

max(TotGbrPrbDLMax)

TotGbrPrbDLT ot

%

The sum of collected TotGbrPrb DLAvg

-

GAUGE

5.12 s

float

0~100

-

-

TotGbrPrbDL Cnt

count

Collected TotGbrPrbDLAvg count

-

GAUGE

5.12 s

int

0~21474 83647

-

-

TotNGbrPrbD LAvg

%

Ratio of the resource used to transmit the non-GBR traffic against the total downlink resources.

Y

GAUGE

5.12 s

float

0~100

TotNGbrPrb DLTot/TotNG brPrbDLCnt

sum(TotNGbrPrbDLTot)/s um(TotNGbrPrbDLCnt)

TotNGbrPrbD LMin

%

Minimum value of resources used for the non-GBR traffic transmission among the total downlink resources

-

GAUGE

5.12 s

float

0~100

-

min(TotNGbrPrbDLMin)

TotNGbrPrbD LMax

%

Maximum value of resources used for the non-GBR traffic transmission among the total downlink resources

-

GAUGE

5.12 s

float

0~100

-

max(TotNGbrPrbDLMax)

TotNGbrPrbD LTot

%

The sum of collected TotNGbrPrb DLAvg

-

GAUGE

5.12 s

float

0~100

-

-

TotNGbrPrbD LCnt

count

Collected TotNGbrPrbDLAvg count

-

GAUGE

5.12 s

int

0~21474 83647

-

-

TotPrbULAvg

%

The resource used for the PUSCH transmission among the total uplink resource

Y

GAUGE

5.12 s

float

0~100

TotPrbULTot /TotPrbULCn t

sum(TotPrbULTot)/sum(T otPrbULCnt)

TotPrbULMin

%

Minimum value of resources used for the PUSCH transmission among the total uplink resources.

-

GAUGE

5.12 s

float

0~100

-

min(TotPrbULMin)

TotPrbULMax

%

Maximum value of resources used for

-

GAUGE

5.12 s

float

0~100

-

max(TotPrbULMax)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

the PUSCH transmission among the total uplink resources TotPrbULTot

%

The sum of collected TotPrbULAvg

-

GAUGE

5.12 s

float

0~100

-

-

TotPrbULCnt

count

Collected TotPrbULAvg count

-

GAUGE

5.12 s

int

0~21474 83647

-

-

TotGbrPrbULA vg

%

Ratio of the resource used to transmit the GBR traffic against the total uplink resources.

Y

GAUGE

5.12 s

float

0~100

TotGbrPrbUL Tot/TotGbrPr bULCnt

sum(TotGbrPrbULTot)/su m(TotGbrPrbULCnt)

TotGbrPrbUL Min

%

Minimum value of resources used for the GBR traffic transmission among the total uplink resources

-

GAUGE

5.12 s

float

0~100

-

min(TotGbrPrbULMin)

TotGbrPrbUL Max

%

Maximum value of resources used for the GBR traffic transmission among the total uplink resources

-

GAUGE

5.12 s

float

0~100

-

max(TotGbrPrbULMax)

TotGbrPrbULT ot

%

The sum of collected TotGbrPrb ULAvg

-

GAUGE

5.12 s

float

0~100

-

-

TotGbrPrbUL Cnt

count

Collected TotGbrPrbULAvg count

-

GAUGE

5.12 s

int

0~21474 83647

-

-

TotNGbrPrbU LAvg

%

Ratio of the resource used to transmit the non-GBR traffic against the total uplink resources.

Y

GAUGE

5.12 s

float

0~100

TotNGbrPrb ULTot/TotNG brPrbULCnt

sum(TotNGbrPrbULTot)/s um(TotNGbrPrbULCnt)

TotNGbrPrbU LMin

%

Minimum value of resources used for the non-GBR traffic transmission among the total uplink resources.

-

GAUGE

5.12 s

float

0~100

-

min(TotNGbrPrbULMin)

TotNGbrPrbU LMax

%

Maximum value of resources used for the non-GBR traffic transmission among the total uplink resources.

-

GAUGE

5.12 s

float

0~100

-

max(TotNGbrPrbULMax)

TotNGbrPrbU LTot

%

The sum of collected TotNGbrPrb ULAvg

-

GAUGE

5.12 s

float

0~100

-

-

TotNGbrPrbU

count

Collected TotNGbrPrbULAvg count

-

GAUGE

5.12 s

int

0~21474

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

TotPrbDLCurr

%

DL Total Current PRB Usage

-

GAUGE

5.12 s

float

TotPrbULCurr

%

UL Total Current PRB Usage

-

GAUGE

5.12 s

float

LCnt

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

0~100

-

-

0~100

-

-

83647

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Chapter 2 Counter Description

Cell Unavailable Time This section provides statistics data for the average locked time and disabled time per unit time. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CellUnavailableTimeLock

s

Measures the lock time per measurement period.

Y

CC

1 min

int

0~21474836 47

-

-

CellUnavailableTimeDown

s

Measures the disabled time per measurement period.

Y

CC

1 min

int

0~21474836 47

-

-

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Chapter 2 Counter Description

PRB Full Utilization This statistic provides the percentage of time during which all available PRBs for traffic on the uplink/downlink have been assigned. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

FullyUsedDLTti

count

The number of TTI during which all avaialble PRBs for the downlink have been assigned

-

CC

5.12 s

int

0~214748364 7

-

-

AvailableDLTti

count

The number of avaialble downlink TTI

-

CC

5.12 s

int

0~214748364 7

-

-

FullyUsedULTti

count

The number of TTI during which all avaialble PRBs for the uplink have been assigned

-

CC

5.12 s

int

0~214748364 7

-

-

AvailableULTti

count

The number of avaialble uplink TTI

-

CC

5.12 s

int

0~214748364 7

-

-

DLPrbFullUtilRatio

%

The percentage of time during which all avaialble PRBs for the downlink have been

Y

OW

Period

float

0~100

(FullyUsedDLTti/Avail ableDLTt))*100

(sum(FullyUsedULTti)/ sum(AvailableULTti))* 100

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Chapter 2 Counter Description Name

Unit

ULPrbFullUtilRatio

%

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Y

OW

Period

float

0~100

(ullyUsedULTti/sum( AvailableULTti)*100

(sum(FullyUsedULTti)/ sum(AvailableULTti))* 100

assigned The percentage of time during which all avaialble PRBs for the uplink have been assigned

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Chapter 2 Counter Description

S1SIG S1 Application Protocol Signaling (S1SIG) provides information about UE-associated logical S1-connection establishment statistics. These statistics items are described in the following table.

UE-associated logical S1 Connection Establishment This section provides the statistics data for S1 Logical Connection Setup for each cell. When the Initial UE message is transmitted, it is counted as an Attempt; when the first message from MME which succeeds Initial UE message is received, it is counted as a Success. A Failure is counted when a failure or timeout occurs during the procedure and the applicable cause is recorded. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EstabCause

RRC Connection Establishment Cause  0: emergency: Emergency call connection  1: highPriorityAccess: Access by the UE with a specific access class  2: mt_Access: Access by the UE due to paging received  3: mo_Signaling: Access by the UE due to attach  4: mo_Data: Access by the UE due to service request  5: delay_tolerant_access: Access by the delay tolerant access

EarfcnDl

Cell Frequency(EARFCN DL)

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Chapter 2 Counter Description

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

S1ConnEstabAtt

count

UE logical S1 connection setup attempt count

Y

CC

event

int

0~2147483647

-

-

S1ConnEstabSucc

count

UE Logical S1 Connection Setup success count.

Y

CC

event

int

0~2147483647

-

-

S1ConnEstabFail_ CpCcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by the ECCB block during S1 connection.

Y

CC

event

int

0~2147483647

-

-

S1ConnEstabFail_S 1apCuFail

count

A call is released due to the S1AP specification cause during S1 connection.

Y

CC

event

int

0~2147483647

-

-

S1ConnEstabFail_S 1apLinkFail

count

A call is released due to S1 SCTP link failure during S1 connection.

Y

CC

event

int

0~2147483647

-

-

S1ConnEstabFail_S 1apSigFail

count

A call is released due to receiving S1AP signaling during S1 connection.

Y

CC

event

int

0~2147483647

-

-

S1ConnEstabFail_S 1apSigTo

count

A call is released due to S1AP signaling timeout (not received) during S1 connection.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time (Success) Figure 66. Collection Time for S1SIG (1) UE

eNB

MME

S/GW

RRC_IDLE

1

Attempt

2

Success

Initial UE Message

Initial Context Setup Request

RRC_CONNECTED

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Chapter 2 Counter Description Figure 67. Collection Time for S1SIG (2) UE

eNB

MME

S/GW

RRC_CONNECTED Initial UE Message 1 Attempt UE Context Release Command (Cause: S1AP_normal_release, S1AP_detach. etc) 2 Success

RRC_CONNECTED

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Chapter 2 Counter Description

Collection Time (Failure) Figure 68. Collection Time for S1ConnEstabFail_S1apSigFail UE

eNB

MME

S/GW

RRC_CONNECTED Attempt

1

Fail

2

Initial UE Message

UE Context Release Command (Cause: S1AP_auth_failure, etc) S1ConnEstabFail_S1apSigFail

RRC_CONNECTED

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Chapter 2 Counter Description

Paging PAG is paging statistics on the number of paging attempts by the RRC and number of paging messages that are discarded when the RLC cannot process paging messages upon receipt due to insufficient capacity. The RLC can save up to 1,024 paging messages in each cell.

Paging Paging Performance collects statistics data for paging. The eNB collects the statistics data for the paging attempt for each cell of the base station made by the MME’s paging request. Also, it collects the number of the discarded paging messages that were not processed by the eNB for each cell. The paging for both system information update and ETWA indication is not included. The eNB, which is an access network, does not collect the statistics data for the paging responses that are made through NAS signaling. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DiscardedNbr

count

Paging record count discarded in the eNB

Y

CC

10 s

int

0~2147483647

-

-

AttPaging

count

Paging transmission attempt count

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Collection Time Figure 69. Collection Time for PAGING UE

eNB

MME

S/GW

RRC_IDLE Paging Request Paging Paging 1

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Attempt

229

Chapter 2 Counter Description

Overload Protection Denied Call by Overload Protection This section provides the statistics for the number of calls that are denied due to the overload prevention function. Index Name

Description

-

-

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Denied_HighPriorityAc cess

count

The number of Priority Access calls that are denied due to the overload prevention function

Y

CC

event

int

0~2147483647

-

-

Denied_moSignaling

count

The number of mo Signaling calls that are denied due to the overload prevention function

Y

CC

event

int

0~2147483647

-

-

Denied_moData

count

The number of mo Data calls that are denied due to the overload prevention function

Y

CC

event

int

0~2147483647

-

-

Denied_DelayTolerant Access

count

The statistics that counts the number of DelayTolerantAccess calls that are denied due to the overload prevention function

Y

CC

event

int

0~2147483647

-

-

Denied_Paging

count

The number of paging message

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

that are dumped by the overload prevention function

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Chapter 2 Counter Description

Power Power This section provides the statistics data for average interference over thermal noise for each PRB, the average thermal noise for each cell, the average RSSI for each cell, and the average RSSI for each antenna. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

InterferencePo werAvg

dBm

Average interference over thermal noise for each PRB

Y

SI

5.12 s

float

-1000~1000

InterferencePowe rTot/InterferenceP owerCnt

sum(InterferencePowerTot )/sum(InterferencePowerC nt)

InterferencePo werTot

dBm

The sum of collected InterferencePowerAvg

-

SI

5.12 s

float

-1000~1000

-

-

InterferencePo werCnt

count

Collected InterferencePowerAvgcount

-

SI

5.12 s

int

0~21474836 47

-

-

ThermalNoiseP owerAvg

dBm

Average Thermal Noise

Y

SI

5.12 s

float

-1000~1000

ThermalNoisePo werTot/ThermalN oisePowerCnt

sum(ThermalNoisePowerT ot)/sum(ThermalNoisePow erCnt)

ThermalNoiseP

dBm

The sum of collected

-

SI

5.12 s

float

-1000~1000

-

-

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Chapter 2 Counter Description Name

Unit

owerTot

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ThermalNoisePowerAvg

ThermalNoiseP owerCnt

count

Collected ThermalNoisePowerAvg

-

SI

5.12 s

int

0~21474836 47

-

-

RssiOverPathA vg

dBm

Average RSSI for each antenna

Y

SI

5.12 s

float

-1000~1000

RssiOverPathTot/ RssiOverPathCnt

sum(RssiOverPathTot)/su m(RssiOverPathCnt)

RssiOverPathT ot

dBm

The sum of collected RssiOverPathAvg

-

SI

5.12 s

float

-1000~1000

-

-

RssiOverPathC nt

count

Collected RssiOverPathAvg count

-

SI

5.12 s

int

0~21474836 47

-

-

RssiPath0Avg

dBm

Average RSSI of Antenna #0

Y

SI

5.12 s

float

-1000~1000

RssiPath0Tot/Rss iPath0Cnt

sum(RssiPath0Tot)/sum(R ssiPath0Cnt)

RssiPath0Tot

dBm

The sum of collected RssiPath0Avg

-

SI

5.12 s

float

-1000~1000

-

-

RssiPath0Cnt

count

Collected RssiPath0Avg count

-

SI

5.12 s

int

0~21474836 47

-

-

RssiPath1Avg

dBm

Average RSSI of Antenna #1

Y

SI

5.12 s

float

-1000~1000

RssiPath1Tot/Rss iPath1Cnt

sum(RssiPath1Tot)/sum(R ssiPath1Cnt)

RssiPath1Tot

dBm

The sum of collected RssiPath1Avg

-

SI

5.12 s

float

-1000~1000

-

-

RssiPath1Cnt

count

Collected RssiPath1Avg count

-

SI

5.12 s

int

0~21474836 47

-

-

RssiPath0Curr

dBm

The most recently collected RssiPath0Avg

-

SI

5.12 s

float

-1000~1000

-

max(RssiPath0Curr)

RssiPath1Curr

dBm

The most recently collected RssiPath1Avg

-

SI

5.12 s

float

-1000~1000

-

max(RssiPath1Curr)

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Chapter 2 Counter Description

RNTP of Own Cell This section provides statistics data for Relative Narrowband TX Power (RNTP) value for each PRB. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/ Max

Granularity Formula

Hourly, Daily, Monthly Formula

RntpOwnCellPrb0

indicator

RNTP of downlink PRB #0.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb1

indicator

RNTP of downlink PRB #1.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb2

indicator

RNTP of downlink PRB #2.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb3

indicator

RNTP of downlink PRB #3.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb4

indicator

RNTP of downlink PRB #4.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb5

indicator

RNTP of downlink PRB #5.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb6

indicator

RNTP of downlink PRB #6.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb7

indicator

RNTP of downlink PRB #7.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb8

indicator

RNTP of downlink PRB #8.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb9

indicator

RNTP of downlink PRB #9.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb10

indicator

RNTP of downlink PRB #10.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb11

indicator

RNTP of downlink PRB #11.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb12

indicator

RNTP of downlink PRB #12.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb13

indicator

RNTP of downlink PRB #13.

Y

CC

5.12 s

int

0~1

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/ Max

Granularity Formula

Hourly, Daily, Monthly Formula

RntpOwnCellPrb14

indicator

RNTP of downlink PRB #14.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb15

indicator

RNTP of downlink PRB #15.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb16

indicator

RNTP of downlink PRB #16.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb17

indicator

RNTP of downlink PRB #17.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb18

indicator

RNTP of downlink PRB #18.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb19

indicator

RNTP of downlink PRB #19.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb20

indicator

RNTP of downlink PRB #20.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb21

indicator

RNTP of downlink PRB #21.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb22

indicator

RNTP of downlink PRB #22.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb23

indicator

RNTP of downlink PRB #23.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb24

indicator

RNTP of downlink PRB #24.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb25

indicator

RNTP of downlink PRB #25.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb26

indicator

RNTP of downlink PRB #26.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb27

indicator

RNTP of downlink PRB #27.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb28

indicator

RNTP of downlink PRB #28.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb29

indicator

RNTP of downlink PRB #29.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb30

indicator

RNTP of downlink PRB #30.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb31

indicator

RNTP of downlink PRB #31.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb32

indicator

RNTP of downlink PRB #32.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb33

indicator

RNTP of downlink PRB #33.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb34

indicator

RNTP of downlink PRB #34.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb35

indicator

RNTP of downlink PRB #35.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb36

indicator

RNTP of downlink PRB #36.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb37

indicator

RNTP of downlink PRB #37.

Y

CC

5.12 s

int

0~1

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/ Max

Granularity Formula

Hourly, Daily, Monthly Formula

RntpOwnCellPrb38

indicator

RNTP of downlink PRB #38.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb39

indicator

RNTP of downlink PRB #39.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb40

indicator

RNTP of downlink PRB #40.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb41

indicator

RNTP of downlink PRB #41.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb42

indicator

RNTP of downlink PRB #42.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb43

indicator

RNTP of downlink PRB #43.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb44

indicator

RNTP of downlink PRB #44.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb45

indicator

RNTP of downlink PRB #45.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb46

indicator

RNTP of downlink PRB #46.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb47

indicator

RNTP of downlink PRB #47.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb48

indicator

RNTP of downlink PRB #48.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb49

indicator

RNTP of downlink PRB #49.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb50

indicator

RNTP of downlink PRB #50.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb51

indicator

RNTP of downlink PRB #51.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb52

indicator

RNTP of downlink PRB #52.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb53

indicator

RNTP of downlink PRB #53.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb54

indicator

RNTP of downlink PRB #54.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb55

indicator

RNTP of downlink PRB #55.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb56

indicator

RNTP of downlink PRB #56.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb57

indicator

RNTP of downlink PRB #57.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb58

indicator

RNTP of downlink PRB #58.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb59

indicator

RNTP of downlink PRB #59.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb60

indicator

RNTP of downlink PRB #60.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb61

indicator

RNTP of downlink PRB #61.

Y

CC

5.12 s

int

0~1

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/ Max

Granularity Formula

Hourly, Daily, Monthly Formula

RntpOwnCellPrb62

indicator

RNTP of downlink PRB #62.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb63

indicator

RNTP of downlink PRB #63.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb64

indicator

RNTP of downlink PRB #64.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb65

indicator

RNTP of downlink PRB #65.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb66

indicator

RNTP of downlink PRB #66.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb67

indicator

RNTP of downlink PRB #67.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb68

indicator

RNTP of downlink PRB #68.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb69

indicator

RNTP of downlink PRB #69.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb70

indicator

RNTP of downlink PRB #70.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb71

indicator

RNTP of downlink PRB #71.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb72

indicator

RNTP of downlink PRB #72.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb73

indicator

RNTP of downlink PRB #73.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb74

indicator

RNTP of downlink PRB #74.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb75

indicator

RNTP of downlink PRB #75.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb76

indicator

RNTP of downlink PRB #76.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb77

indicator

RNTP of downlink PRB #77.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb78

indicator

RNTP of downlink PRB #78.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb79

indicator

RNTP of downlink PRB #79.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb80

indicator

RNTP of downlink PRB #80.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb81

indicator

RNTP of downlink PRB #81.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb82

indicator

RNTP of downlink PRB #82.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb83

indicator

RNTP of downlink PRB #83.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb84

indicator

RNTP of downlink PRB #84.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb85

indicator

RNTP of downlink PRB #85.

Y

CC

5.12 s

int

0~1

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/ Max

Granularity Formula

Hourly, Daily, Monthly Formula

RntpOwnCellPrb86

indicator

RNTP of downlink PRB #86.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb87

indicator

RNTP of downlink PRB #87.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb88

indicator

RNTP of downlink PRB #88.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb89

indicator

RNTP of downlink PRB #89.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb90

indicator

RNTP of downlink PRB #90.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb91

indicator

RNTP of downlink PRB #91.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb92

indicator

RNTP of downlink PRB #92.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb93

indicator

RNTP of downlink PRB #93.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb94

indicator

RNTP of downlink PRB #94.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb95

indicator

RNTP of downlink PRB #95.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb96

indicator

RNTP of downlink PRB #96.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb97

indicator

RNTP of downlink PRB #97.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb98

indicator

RNTP of downlink PRB #98.

Y

CC

5.12 s

int

0~1

-

-

RntpOwnCellPrb99

indicator

RNTP of downlink PRB #99.

Y

CC

5.12 s

int

0~1

-

-

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238

Chapter 2 Counter Description

RSSI of Each Path Measured by MAC This section provides the statistics data for the RSSI per path collected by the MAC. Index Name

Description

cNum

Cell Id

RSSIPath

RSSI Path ID

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RssiPathAvg

dBm

The average value of RSSI for each path

Y

GAUGE

5.12 s

float

-1000~1000

RssiPathTot/ RssiPathCnt

sum(RssiPathTot)/sum(R ssiPathCnt)

RssiPathMax

dBm

The maximum value of RSSI for each path

Y

GAUGE

5.12 s

float

-1000~1000

-

max(RssiPathMax)

RssiPathCurr

dBm

The most recently collected RSSI values for each path

Y

GAUGE

5.12 s

float

-1000~1000

-

max(RssiPathCurr)

RssiPathTot

dBm

Sum of RSSI values for each path

Y

GAUGE

5.12 s

float

-3.4*10^38~3.4*10^38

-

-

RssiPathCnt

count

RSSI values collection count for each path

Y

GAUGE

5.12 s

int

0~2147483647

-

-

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239

Chapter 2 Counter Description

RA This section provides the statistics data for Random Access Preamble are provided. These statistics items are described in the following tables.

Random Access Preambles This counter collects the number of the high-speed monitoring result and the RACH preamble. For High Speed Monitoring, it estimates the moving speed of the terminals within the cell and counts the terminals where the speed is determined as high. Also, it collects the number of detected Dedicated Preambles, Contention-based Group A Preambles, and Contention-based Group B Preambles, then collects the average per second of the detected preambles. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

HighSpeedMonitor ing

count

The number of UEs which are monitored for moving speed

Y

CC

5.12 s

int

0~2147483647

-

-

NoOfHighSpeed

count

The number of high speed UEs which are monitored

Y

CC

5.12 s

int

0~2147483647

-

-

DedicatedPreambl es

count

The number of detected dedicated preambles.

Y

CC

5.12 s

int

0~2147483647

-

-

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240

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DedicatedPreambl esAssignFail

count

The number of failures to get dedicated preamble allocation after requesting the dedicated preamble from the RRC to the MAC

Y

CC

event

int

0~2147483647

-

-

RandomlySelected PreamblesLow

count

The number of the preambles belonging to Group A among the detected contention based preambles

Y

CC

5.12 s

int

0~2147483647

-

-

RandomlySelected PreamblesHigh

count

The number of the preambles belonging to Group B among the detected contention based preambles

Y

CC

5.12 s

int

0~2147483647

-

-

RACHUsageAvg

count

Average number of detected preambles

Y

SI

5.12 s

float

0~3.4*10^38

RACHUsage Tot/RACHUs ageCnt

sum(RACHUsageT ot)/sum(RACHUsa geCnt)

RACHUsageTot

count

The sum of collected RACHUsageAvg

SI

5.12 s

float

0~3.4*10^38

-

-

RACHUsageCnt

count

Collected RACHUsageAvg count

SI

5.12 s

int

0~2147483647

-

-

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241

Chapter 2 Counter Description

RACH Usage This section provide statitistics for thee RACH Usage for each cell. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PreambleSent1

count

Count (COUNT/CC) when the number of RACH preamble sent is 1

Y

CC

event

int

0~2147483647

-

-

PreambleSent2

count

Count (COUNT/CC) when the number of RACH preamble sent is 2

Y

CC

event

int

0~2147483647

-

-

PreambleSent3

count

Count (COUNT/CC) when the number of RACH preamble sent is 3

Y

CC

event

int

0~2147483647

-

-

PreambleSent4

count

Count (COUNT/CC) when the number of RACH preamble sent is 4

Y

CC

event

int

0~2147483647

-

-

PreambleSent5

count

Count (COUNT/CC) when the number of RACH preamble sent is 5

Y

CC

event

int

0~2147483647

-

-

PreambleSent6

count

Count (COUNT/CC) when the number of RACH preamble sent is 6

Y

CC

event

int

0~2147483647

-

-

PreambleSent7

count

Count (COUNT/CC) when the number of RACH preamble sent is 7

Y

CC

event

int

0~2147483647

-

-

PreambleSent8

count

Count (COUNT/CC) when the number of RACH preamble sent is 8

Y

CC

event

int

0~2147483647

-

-

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242

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PreambleSent9

count

Count (COUNT/CC) when the number of RACH preamble sent is 9

Y

CC

event

int

0~2147483647

-

-

RACHContention

%

Ratio of RACH contention occurrence

Y

SI

event

float

0~100

RACHConte ntionTot/RA CHContentio nCnt*100

sum(RACHContenti onTot)/sum(RACH ContentionCnt)*100

RACHContentionT ot

count

Cumulative RachContention

Y

SI

event

int

0~2147483647

-

-

RACHContentionC nt

count

RACHContention collection count

Y

SI

event

int

0~2147483647

-

-

RACHReportsRcv Num

count

Count when rachReport is received

Y

CC

event

int

0~2147483647

-

-

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243

Chapter 2 Counter Description

HARQ The HARQ provides the DL/UL transmission statistics. These statistics items are described in the following tables.

Transmission BLER This section provides statistics data for each HARQ transmission for PDSCH/PUSCH and the Block Error Rate (BLER) information. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLResidualBler Retrans0

%

PDSCH BLER for the initial HARQ transmission

Y

OW

Period

float

0~100

(DLTransmissionRetr ans1/DLTransmissio nRetrans0)*100

(sum(DLTransmissionR etrans1)/sum(DLTransm issionRetrans0))*100

DLResidualBler Retrans1

%

PDSCH BLER for the first HARQ retransmission

Y

OW

Period

float

0~100

(DLTransmissionRetr ans2/DLTransmissio nRetrans1)*100

(sum(DLTransmissionR etrans2)/sum(DLTransm issionRetrans1))*100

DLResidualBler Retrans2

%

PDSCH BLER for the second HARQ retransmission

Y

OW

Period

float

0~100

(DLTransmissionRetr ans3/DLTransmissio nRetrans2)*100

(sum(DLTransmissionR etrans3)/sum(DLTransm issionRetrans2))*100

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244

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLResidualBler Retrans3

%

PDSCH BLER for the third HARQ retransmission

Y

OW

Period

float

0~100

(DLTransmissionNac kedRetrans3/DLTran smissionRetrans3)*1 00

(sum(DLTransmissionN ackedRetrans3)/sum(DL TransmissionRetrans3)) *100

ULResidualBler Retrans0

%

PUSCH BLER for the initial HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans1/ULTransmissio nRetrans0)*100

(sum(ULTransmissionR etrans1)/sum(ULTransm issionRetrans0))*100

ULResidualBler Retrans1

%

PUSCH BLER for the first HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans2/ULTransmissio nRetrans1)*100

(sum(ULTransmissionR etrans2)/sum(ULTransm issionRetrans1))*100

ULResidualBler Retrans2

%

PUSCH BLER for the second HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans3/ULTransmissio nRetrans2)*100

(sum(ULTransmissionR etrans3)/sum(ULTransm issionRetrans2))*100

ULResidualBler Retrans3

%

PUSCH BLER for the third HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionNac kedRetrans27/ULTra nsmissionRetrans3)* 100

(sum(ULTransmissionN ackedRetrans27)/sum(U LTransmissionRetrans3) )*100

ULResidualBler Retrans4

%

PUSCH BLER for the fourth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans5/ULTransmissio nRetrans4)*100

(sum(ULTransmissionR etrans5)/sum(ULTransm issionRetrans4))*100

ULResidualBler Retrans5

%

PUSCH BLER for the fifth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans6/ULTransmissio nRetrans5)*100

(sum(ULTransmissionR etrans6)/sum(ULTransm issionRetrans5))*100

ULResidualBler Retrans6

%

PUSCH BLER for the sixth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans7/ULTransmissio nRetrans6)*100

(sum(ULTransmissionR etrans7)/sum(ULTransm issionRetrans6))*100

ULResidualBler Retrans7

%

PUSCH BLER for the seventh HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans8/ULTransmissio nRetrans7)*100

(sum(ULTransmissionR etrans8)/sum(ULTransm issionRetrans7))*100

ULResidualBler Retrans8

%

PUSCH BLER for the eighth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans9/ULTransmissio

(sum(ULTransmissionR etrans9)/sum(ULTransm

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245

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

nRetrans8)*100

Hourly, Daily, Monthly Formula issionRetrans8))*100

ULResidualBler Retrans9

%

PUSCH BLER for the ninth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans10/ULTransmissi onRetrans9)*100

(sum(ULTransmissionR etrans10)/sum(ULTrans missionRetrans9))*100

ULResidualBler Retrans10

%

PUSCH BLER for the tenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans11/ULTransmissi onRetrans10)*100

(sum(ULTransmissionR etrans11)/sum(ULTrans missionRetrans10))*100

ULResidualBler Retrans11

%

PUSCH BLER for the eleventh HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans12/ULTransmissi onRetrans11)*100

(sum(ULTransmissionR etrans12)/sum(ULTrans missionRetrans11))*100

ULResidualBler Retrans12

%

PUSCH BLER for the twelfth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans13/ULTransmissi onRetrans12)*100

(sum(ULTransmissionR etrans13)/sum(ULTrans missionRetrans12))*100

ULResidualBler Retrans13

%

PUSCH BLER for the thirteenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans14/ULTransmissi onRetrans13)*100

(sum(ULTransmissionR etrans14)/sum(ULTrans missionRetrans13))*100

ULResidualBler Retrans14

%

PUSCH BLER for the fourteenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans15/ULTransmissi onRetrans14)*100

(sum(ULTransmissionR etrans15)/sum(ULTrans missionRetrans14))*100

ULResidualBler Retrans15

%

PUSCH BLER for the fifteenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans16/ULTransmissi onRetrans15)*100

(sum(ULTransmissionR etrans16)/sum(ULTrans missionRetrans15))*100

ULResidualBler Retrans16

%

PUSCH BLER for the sixteenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans17/ULTransmissi onRetrans16)*100

(sum(ULTransmissionR etrans17)/sum(ULTrans missionRetrans16))*100

ULResidualBler Retrans17

%

PUSCH BLER for the seventeenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans18/ULTransmissi onRetrans17)*100

(sum(ULTransmissionR etrans18)/sum(ULTrans missionRetrans17))*100

ULResidualBler Retrans18

%

PUSCH BLER for the eighteenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans19/ULTransmissi onRetrans18)*100

(sum(ULTransmissionR etrans19)/sum(ULTrans missionRetrans18))*100

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Granularity Formula

246

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULResidualBler Retrans19

%

PUSCH BLER for the nineteenth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans20/ULTransmissi onRetrans19)*100

(sum(ULTransmissionR etrans20)/sum(ULTrans missionRetrans19))*100

ULResidualBler Retrans20

%

PUSCH BLER for the twentieth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans21/ULTransmissi onRetrans20)*100

(sum(ULTransmissionR etrans21)/sum(ULTrans missionRetrans20))*100

ULResidualBler Retrans21

%

PUSCH BLER for the twenty first HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans22/ULTransmissi onRetrans21)*100

(sum(ULTransmissionR etrans22)/sum(ULTrans missionRetrans21))*100

ULResidualBler Retrans22

%

PUSCH BLER for the twenty second HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans23/ULTransmissi onRetrans22)*100

(sum(ULTransmissionR etrans23)/sum(ULTrans missionRetrans22))*100

ULResidualBler Retrans23

%

PUSCH BLER for the twenty third HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans24/ULTransmissi onRetrans23)*100

(sum(ULTransmissionR etrans24)/sum(ULTrans missionRetrans23))*100

ULResidualBler Retrans24

%

PUSCH BLER for the twenty fourth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans25/ULTransmissi onRetrans24)*100

(sum(ULTransmissionR etrans25)/sum(ULTrans missionRetrans24))*100

ULResidualBler Retrans25

%

PUSCH BLER for the twenty fifth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans26/ULTransmissi onRetrans25)*100

(sum(ULTransmissionR etrans26)/sum(ULTrans missionRetrans25))*100

ULResidualBler Retrans26

%

PUSCH BLER for the twenty sixth HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionRetr ans27/ULTransmissi onRetrans26)*100

(sum(ULTransmissionR etrans27)/sum(ULTrans missionRetrans26))*100

ULResidualBler Retrans27

%

PUSCH BLER for the twenty seventh HARQ retransmission

Y

OW

Period

float

0~100

(ULTransmissionNac kedRetrans27/ULTra nsmissionRetrans27) *100

(sum(ULTransmissionN ackedRetrans27)/sum(U LTransmissionRetrans2 7))*100

DLTransmission Retrans0

count

Number of initial PDSCH HARQ transmissions

Y

CC

5.12 s

int

0~100

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLTransmission Retrans1

count

Number of first PDSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmission Retrans2

count

Number of second PDSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmission Retrans3

count

Number of third PDSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmission NackedRetrans 3

count

Number of third PDSCH HARQ retransmission failures

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans0

count

Number of initial PUSCH HARQ transmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans1

count

Number of first PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans2

count

Number of second PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans3

count

Number of third PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans4

count

Number of fourth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans5

count

Number of fifth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans6

count

Number of sixth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans7

count

Number of seventh PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans8

count

Number of eighth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans9

count

Number of ninth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULTransmission Retrans10

count

Number of tenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans11

count

Number of eleventh PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans12

count

Number of twelfth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans13

count

Number of thirteenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans14

count

Number of fourteenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans15

count

Number of fifteenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans16

count

Number of sixteenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans17

count

Number of seventeenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans18

count

Number of eighteenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans19

count

Number of nineteenth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans20

count

Number of twentieth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans21

count

Number of twenty first PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULTransmission Retrans22

count

Number of twenty second PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans23

count

Number of twenty third PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans24

count

Number of twenty fourth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans25

count

Number of twenty fifth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans26

count

Number of twenty sixth PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission Retrans27

count

Number of twenty seventh PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

ULTransmission NackedRetrans 27

count

Number of twenty seventh PUSCH HARQ retransmissions

Y

CC

5.12 s

int

0~2147483647

-

-

DLResidualBler RetransMin

count

Minimum value of DLResidualBlerRetrans

Y

OW

Period

int

0~2147483647

-

min(DLResidualBlerRetr ansMin)

DLResidualBler RetransMax

count

Maximum value of DLResidualBlerRetrans

Y

OW

Period

int

0~2147483647

-

max(DLResidualBlerRetr ansMax)

DLResidualBler RetransAvg

ratio

Average of distribution for DLResidualBlerRetrans

Y

OW

Period

float

0~3.4*10 ^38

(DLTransmissionRetr ans1+DLTransmissio nRetrans2+DLTrans missionRetrans3)/DL TransmissionRetrans 0

(sum(DLTransmissionRe trans1)+sum(DLTransmi ssionRetrans2)+sum(DL TransmissionRetrans3))/ sum(DLTransmissionRet rans0)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULResidualBler RetransMin

count

Minimum value of ULResidualBlerRetrans

Y

OW

Period

int

0~2147483647

-

min(ULResidualBlerRetr ansMin)

ULResidualBler RetransMax

count

Maximum value of ULResidualBlerRetrans

Y

OW

Period

int

0~2147483647

-

max(ULResidualBlerRetr ansMax)

ULResidualBler RetransAvg

ratio

Average of distribution for ULResidualBlerRetrans

Y

OW

Period

float

0~3.4*10^38

(ULTransmissionRetr ans1+ULTransmissio nRetrans2+ULTrans missionRetrans3+UL TransmissionRetrans 4+ULTransmissionR etrans5+ULTransmis sionRetrans6+ULTra nsmissionRetrans7+ ULTransmissionRetr ans8+ULTransmissio nRetrans9+ULTrans missionRetrans10+U LTransmissionRetra ns11+ULTransmissio nRetrans12+ULTran smissionRetrans13+ ULTransmissionRetr ans14+ULTransmissi onRetrans15+ULTra nsmissionRetrans16 +ULTransmissionRet rans17+ULTransmis sionRetrans18+ULTr ansmissionRetrans1 9+ULTransmissionR etrans20+ULTransmi ssionRetrans21+ULT ransmissionRetrans2 2+ULTransmissionR

(sum(ULTransmissionRe trans1)+sum(ULTransmi ssionRetrans2)+sum(UL TransmissionRetrans3)+ sum(ULTransmissionRet rans4)+sum(ULTransmis sionRetrans5)+sum(ULT ransmissionRetrans6)+s um(ULTransmissionRetr ans7)+sum(ULTransmis sionRetrans8)+sum(ULT ransmissionRetrans9)+s um(ULTransmissionRetr ans10)+sum(ULTransmi ssionRetrans11)+sum(U LTransmissionRetrans12 )+sum(ULTransmissionR etrans13)+sum(ULTrans missionRetrans14)+sum (ULTransmissionRetrans 15)+sum(ULTransmissio nRetrans16)+sum(ULTra nsmissionRetrans17)+su m(ULTransmissionRetra ns18)+sum(ULTransmis sionRetrans19)+sum(UL TransmissionRetrans20) +sum(ULTransmissionR etrans21)+sum(ULTrans missionRetrans22)+sum

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula etrans23+ULTransmi ssionRetrans24+ULT ransmissionRetrans2 5+ULTransmissionR etrans26+ULTransmi ssionRetrans27)/ULT ransmissionRetrans0

Hourly, Daily, Monthly Formula (ULTransmissionRetrans 23)+sum(ULTransmissio nRetrans24)+sum(ULTra nsmissionRetrans25)+su m(ULTransmissionRetra ns26)+sum(ULTransmis sionRetrans27))/sum(UL TransmissionRetrans0)

DLResidualBler RetransNak

%

PDSCH BLER for HARQ Nak

Y

OW

Period

float

0~100

DLTransmissionNac kedRetrans3/DLTran smissionRetrans0*10 0

sum(DLTransmissionNa ckedRetrans3)/sum(DLT ransmissionRetrans0)*1 00

ULResidualBler RetransNak

%

HARQ Nak PUSCH BLER

Y

OW

Period

float

0~100

ULTransmissionNac kedRetrans27/ULTra nsmissionRetrans0*1 00

sum(ULTransmissionNa ckedRetrans27)/sum(UL TransmissionRetrans0)* 100

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Chapter 2 Counter Description

AMC MIMO This section provides statistics data for Block Error Rate (BLER) information for each layer for PUSCH/PDSCH. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

DL Layer

Layer (data stream count)  1: 1 stream  2: 2 stream  3: 3 stream  4: 4 stream

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerPerLa yer

%

PDSCH BLER for each layer

Y

OW

Period

float

0~100

PdschBlerPerL ayerTot/Pdsch BlerPerLayerC nt*100

sum(PdschBlerPerLayerTot )/sum(PdschBlerPerLayerC nt)*100

PdschBlerPerLa yerTot

count

PDSCH error count for each layer (all errors)

-

CC

5.12 s

int

0~3.4*10^38

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerPerLa yerCnt

count

Total PDSCH count for each layer

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerPerLa yer

%

PUSCH BLER for each layer

Y

OW

Period

float

0~100

PuschBlerPerL ayerTot/Pusch BlerPerLayerC nt*100

sum(PuschBlerPerLayerTot )/sum(PuschBlerPerLayerC nt)*100

PuschBlerPerLa yerTot

count

PUSCH error count for each layer (all errors)

-

CC

5.12 s

int

0~3.4*10^38

-

-

PuschBlerPerLa yerCnt

count

Total PUSCH count for each layer

-

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description

MCS It provides information about PUSCH’s Block Error Rate (BLER), the number of allocated PRBs and the number of transmissions for each MCS. For the PDSCH, it collects the Block Error Rate (BLER) and the number of allocated PRBs. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs0

%

PDSCH BLER transmitted to MCS 0

Y

OW

Period

float

0~100

PdschBlerMcs 0Tot/PdschBl erMcs0Cnt*10 0

sum(PdschBlerMcs 0Tot)/sum(PdschBl erMcs0Cnt)*100

PdschBlerMcs1

%

PDSCH BLER transmitted to MCS 1

Y

OW

Period

float

0~100

PdschBlerMcs 1Tot/PdschBl erMcs1Cnt*10 0

sum(PdschBlerMcs 1Tot)/sum(PdschBl erMcs1Cnt)*100

PdschBlerMcs2

%

PDSCH BLER transmitted to MCS 2

Y

OW

Period

float

0~100

PdschBlerMcs 2Tot/PdschBl erMcs2Cnt*10 0

sum(PdschBlerMcs 2Tot)/sum(PdschBl erMcs2Cnt)*100

PdschBlerMcs3

%

PDSCH BLER transmitted to MCS 3

Y

OW

Period

float

0~100

PdschBlerMcs 3Tot/PdschBl erMcs3Cnt*10 0

sum(PdschBlerMcs 3Tot)/sum(PdschBl erMcs3Cnt)*100

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs4

%

PDSCH BLER transmitted to MCS 4

Y

OW

Period

float

0~100

PdschBlerMcs 4Tot/PdschBl erMcs4Cnt*10 0

sum(PdschBlerMcs 4Tot)/sum(PdschBl erMcs4Cnt)*100

PdschBlerMcs5

%

PDSCH BLER transmitted to MCS 5

Y

OW

Period

float

0~100

PdschBlerMcs 5Tot/PdschBl erMcs5Cnt*10 0

sum(PdschBlerMcs 5Tot)/sum(PdschBl erMcs5Cnt)*100

PdschBlerMcs6

%

PDSCH BLER transmitted to MCS 6

Y

OW

Period

float

0~100

PdschBlerMcs 6Tot/PdschBl erMcs6Cnt*10 0

sum(PdschBlerMcs 6Tot)/sum(PdschBl erMcs6Cnt)*100

PdschBlerMcs7

%

PDSCH BLER transmitted to MCS 7

Y

OW

Period

float

0~100

PdschBlerMcs 7Tot/PdschBl erMcs7Cnt*10 0

sum(PdschBlerMcs 7Tot)/sum(PdschBl erMcs7Cnt)*100

PdschBlerMcs8

%

PDSCH BLER transmitted to MCS 8

Y

OW

Period

float

0~100

PdschBlerMcs 8Tot/PdschBl erMcs8Cnt*10 0

sum(PdschBlerMcs 8Tot)/sum(PdschBl erMcs8Cnt)*100

PdschBlerMcs9

%

PDSCH BLER transmitted to MCS 9

Y

OW

Period

float

0~100

PdschBlerMcs 9Tot/PdschBl erMcs9Cnt*10 0

sum(PdschBlerMcs 9Tot)/sum(PdschBl erMcs9Cnt)*100

PdschBlerMcs10

%

PDSCH BLER transmitted to MCS 10

Y

OW

Period

float

0~100

PdschBlerMcs 10Tot/PdschB lerMcs10Cnt* 100

sum(PdschBlerMcs 10Tot)/sum(Pdsch BlerMcs10Cnt)*100

PdschBlerMcs11

%

PDSCH BLER transmitted to MCS 11

Y

OW

Period

float

0~100

PdschBlerMcs 11Tot/PdschB lerMcs11Cnt* 100

sum(PdschBlerMcs 11Tot)/sum(Pdsch BlerMcs11Cnt)*100

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs12

%

PDSCH BLER transmitted to MCS 12

Y

OW

Period

float

0~100

PdschBlerMcs 12Tot/PdschB lerMcs12Cnt* 100

sum(PdschBlerMcs 12Tot)/sum(Pdsch BlerMcs12Cnt)*100

PdschBlerMcs13

%

PDSCH BLER transmitted to MCS 13

Y

OW

Period

float

0~100

PdschBlerMcs 13Tot/PdschB lerMcs13Cnt* 100

sum(PdschBlerMcs 13Tot)/sum(Pdsch BlerMcs13Cnt)*100

PdschBlerMcs14

%

PDSCH BLER transmitted to MCS 14

Y

OW

Period

float

0~100

PdschBlerMcs 14Tot/PdschB lerMcs14Cnt* 100

sum(PdschBlerMcs 14Tot)/sum(Pdsch BlerMcs14Cnt)*100

PdschBlerMcs15

%

PDSCH BLER transmitted to MCS 15

Y

OW

Period

float

0~100

PdschBlerMcs 15Tot/PdschB lerMcs15Cnt* 100

sum(PdschBlerMcs 15Tot)/sum(Pdsch BlerMcs15Cnt)*100

PdschBlerMcs16

%

PDSCH BLER transmitted to MCS 16

Y

OW

Period

float

0~100

PdschBlerMcs 16Tot/PdschB lerMcs16Cnt* 100

sum(PdschBlerMcs 16Tot)/sum(Pdsch BlerMcs16Cnt)*100

PdschBlerMcs17

%

PDSCH BLER transmitted to MCS 17

Y

OW

Period

float

0~100

PdschBlerMcs 17Tot/PdschB lerMcs17Cnt* 100

sum(PdschBlerMcs 17Tot)/sum(Pdsch BlerMcs17Cnt)*100

PdschBlerMcs18

%

PDSCH BLER transmitted to MCS 18

Y

OW

Period

float

0~100

PdschBlerMcs 18Tot/PdschB lerMcs18Cnt* 100

sum(PdschBlerMcs 18Tot)/sum(Pdsch BlerMcs18Cnt)*100

PdschBlerMcs19

%

PDSCH BLER transmitted to MCS 19

Y

OW

Period

float

0~100

PdschBlerMcs 19Tot/PdschB lerMcs19Cnt* 100

sum(PdschBlerMcs 19Tot)/sum(Pdsch BlerMcs19Cnt)*100

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs20

%

PDSCH BLER transmitted to MCS 20

Y

OW

Period

float

0~100

PdschBlerMcs 20Tot/PdschB lerMcs20Cnt* 100

sum(PdschBlerMcs 20Tot)/sum(Pdsch BlerMcs20Cnt)*100

PdschBlerMcs21

%

PDSCH BLER transmitted to MCS 21

Y

OW

Period

float

0~100

PdschBlerMcs 21Tot/PdschB lerMcs21Cnt* 100

sum(PdschBlerMcs 21Tot)/sum(Pdsch BlerMcs21Cnt)*100

PdschBlerMcs22

%

PDSCH BLER transmitted to MCS 22

Y

OW

Period

float

0~100

PdschBlerMcs 22Tot/PdschB lerMcs22Cnt* 100

sum(PdschBlerMcs 22Tot)/sum(Pdsch BlerMcs22Cnt)*100

PdschBlerMcs23

%

PDSCH BLER transmitted to MCS 23

Y

OW

Period

float

0~100

PdschBlerMcs 23Tot/PdschB lerMcs23Cnt* 100

sum(PdschBlerMcs 23Tot)/sum(Pdsch BlerMcs23Cnt)*100

PdschBlerMcs24

%

PDSCH BLER transmitted to MCS 24

Y

OW

Period

float

0~100

PdschBlerMcs 24Tot/PdschB lerMcs24Cnt* 100

sum(PdschBlerMcs 24Tot)/sum(Pdsch BlerMcs24Cnt)*100

PdschBlerMcs25

%

PDSCH BLER transmitted to MCS 25

Y

OW

Period

float

0~100

PdschBlerMcs 25Tot/PdschB lerMcs25Cnt* 100

sum(PdschBlerMcs 25Tot)/sum(Pdsch BlerMcs25Cnt)*100

PdschBlerMcs26

%

PDSCH BLER transmitted to MCS 26

Y

OW

Period

float

0~100

PdschBlerMcs 26Tot/PdschB lerMcs26Cnt* 100

sum(PdschBlerMcs 26Tot)/sum(Pdsch BlerMcs26Cnt)*100

PdschBlerMcs27

%

PDSCH BLER transmitted to MCS 27

Y

OW

Period

float

0~100

PdschBlerMcs 27Tot/PdschB lerMcs27Cnt* 100

sum(PdschBlerMcs 27Tot)/sum(Pdsch BlerMcs27Cnt)*100

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs28

%

PDSCH BLER transmitted to MCS 28

Y

OW

Period

float

0~100

PdschBlerMcs 28Tot/PdschB lerMcs28Cnt* 100

sum(PdschBlerMcs 28Tot)/sum(Pdsch BlerMcs28Cnt)*100

PdschBlerMcs29

%

PDSCH BLER transmitted to MCS 29

Y

OW

Period

float

0~100

PdschBlerMcs 29Tot/PdschB lerMcs29Cnt* 100

sum(PdschBlerMcs 29Tot)/sum(Pdsch BlerMcs29Cnt)*100

PdschBlerMcs30

%

PDSCH BLER transmitted to MCS 30

Y

OW

Period

float

0~100

PdschBlerMcs 30Tot/PdschB lerMcs30Cnt* 100

sum(PdschBlerMcs 30Tot)/sum(Pdsch BlerMcs30Cnt)*100

PdschBlerMcs31

%

PDSCH BLER transmitted to MCS 31

Y

OW

Period

float

0~100

PdschBlerMcs 31Tot/PdschB lerMcs31Cnt* 100

sum(PdschBlerMcs 31Tot)/sum(Pdsch BlerMcs31Cnt)*100

PdschBlerMcs0Tot

count

PDSCH Error count transmitted to MCS 0 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs1Tot

count

PDSCH Error count transmitted to MCS 1 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs2Tot

count

PDSCH Error count transmitted to MCS 2 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs3Tot

count

PDSCH Error count transmitted to MCS 3 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs4Tot

count

PDSCH Error count transmitted to MCS 4 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs5Tot

count

PDSCH Error count transmitted to MCS 5 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs6Tot

count

PDSCH Error count transmitted to MCS 6 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

259

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs7Tot

count

PDSCH Error count transmitted to MCS 7 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs8Tot

count

PDSCH Error count transmitted to MCS 8 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs9Tot

count

PDSCH Error count transmitted to MCS 9 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs10Tot

count

PDSCH Error count transmitted to MCS 10 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs11Tot

count

PDSCH Error count transmitted to MCS 11 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs12Tot

count

PDSCH Error count transmitted to MCS 12 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs13Tot

count

PDSCH Error count transmitted to MCS 13 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs14Tot

count

PDSCH Error count transmitted to MCS 14 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs15Tot

count

PDSCH Error count transmitted to MCS 15 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs16Tot

count

PDSCH Error count transmitted to MCS 16 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs17Tot

count

PDSCH Error count transmitted to MCS 17 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs18Tot

count

PDSCH Error count transmitted to MCS 18 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs19Tot

count

PDSCH Error count transmitted to MCS 19 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs20Tot

count

PDSCH Error count transmitted to MCS 20 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs21Tot

count

PDSCH Error count transmitted

-

CC

5.12 s

float

0~3.4*10^38

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

260

Chapter 2 Counter Description Name

Unit

PdschBlerMcs22Tot

count

PdschBlerMcs23Tot

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PDSCH Error count transmitted to MCS 22 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

count

PDSCH Error count transmitted to MCS 23 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs24Tot

count

PDSCH Error count transmitted to MCS 24 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs25Tot

count

PDSCH Error count transmitted to MCS 25 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs26Tot

count

PDSCH Error count transmitted to MCS 26 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs27Tot

count

PDSCH Error count transmitted to MCS 27 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs28Tot

count

PDSCH Error count transmitted to MCS 28 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs29Tot

count

PDSCH Error count transmitted to MCS 29 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs30Tot

count

PDSCH Error count transmitted to MCS 30 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs31Tot

count

PDSCH Error count transmitted to MCS 31 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PdschBlerMcs0Cnt

count

Total PDSCH count transmitted to MCS 0

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs1Cnt

count

Total PDSCH count transmitted to MCS 1

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs2Cnt

count

Total PDSCH count transmitted to MCS 2

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs3Cnt

count

Total PDSCH count transmitted to MCS 3

-

CC

5.12 s

int

0~2147483647

-

-

to MCS 21 (all errors)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

261

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdschBlerMcs4Cnt

count

Total PDSCH count transmitted to MCS 4

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs5Cnt

count

Total PDSCH count transmitted to MCS 5

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs6Cnt

count

Total PDSCH count transmitted to MCS 6

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs7Cnt

count

Total PDSCH count transmitted to MCS 7

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs8Cnt

count

Total PDSCH count transmitted to MCS 8

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs9Cnt

count

Total PDSCH count transmitted to MCS 9

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs10Cnt

count

Total PDSCH count transmitted to MCS 10

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs11Cnt

count

Total PDSCH count transmitted to MCS 11

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs12Cnt

count

Total PDSCH count transmitted to MCS 12

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs13Cnt

count

Total PDSCH count transmitted to MCS 13

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs14Cnt

count

Total PDSCH count transmitted to MCS 14

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs15Cnt

count

Total PDSCH count transmitted to MCS 15

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs16Cnt

count

Total PDSCH count transmitted to MCS 16

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs17Cnt

count

Total PDSCH count transmitted to MCS 17

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs18Cnt

count

Total PDSCH count transmitted

-

CC

5.12 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

262

Chapter 2 Counter Description Name

Unit

PdschBlerMcs19Cnt

count

PdschBlerMcs20Cnt

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Total PDSCH count transmitted to MCS 19

-

CC

5.12 s

int

0~2147483647

-

-

count

Total PDSCH count transmitted to MCS 20

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs21Cnt

count

Total PDSCH count transmitted to MCS 21

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs22Cnt

count

Total PDSCH count transmitted to MCS 22

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs23Cnt

count

Total PDSCH count transmitted to MCS 23

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs24Cnt

count

Total PDSCH count transmitted to MCS 24

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs25Cnt

count

Total PDSCH count transmitted to MCS 25

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs26Cnt

count

Total PDSCH count transmitted to MCS 26

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs27Cnt

count

Total PDSCH count transmitted to MCS 27

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs28Cnt

count

Total PDSCH count transmitted to MCS 28

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs29Cnt

count

Total PDSCH count transmitted to MCS 29

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs30Cnt

count

Total PDSCH count transmitted to MCS 30

-

CC

5.12 s

int

0~2147483647

-

-

PdschBlerMcs31Cnt

count

Total PDSCH count transmitted to MCS 31

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs0

%

PUSCH BLER received to MCS 0

Y

OW

Period

float

0~100

PuschBlerMcs 0Tot/PuschBl

sum(PuschBlerMcs 0Tot)/sum(PuschBl

to MCS 18

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

263

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula erMcs0Cnt*10 0

Hourly, Daily, Monthly Formula erMcs0Cnt)*100

PuschBlerMcs1

%

PUSCH BLER received to MCS 1

Y

OW

Period

float

0~100

PuschBlerMcs 1Tot/PuschBl erMcs1Cnt*10 0

sum(PuschBlerMcs 1Tot)/sum(PuschBl erMcs1Cnt)*100

PuschBlerMcs2

%

PUSCH BLER received to MCS 2

Y

OW

Period

float

0~100

PuschBlerMcs 2Tot/PuschBl erMcs2Cnt*10 0

sum(PuschBlerMcs 2Tot)/sum(PuschBl erMcs2Cnt)*100

PuschBlerMcs3

%

PUSCH BLER received to MCS 3

Y

OW

Period

float

0~100

PuschBlerMcs 3Tot/PuschBl erMcs3Cnt*10 0

sum(PuschBlerMcs 3Tot)/sum(PuschBl erMcs3Cnt)*100

PuschBlerMcs4

%

PUSCH BLER received to MCS 4

Y

OW

Period

float

0~100

PuschBlerMcs 4Tot/PuschBl erMcs4Cnt*10 0

sum(PuschBlerMcs 4Tot)/sum(PuschBl erMcs4Cnt)*100

PuschBlerMcs5

%

PUSCH BLER received to MCS 5

Y

OW

Period

float

0~100

PuschBlerMcs 5Tot/PuschBl erMcs5Cnt*10 0

sum(PuschBlerMcs 5Tot)/sum(PuschBl erMcs5Cnt)*100

PuschBlerMcs6

%

PUSCH BLER received to MCS 6

Y

OW

Period

float

0~100

PuschBlerMcs 6Tot/PuschBl erMcs6Cnt*10 0

sum(PuschBlerMcs 6Tot)/sum(PuschBl erMcs6Cnt)*100

PuschBlerMcs7

%

PUSCH BLER received to MCS 7

Y

OW

Period

float

0~100

PuschBlerMcs 7Tot/PuschBl erMcs7Cnt*10 0

sum(PuschBlerMcs 7Tot)/sum(PuschBl erMcs7Cnt)*100

PuschBlerMcs8

%

PUSCH BLER received to

Y

OW

Period

float

0~100

PuschBlerMcs 8Tot/PuschBl

sum(PuschBlerMcs 8Tot)/sum(PuschBl

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

264

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula erMcs8Cnt*10 0

Hourly, Daily, Monthly Formula erMcs8Cnt)*100

MCS 8 PuschBlerMcs9

%

PUSCH BLER received to MCS 9

Y

OW

Period

float

0~100

PuschBlerMcs 9Tot/PuschBl erMcs9Cnt*10 0

sum(PuschBlerMcs 9Tot)/sum(PuschBl erMcs9Cnt)*100

PuschBlerMcs10

%

PUSCH BLER received to MCS 10

Y

OW

Period

float

0~100

PuschBlerMcs 10Tot/PuschB lerMcs10Cnt* 100

sum(PuschBlerMcs 10Tot)/sum(Pusch BlerMcs10Cnt)*100

PuschBlerMcs11

%

PUSCH BLER received to MCS 11

Y

OW

Period

float

0~100

PuschBlerMcs 11Tot/PuschB lerMcs11Cnt* 100

sum(PuschBlerMcs 11Tot)/sum(Pusch BlerMcs11Cnt)*100

PuschBlerMcs12

%

PUSCH BLER received to MCS 12

Y

OW

Period

float

0~100

PuschBlerMcs 12Tot/PuschB lerMcs12Cnt* 100

sum(PuschBlerMcs 12Tot)/sum(Pusch BlerMcs12Cnt)*100

PuschBlerMcs13

%

PUSCH BLER received to MCS 13

Y

OW

Period

float

0~100

PuschBlerMcs 13Tot/PuschB lerMcs13Cnt* 100

sum(PuschBlerMcs 13Tot)/sum(Pusch BlerMcs13Cnt)*100

PuschBlerMcs14

%

PUSCH BLER received to MCS 14

Y

OW

Period

float

0~100

PuschBlerMcs 14Tot/PuschB lerMcs14Cnt* 100

sum(PuschBlerMcs 14Tot)/sum(Pusch BlerMcs14Cnt)*100

PuschBlerMcs15

%

PUSCH BLER received to MCS 15

Y

OW

Period

float

0~100

PuschBlerMcs 15Tot/PuschB lerMcs15Cnt* 100

sum(PuschBlerMcs 15Tot)/sum(Pusch BlerMcs15Cnt)*100

PuschBlerMcs16

%

PUSCH BLER received to

Y

OW

Period

float

0~100

PuschBlerMcs 16Tot/PuschB

sum(PuschBlerMcs 16Tot)/sum(Pusch

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

265

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula lerMcs16Cnt* 100

Hourly, Daily, Monthly Formula BlerMcs16Cnt)*100

MCS 16 PuschBlerMcs17

%

PUSCH BLER received to MCS 17

Y

OW

Period

float

0~100

PuschBlerMcs 17Tot/PuschB lerMcs17Cnt* 100

sum(PuschBlerMcs 17Tot)/sum(Pusch BlerMcs17Cnt)*100

PuschBlerMcs18

%

PUSCH BLER received to MCS 18

Y

OW

Period

float

0~100

PuschBlerMcs 18Tot/PuschB lerMcs18Cnt* 100

sum(PuschBlerMcs 18Tot)/sum(Pusch BlerMcs18Cnt)*100

PuschBlerMcs19

%

PUSCH BLER received to MCS 19

Y

OW

Period

float

0~100

PuschBlerMcs 19Tot/PuschB lerMcs19Cnt* 100

sum(PuschBlerMcs 19Tot)/sum(Pusch BlerMcs19Cnt)*100

PuschBlerMcs20

%

PUSCH BLER received to MCS 20

Y

OW

Period

float

0~100

PuschBlerMcs 20Tot/PuschB lerMcs20Cnt* 100

sum(PuschBlerMcs 20Tot)/sum(Pusch BlerMcs20Cnt)*100

PuschBlerMcs21

%

PUSCH BLER received to MCS 21

Y

OW

Period

float

0~100

PuschBlerMcs 21Tot/PuschB lerMcs21Cnt* 100

sum(PuschBlerMcs 21Tot)/sum(Pusch BlerMcs21Cnt)*100

PuschBlerMcs22

%

PUSCH BLER received to MCS 22

Y

OW

Period

float

0~100

PuschBlerMcs 22Tot/PuschB lerMcs22Cnt* 100

sum(PuschBlerMcs 22Tot)/sum(Pusch BlerMcs22Cnt)*100

PuschBlerMcs23

%

PUSCH BLER received to MCS 23

Y

OW

Period

float

0~100

PuschBlerMcs 23Tot/PuschB lerMcs23Cnt* 100

sum(PuschBlerMcs 23Tot)/sum(Pusch BlerMcs23Cnt)*100

PuschBlerMcs24

%

PUSCH BLER received to

Y

OW

Period

float

0~100

PuschBlerMcs 24Tot/PuschB

sum(PuschBlerMcs 24Tot)/sum(Pusch

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

266

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula lerMcs24Cnt* 100

Hourly, Daily, Monthly Formula BlerMcs24Cnt)*100

MCS 24 PuschBlerMcs25

%

PUSCH BLER received to MCS 25

Y

OW

Period

float

0~100

PuschBlerMcs 25Tot/PuschB lerMcs25Cnt* 100

sum(PuschBlerMcs 25Tot)/sum(Pusch BlerMcs25Cnt)*100

PuschBlerMcs26

%

PUSCH BLER received to MCS 26

Y

OW

Period

float

0~100

PuschBlerMcs 26Tot/PuschB lerMcs26Cnt* 100

sum(PuschBlerMcs 26Tot)/sum(Pusch BlerMcs26Cnt)*100

PuschBlerMcs27

%

PUSCH BLER received to MCS 27

Y

OW

Period

float

0~100

PuschBlerMcs 27Tot/PuschB lerMcs27Cnt* 100

sum(PuschBlerMcs 27Tot)/sum(Pusch BlerMcs27Cnt)*100

PuschBlerMcs28

%

PUSCH BLER received to MCS 28

Y

OW

Period

float

0~100

PuschBlerMcs 28Tot/PuschB lerMcs28Cnt* 100

sum(PuschBlerMcs 28Tot)/sum(Pusch BlerMcs28Cnt)*100

PuschBlerMcs29

%

PUSCH BLER received to MCS 29

Y

OW

Period

float

0~100

PuschBlerMcs 29Tot/PuschB lerMcs29Cnt* 100

sum(PuschBlerMcs 29Tot)/sum(Pusch BlerMcs29Cnt)*100

PuschBlerMcs30

%

PUSCH BLER received to MCS 30

Y

OW

Period

float

0~100

PuschBlerMcs 30Tot/PuschB lerMcs30Cnt* 100

sum(PuschBlerMcs 30Tot)/sum(Pusch BlerMcs30Cnt)*100

PuschBlerMcs31

%

PUSCH BLER received to MCS 31

Y

OW

Period

float

0~100

PuschBlerMcs 31Tot/PuschB lerMcs31Cnt* 100

sum(PuschBlerMcs 31Tot)/sum(Pusch BlerMcs31Cnt)*100

PuschBlerMcs0Tot

count

PUSCH Error count transmitted

-

CC

5.12 s

float

0~3.4*10^38

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

267

Chapter 2 Counter Description Name

Unit

PuschBlerMcs1Tot

count

PuschBlerMcs2Tot

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PUSCH Error count transmitted to MCS 1 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

count

PUSCH Error count transmitted to MCS 2 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs3Tot

count

PUSCH Error count transmitted to MCS 3 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs4Tot

count

PUSCH Error count transmitted to MCS 4 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs5Tot

count

PUSCH Error count transmitted to MCS 5 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs6Tot

count

PUSCH Error count transmitted to MCS 6 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs7Tot

count

PUSCH Error count transmitted to MCS 7 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs8Tot

count

PUSCH Error count transmitted to MCS 8 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs9Tot

count

PUSCH Error count transmitted to MCS 9 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs10Tot

count

PUSCH Error count transmitted to MCS 10 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs11Tot

count

PUSCH Error count transmitted to MCS 11 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs12Tot

count

PUSCH Error count transmitted to MCS 12 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs13Tot

count

PUSCH Error count transmitted to MCS 13 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs14Tot

count

PUSCH Error count transmitted to MCS 14 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

to MCS 0 (all errors)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

268

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PuschBlerMcs15Tot

count

PUSCH Error count transmitted to MCS 15 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs16Tot

count

PUSCH Error count transmitted to MCS 16 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs17Tot

count

PUSCH Error count transmitted to MCS 17 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs18Tot

count

PUSCH Error count transmitted to MCS 18 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs19Tot

count

PUSCH Error count transmitted to MCS 19 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs20Tot

count

PUSCH Error count transmitted to MCS 20 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs21Tot

count

PUSCH Error count transmitted to MCS 21 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs22Tot

count

PUSCH Error count transmitted to MCS 22 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs23Tot

count

PUSCH Error count transmitted to MCS 23 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs24Tot

count

PUSCH Error count transmitted to MCS 24 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs25Tot

count

PUSCH Error count transmitted to MCS 25 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs26Tot

count

PUSCH Error count transmitted to MCS 26 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs27Tot

count

PUSCH Error count transmitted to MCS 27 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs28Tot

count

PUSCH Error count transmitted to MCS 28 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs29Tot

count

PUSCH Error count transmitted

-

CC

5.12 s

float

0~3.4*10^38

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

269

Chapter 2 Counter Description Name

Unit

PuschBlerMcs30Tot

count

PuschBlerMcs31Tot

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PUSCH Error count transmitted to MCS 30 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

count

PUSCH Error count transmitted to MCS 31 (all errors)

-

CC

5.12 s

float

0~3.4*10^38

-

-

PuschBlerMcs0Cnt

count

Total PUSCH count transmitted to MCS 0

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs1Cnt

count

Total PUSCH count transmitted to MCS 1

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs2Cnt

count

Total PUSCH count transmitted to MCS 2

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs3Cnt

count

Total PUSCH count transmitted to MCS 3

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs4Cnt

count

Total PUSCH count transmitted to MCS 4

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs5Cnt

count

Total PUSCH count transmitted to MCS 5

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs6Cnt

count

Total PUSCH count transmitted to MCS 6

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs7Cnt

count

Total PUSCH count transmitted to MCS 7

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs8Cnt

count

Total PUSCH count transmitted to MCS 8

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs9Cnt

count

Total PUSCH count transmitted to MCS 9

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs10Cnt

count

Total PUSCH count transmitted to MCS 10

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs11Cnt

count

Total PUSCH count transmitted to MCS 11

-

CC

5.12 s

int

0~2147483647

-

-

to MCS 29 (all errors)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

270

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PuschBlerMcs12Cnt

count

Total PUSCH count transmitted to MCS 12

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs13Cnt

count

Total PUSCH count transmitted to MCS 13

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs14Cnt

count

Total PUSCH count transmitted to MCS 14

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs15Cnt

count

Total PUSCH count transmitted to MCS 15

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs16Cnt

count

Total PUSCH count transmitted to MCS 16

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs17Cnt

count

Total PUSCH count transmitted to MCS 17

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs18Cnt

count

Total PUSCH count transmitted to MCS 18

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs19Cnt

count

Total PUSCH count transmitted to MCS 19

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs20Cnt

count

Total PUSCH count transmitted to MCS 20

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs21Cnt

count

Total PUSCH count transmitted to MCS 21

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs22Cnt

count

Total PUSCH count transmitted to MCS 22

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs23Cnt

count

Total PUSCH count transmitted to MCS 23

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs24Cnt

count

Total PUSCH count transmitted to MCS 24

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs25Cnt

count

Total PUSCH count transmitted to MCS 25

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs26Cnt

count

Total PUSCH count transmitted

-

CC

5.12 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

271

Chapter 2 Counter Description Name

Unit

PuschBlerMcs27Cnt

count

PuschBlerMcs28Cnt

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Total PUSCH count transmitted to MCS 27

-

CC

5.12 s

int

0~2147483647

-

-

count

Total PUSCH count transmitted to MCS 28

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs29Cnt

count

Total PUSCH count transmitted to MCS 29

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs30Cnt

count

Total PUSCH count transmitted to MCS 30

-

CC

5.12 s

int

0~2147483647

-

-

PuschBlerMcs31Cnt

count

Total PUSCH count transmitted to MCS 31

-

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs0

count

The number of times PUSCH of MCS 0 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs1

count

The number of times PUSCH of MCS 1 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs2

count

The number of times PUSCH of MCS 2 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs3

count

The number of times PUSCH of MCS 3 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs4

count

The number of times PUSCH of MCS 4 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs5

count

The number of times PUSCH of MCS 5 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs6

count

The number of times PUSCH of MCS 6 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs7

count

The number of times PUSCH of MCS 7 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs8

count

The number of times PUSCH of MCS 8 is received

Y

CC

5.12 s

int

0~2147483647

-

-

to MCS 26

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

272

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULReceivedMcs9

count

The number of times PUSCH of MCS 9 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs10

count

The number of times PUSCH of MCS 10 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs11

count

The number of times PUSCH of MCS 11 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs12

count

The number of times PUSCH of MCS 12 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs13

count

The number of times PUSCH of MCS 13 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs14

count

The number of times PUSCH of MCS 14 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs15

count

The number of times PUSCH of MCS 15 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs16

count

The number of times PUSCH of MCS 16 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs17

count

The number of times PUSCH of MCS 17 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs18

count

The number of times PUSCH of MCS 18 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs19

count

The number of times PUSCH of MCS 19 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs20

count

The number of times PUSCH of MCS 20 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs21

count

The number of times PUSCH of MCS 21 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs22

count

The number of times PUSCH of MCS 22 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs23

count

The number of times PUSCH

Y

CC

5.12 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

273

Chapter 2 Counter Description Name

Unit

ULReceivedMcs24

count

ULReceivedMcs25

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The number of times PUSCH of MCS 24 is received

Y

CC

5.12 s

int

0~2147483647

-

-

count

The number of times PUSCH of MCS 25 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs26

count

The number of times PUSCH of MCS 26 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs27

count

The number of times PUSCH of MCS 27 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs28

count

The number of times PUSCH of MCS 28 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs29

count

The number of times PUSCH of MCS 29 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs30

count

The number of times PUSCH of MCS 30 is received

Y

CC

5.12 s

int

0~2147483647

-

-

ULReceivedMcs31

count

The number of times PUSCH of MCS 31 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs0

count

The number of PRBs assigned to PDSCH MCS 0

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs1

count

The number of PRBs assigned to DSCH MCS 1

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs2

count

The number of PRBs assigned to DSCH MCS 2

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs3

count

The number of PRBs assigned to DSCH MCS 3

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs4

count

The number of PRBs assigned to DSCH MCS 4

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs5

count

The number of PRBs assigned to DSCH MCS 5

Y

CC

5.12 s

int

0~2147483647

-

-

of MCS 23 is received

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

274

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLSchedulerMcs6

count

The number of PRBs assigned to DSCH MCS 6

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs7

count

The number of PRBs assigned to DSCH MCS 7

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs8

count

The number of PRBs assigned to DSCH MCS 8

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs9

count

The number of PRBs assigned to DSCH MCS 9

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs10

count

The number of PRBs assigned to DSCH MCS 10

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs11

count

The number of PRBs assigned to DSCH MCS 11

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs12

count

The number of PRBs assigned to DSCH MCS 12

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs13

count

The number of PRBs assigned to DSCH MCS 13

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs14

count

The number of PRBs assigned to PDSCH MCS 14

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs15

count

The number of PRBs assigned to PDSCH MCS 15

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs16

count

The number of PRBs assigned to PDSCH MCS 16

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs17

count

The number of PRBs assigned to PDSCH MCS 17

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs18

count

The number of PRBs assigned to PDSCH MCS 18

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs19

count

The number of PRBs assigned to PDSCH MCS 19

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs20

count

The number of PRBs assigned

Y

CC

5.12 s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

275

Chapter 2 Counter Description Name

Unit

DLSchedulerMcs21

count

DLSchedulerMcs22

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The number of PRBs assigned to PDSCH MCS 21

Y

CC

5.12 s

int

0~2147483647

-

-

count

The number of PRBs assigned to PDSCH MCS 22

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs23

count

The number of PRBs assigned to PDSCH MCS 23

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs24

count

The number of PRBs assigned to PDSCH MCS 24

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs25

count

The number of PRBs assigned to PDSCH MCS 25

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs26

count

The number of PRBs assigned to PDSCH MCS 26

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs27

count

The number of PRBs assigned to PDSCH MCS 27

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs28

count

The number of PRBs assigned to PDSCH MCS 28

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs29

count

The number of PRBs assigned to PDSCH MCS 29

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs30

count

The number of PRBs assigned to PDSCH MCS 30

Y

CC

5.12 s

int

0~2147483647

-

-

DLSchedulerMcs31

count

The number of PRBs assigned to PDSCH MCS 31

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs0

count

The number of PRBs assigned to PUSCH MCS 0

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs1

count

The number of PRBs assigned to PUSCH MCS 1

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs2

count

The number of PRBs assigned to PUSCH MCS 2

Y

CC

5.12 s

int

0~2147483647

-

-

to PDSCH MCS 20

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

276

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULSchedulerMcs3

count

The number of PRBs assigned to PUSCH MCS 3

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs4

count

The number of PRBs assigned to PUSCH MCS 4

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs5

count

The number of PRBs assigned to PUSCH MCS 5

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs6

count

The number of PRBs assigned to PUSCH MCS 6

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs7

count

The number of PRBs assigned to PUSCH MCS 7

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs8

count

The number of PRBs assigned to PUSCH MCS 8

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs9

count

The number of PRBs assigned to PUSCH MCS 9

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs10

count

The number of PRBs assigned to PUSCH MCS 10

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs11

count

The number of PRBs assigned to PUSCH MCS 11

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs12

count

The number of PRBs assigned to PUSCH MCS 12

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs13

count

The number of PRBs assigned to PUSCH MCS 13

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs14

count

The number of PRBs assigned to PUSCH MCS 14

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs15

count

The number of PRBs assigned to PUSCH MCS 15

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs16

count

The number of PRBs assigned to PUSCH MCS 16

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs17

count

The number of PRBs assigned

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ULSchedulerMcs18

count

ULSchedulerMcs19

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The number of PRBs assigned to PUSCH MCS 18

Y

CC

5.12 s

int

0~2147483647

-

-

count

The number of PRBs assigned to PUSCH MCS 19

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs20

count

The number of PRBs assigned to PUSCH MCS 20

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs21

count

The number of PRBs assigned to PUSCH MCS 21

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs22

count

The number of PRBs assigned to PUSCH MCS 22

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs23

count

The number of PRBs assigned to PUSCH MCS 23

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs24

count

The number of PRBs assigned to PUSCH MCS 24

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs25

count

The number of PRBs assigned to PUSCH MCS 25

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs26

count

The number of PRBs assigned to PUSCH MCS 26

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs27

count

The number of PRBs assigned to PUSCH MCS 27

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs28

count

The number of PRBs assigned to PUSCH MCS 28

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs29

count

The number of PRBs assigned to PUSCH MCS 29

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs30

count

The number of PRBs assigned to PUSCH MCS 30

Y

CC

5.12 s

int

0~2147483647

-

-

ULSchedulerMcs31

count

The number of PRBs assigned to PUSCH MCS 31

Y

CC

5.12 s

int

0~2147483647

-

-

to PUSCH MCS 17

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Chapter 2 Counter Description

DL MCS This section provides statistics data for transmission counts per MCS/layer/Codeword for PDSCH. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

DL Layer

Layer (data stream count)  1: 1 stream  2: 2 streams  3: 3 streams  4: 4 streams

Codeword

Codeword (Transport block count)  0: First transport block  1: Second transport block

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLTransmittedMcs0

count

The number of times that MCS 0 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs1

count

The number of times that MCS 1 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs2

count

The number of times that MCS 2

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PDSCH is transmitted per layer/codeword DLTransmittedMcs3

count

The number of times that MCS 3 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs4

count

The number of times that MCS 4 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs5

count

The number of times that MCS 5 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs6

count

The number of times that MCS 6 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs7

count

The number of times that MCS 7 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs8

count

The number of times that MCS 8 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs9

count

The number of times that MCS 9 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs10

count

The number of times that MCS 10 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs11

count

The number of times that MCS 11 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs12

count

The number of times that MCS 12 PDSCH is transmitted per

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

DLTransmittedMcs13

count

DLTransmittedMcs14

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The number of times that MCS 13 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

count

The number of times that MCS 14 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs15

count

The number of times that MCS 15 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs16

count

The number of times that MCS 16 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs17

count

The number of times that MCS 17 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs18

count

The number of times that MCS 18 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs19

count

The number of times that MCS 19 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs20

count

The number of times that MCS 20 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs21

count

The number of times that MCS 21 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs22

count

The number of times that MCS 22 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

layer/codeword

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLTransmittedMcs23

count

The number of times that MCS 23 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs24

count

The number of times that MCS 24 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs25

count

The number of times that MCS 25 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs26

count

The number of times that MCS 26 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs27

count

The number of times that MCS 27 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs28

count

The number of times that MCS 28 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs29

count

The number of times that MCS 29 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs30

count

The number of times that MCS 30 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

DLTransmittedMcs31

count

The number of times that MCS 31 PDSCH is transmitted per layer/codeword

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description

DL LAYER This section provides statistics for data transmission counts per layer for PDSCH. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

DL Layer

Layer (data stream count)  1: 1 stream  2: 2 stream  3: 3 stream  4: 4 stream

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLTransmittedLayer

count

Transmission counts per layer for PDSCH

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description

DL Wideband CQI This section provides CQI report information per layer/codeword for the UE. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

DL Layer

Layer (data stream count)  1: 1 stream  2: 2 stream  3: 3 stream  4: 4 stream

Codeword

Codeword (the number of Transport block)  0: first transport block  1: second transport block

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLReceivedCQI0

count

The number of times that CQI 0 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI1

count

The number of times that CQI 1 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI2

count

The number of times that CQI 2 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLReceivedCQI3

count

The number of times that CQI 3 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI4

count

The number of times that CQI 4 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI5

count

The number of times that CQI 5 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI6

count

The number of times that CQI 6 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI7

count

The number of times that CQI 7 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI8

count

The number of times that CQI 8 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI9

count

The number of times that CQI 9 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI10

count

The number of times that CQI 10 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI11

count

The number of times that CQI 11 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI12

count

The number of times that CQI 12 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI13

count

The number of times that CQI 13 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI14

count

The number of times that CQI 14 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQI15

count

The number of times that CQI 15 is received per layer/codeword

Y

CC

5.12 s

int

0~21474 83647

-

-

DLReceivedCQIMi n

CQI

Minimum value of DLReceivedCQI

Y

OW

Period

int

0~15

-

min(DLReceivedCQIMin )

DLReceivedCQIMa

CQI

Maximum value of DLReceivedCQI

Y

OW

Period

int

0~15

-

max(DLReceivedCQIM

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula ax)

CQI

Average value of DLReceivedCQI

Y

OW

Period

float

0~15

(0*DLReceivedC QI0+1*DLReceive dCQI1+2*DLRece ivedCQI2+3*DLR eceivedCQI3+4*D LReceivedCQI4+5 *DLReceivedCQI5 +6*DLReceivedC QI6+7*DLReceive dCQI7+8*DLRece ivedCQI8+9*DLR eceivedCQI9+10* DLReceivedCQI1 0+11*DLReceived CQI11+12*DLRec eivedCQI12+13*D LReceivedCQI13+ 14*DLReceivedC QI14+15*DLRecei vedCQI15)/(DLRe ceivedCQI0+DLR eceivedCQI1+DL ReceivedCQI2+D LReceivedCQI3+ DLReceivedCQI4 +DLReceivedCQI 5+DLReceivedCQ I6+DLReceivedC QI7+DLReceived CQI8+DLReceive dCQI9+DLReceiv edCQI10+DLRece ivedCQI11+DLRe ceivedCQI12+DL

(0*sum(DLReceivedCQI 0)+1*sum(DLReceived CQI1)+2*sum(DLReceiv edCQI2)+3*sum(DLRec eivedCQI3)+4*sum(DL ReceivedCQI4)+5*sum( DLReceivedCQI5)+6*su m(DLReceivedCQI6)+7 *sum(DLReceivedCQI7) +8*sum(DLReceivedCQ I8)+9*sum(DLReceived CQI9)+10*sum(DLRece ivedCQI10)+11*sum(DL ReceivedCQI11)+12*su m(DLReceivedCQI12)+ 13*sum(DLReceivedCQ I13)+14*sum(DLReceiv edCQI14)+15*sum(DLR eceivedCQI15))/(sum(D LReceivedCQI0)+sum( DLReceivedCQI1)+sum (DLReceivedCQI2)+su m(DLReceivedCQI3)+s um(DLReceivedCQI4)+ sum(DLReceivedCQI5) +sum(DLReceivedCQI6 )+sum(DLReceivedCQI 7)+sum(DLReceivedCQ I8)+sum(DLReceivedC QI9)+sum(DLReceived CQI10)+sum(DLReceiv edCQI11)+sum(DLRece ivedCQI12)+sum(DLRe ceivedCQI13)+sum(DL

x DLReceivedCQIAv g

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Chapter 2 Counter Description Name

Unit

Description

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula ReceivedCQI13+ DLReceivedCQI1 4+DLReceivedCQ I15)

Hourly, Daily, Monthly Formula ReceivedCQI14)+sum( DLReceivedCQI15))

287

Chapter 2 Counter Description

DL PMI This section provides the number of times that PMI is received. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLReceivedPMI0

count

The number of times that PMI 0 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI1

count

The number of times that PMI 1 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI2

count

The number of times that PMI 2 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI3

count

The number of times that PMI 3 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI4

count

The number of times that PMI 4 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI5

count

The number of times that PMI 5 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI6

count

The number of times that PMI 6 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI7

count

The number of times that PMI 7 is

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

DLReceivedPMI8

count

DLReceivedPMI9

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The number of times that PMI 8 is received

Y

CC

5.12 s

int

0~2147483647

-

-

count

The number of times that PMI 9 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI10

count

The number of times that PMI 10 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI11

count

The number of times that PMI 11 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI12

count

The number of times that PMI 12 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI13

count

The number of times that PMI 13 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI14

count

The number of times that PMI 14 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceivedPMI15

count

The number of times that PMI 15 is received

Y

CC

5.12 s

int

0~2147483647

-

-

received

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Chapter 2 Counter Description

DL RI This section provides UE’s RI report information. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLReceive dRI0

count

reserved

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceive dRI1

count

The number of times that RI 1 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceive dRI2

count

The number of times that RI 2 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceive dRI3

count

The number of times that RI 3 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceive dRI4

count

The number of times that RI 4 is received

Y

CC

5.12 s

int

0~2147483647

-

-

DLReceive dRIAvg

RI

Average value of DLReceivedRI

Y

OW

Period

int

0~4

(0*DLReceivedRI0+1*DLRecei vedRI1+2*DLReceivedRI2+3* DLReceivedRI3+4*DLReceive dRI4)/(DLReceivedRI0+DLRec eivedRI1+DLReceivedRI2+DL ReceivedRI3+DLReceivedRI4)

(0*sum(DLReceiv edRI0)+1*sum(DL ReceivedRI1)+2*s um(DLReceivedRI 2)+3*sum(DLRece ivedRI3)+4*sum(D

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Chapter 2 Counter Description Name

Unit

Description

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula LReceivedRI4))/(s um(DLReceivedRI 0)+sum(DLReceiv edRI1)+sum(DLR eceivedRI2)+sum( DLReceivedRI3)+ sum(DLReceived RI4))

291

Chapter 2 Counter Description

DL ACK-NACK-DTX Ratio This section provides ACK, NACK, DTX ratio per layer. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

DL Layer

Layer (data stream count)  1: 1 stream  2: 2 stream  3: 3 stream  4: 4 stream

codeword

Codeword (the number of Transport block)  0: first transport block  1: second transport block

Status

0: ACK, 1: NACK, 2: DTX

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLReceivedAckNa ckDtxRatio

%

ACK, NACK, DTX ratio

Y

SI

5.12 s

float

0~100

DLReceivedAckNackDtx RatioTot/DLReceivedAck NackDtxRatioCnt

sum(DLReceivedAckN ackDtxRatioTot)/sum( DLReceivedAckNackD txRatioCnt)

DLReceivedAckNa ckDtxRatioTot

%

Total ACK, NACK, and DTX ratios

-

SI

5.12 s

float

0~100

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLReceivedAckNa ckDtxRatioCnt

count

Total ACK, NACK, and DTX ratio count

-

SI

5.12 s

int

0~214748364 7

-

-

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293

Chapter 2 Counter Description

Timing Alignment Timing Alignment This section collects the TA statistics for each cell. The TA is collected in the unit of 16Ts when the RRC Connection Request message is received from the MAC. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TimeAdvanceSecti on0

count

distance (meter): 0~200, 16TS: from 0 to 2

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on1

count

distance (meter): 201~400, 16TS: from 3 to 5

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on2

count

distance (meter): 401~600, 16TS: from 6 to 7

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on3

count

distance (meter): 601~800, 16TS: from 8 to 10

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on4

count

distance (meter): 801~1000, 16TS: from 11 to 12

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TimeAdvanceSecti on5

count

distance (meter): 1001~1200, 16TS: from 13 to 15

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on6

count

distance (meter): 1201~1400, 16TS: from 16 to 17

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on7

count

distance (meter): 1401~1600, 16TS: from 18 to 20

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on8

count

distance (meter): 1601~1800, 16TS: from 21 to 22

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on9

count

distance (meter): 1801~2000, 16TS: from 23 to 25

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on10

count

distance (meter): 2001~2500, 16TS: from 26 to 31

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on11

count

distance (meter): 2501~3000, 16TS: from 32 to 38

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on12

count

distance (meter): 3001~3500, 16TS: from 39 to 44

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on13

count

distance (meter): 3501~4000, 16TS: from 45 to 50

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on14

count

distance (meter): 4001~5000, 16TS: from 51 to 63

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on15

count

distance (meter): 5001~6000, 16TS: from 64 to 76

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on16

count

distance (meter): 6001~7000, 16TS: from 77 to 88

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on17

count

distance (meter): 7001~8000, 16TS: from 89 to 101

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti on18

count

distance (meter): 8001~9000, 16TS: from 102 to 114

Y

CC

event

int

0~2147483647

-

-

TimeAdvanceSecti

count

distance (meter): 9001~10000, 16TS:

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

on19 TimeAdvanceSecti on20

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Y

CC

event

int

0~2147483647

-

-

from 115 to 126 count

distance (meter): 10001~, 16TS: from 127 to 1282

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Chapter 2 Counter Description

Timing Advance based UE Limitation In Connected This section provides the connection restriction statistics data according to the Timing Advance based UE Limitation function when a call is connected. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ConnRelease_TaF ail

count

The number of RRC Release request from MAC due to TA Threshold. This statistics is collected when a connection release request is received from MAC as the TA value of a connected UE is bigger than the taThresholdForConnected value.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

Timing Advance based UE Limitation In Initial Attach This section provides the connection restriction statistics according to the Timing Advance based UE Limitation function in the call initial connection. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RARFailByTaLimit ation

count

The number of not-transmitted RAR‟s due to TA Threshold in the UE Initial Attach. If taBasedUeLimitFlag is set as 1 and if the TA value assumed by BTS after receiving preamble is larger than taThresholdForAttach, RAR is not transmitted for the preamble.

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description

IOT Uplink IOT Level This section provides statistics for nine IoT levels. The IoT dB value is divided into 10 levels for each PRB. The statistics levels are classified as follows. Level 0: 0 <= IoT < 2 dB Level 1: 2 <= IoT < 4 dB … Level 9: 18 <= IoT (count all that are equal to or greater than 18 dB) Index Name

Description

cNum

Cell Id

LEVEL

IOT Level

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PRB0

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB1

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB2

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PRB3

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB4

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB5

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB6

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB7

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB8

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB9

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB10

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB11

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB12

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB13

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB14

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB15

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB16

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB17

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB18

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB19

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB20

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB21

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB22

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB23

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB24

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB25

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB26

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PRB27

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB28

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB29

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB30

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB31

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB32

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB33

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB34

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB35

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB36

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB37

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB38

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB39

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB40

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB41

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB42

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB43

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB44

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB45

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB46

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB47

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB48

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB49

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB50

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PRB51

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB52

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB53

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB54

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB55

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB56

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB57

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB58

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB59

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB60

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB61

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB62

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB63

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB64

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB65

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB66

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB67

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB68

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB69

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB70

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB71

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB72

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB73

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB74

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PRB75

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB76

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB77

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB78

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB79

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB80

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB81

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB82

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB83

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB84

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB85

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB86

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB87

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB88

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB89

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB90

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB91

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB92

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB93

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB94

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB95

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB96

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB97

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

PRB98

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PRB99

count

IOT level count for each PRB

Y

CC

5.12 s

int

0~2147483647

-

-

Load Balancing Load This section provides statistics for mobility load balancing operation. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

LoadIndicatorAvg

%

Average load of a cell when overload occurs due to the MLBO operation

Y

GAUGE

5s

float

0~100

LoadIndicatorTot/L oadIndicatorCnt

sum(LoadIndicatorTot)/s um(LoadIndicatorCnt)

LoadIndicatorMin

%

Minimum load of a cell when overload occurs due to the MLBO operation

Y

GAUGE

5s

float

0~100

-

min(LoadIndicatorMin)

LoadIndicatorMax

%

Maximum load of a cell

Y

GAUGE

5s

float

0~100

-

max(LoadIndicatorMax)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

when overload occurs due to the MLBO operation LoadIndicatorTot

%

Accumulated load of a cell when overload occurs due to the MLBO operation

Y

GAUGE

5s

float

0~2147483647

-

-

LoadIndicatorCnt

count

The number of LoadIndicatorAvg called

Y

GAUGE

5s

int

0~2147483647

-

-

OverloadCount

count

The number of overload occurrences due to the MLBO operation

Y

CC

5s

int

0~2147483647

-

-

MlbDurationAvg

s

Average of the overload period due to the MLBO operation

Y

GAUGE

5s

float

0~3.4*10^38

MlbDurationTot/Ml bDurationCnt

sum(MlbDurationTot)/su m(MlbDurationCnt)

MlbDurationMin

s

Minimum value of the overload period due to the MLBO operation

Y

GAUGE

5s

float

0~3.4*10^38

-

min(MlbDurationMin)

MlbDurationMax

s

Maximum value of the overload period due to the MLBO operation

Y

GAUGE

5s

float

0~3.4*10^38

-

max(MlbDurationMax)

MlbDurationTot

s

Accumulated value of the overload period due to the MLBO operation

Y

GAUGE

5s

float

0~3.4*10^38

-

-

MlbDurationCnt

count

The number of MlbDurationAvg called

Y

GAUGE

5s

int

0~2147483647

-

-

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305

Chapter 2 Counter Description

Load Balancing Handover This section provides statistics for handovers that are performed by SON load balancing. Index Name

Description

cNum

Cell Id

tcID

Target Cell Id

Step

Load Balancing Handover Triggering Step  1: LBHO within the same group & sector  2: LBHO between different groups but the same sector (the same eNB)  3: LBHO between different sectors

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

MlbNotTriggered_L oadCondition

count

The number of times when there is no candidate neighbor cell that meets the load condition although MLB is triggered (collected only at Step 3)

Y

CC

event

int

0~2147483647

-

-

MlbNotTriggered_ RadioCondition

count

The number of times when there is no candidate UE because radio condition is not met although MLB is triggered (collected only at Step 3)

Y

CC

event

int

0~2147483647

-

-

MlbHOAtt

count

The number of handover attempts when MLB is triggered

Y

CC

event

int

0~2147483647

-

-

MlbHOSucc

count

The number of successful handovers when MLB is triggered

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

306

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

LbhoCnt

count

Load Balancing handover collection count

-

CC

event

int

0~2147483647

-

-

LbhoCid

tcID

tcID of which collection is requested

-

OW

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

307

Chapter 2 Counter Description

Idle Load Balancing This section provides statistics data for the idle load distribution. Index Name

Description

cNum

Cell Id

TargetEarfcnDl

Target Neighbor cell frequency (EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

UECount

count

Number of UEs with maximum cellReselectionPriority in the carrier selected by the idle UE distribution function during RRC connection release

Y

CC

event

int

0~2147483647

-

-

IdleLbCnt

count

Idle load balancing collection count

-

CC

event

int

0~2147483647

-

-

IdleLbTargetEarf cnDL

TargetE arfcnDl

TargetEarfcnDl requested for collection

-

OW

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

308

Chapter 2 Counter Description

Redirection by Load Balancing Collects the statistics on handovers that are performed by load balancing. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

LBRedirectiontoLT E

count

Number of times that load balancing is redirected to intra-LTE cell

Y

CC

event

int

0~2147483647

-

-

LBRedirectiontoW CDMA

count

Number of times that load balancing is redirected to WCDMA

Y

CC

event

int

0~2147483647

-

-

LBRedirectiontoGS M

count

Number of times that load balancing is redirected to GSM

Y

CC

event

int

0~2147483647

-

-

LBRedirectiontoHR PD

count

Number of times that load balancing is redirected to HRPD

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description

Traffic Distribution Throughput Distribution This section describes the statistics for packet throughput distribution. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULThruBin1

count

Number of uplink RBs with 0 Kbps ≤ throughput < 100 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin2

count

Number of uplink RBs with 100 Kbps ≤ throughput < 200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin3

count

Number of uplink RBs with 200 Kbps ≤ throughput < 300 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin4

count

Number of uplink RBs with 300 Kbps ≤ throughput < 400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin5

count

Number of uplink RBs with 400 Kbps ≤ throughput < 500 Kbps

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULThruBin6

count

Number of uplink RBs with 500 Kbps ≤ throughput < 600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin7

count

Number of uplink RBs with 600 Kbps ≤ throughput < 700 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin8

count

Number of uplink RBs with 700 Kbps ≤ throughput < 800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin9

count

Number of uplink RBs with 800 Kbps ≤ throughput < 900 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin10

count

Number of uplink RBs with 900 Kbps ≤ throughput < 1000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin11

count

Number of uplink RBs with 1000 Kbps ≤ throughput < 1200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin12

count

Number of uplink RBs with 1200 Kbps ≤ throughput < 1400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin13

count

Number of uplink RBs with 1400 Kbps ≤ throughput < 1600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin14

count

Number of uplink RBs with 1600 Kbps ≤ throughput < 1800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin15

count

Number of uplink RBs with 1800 Kbps ≤ throughput < 2000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin16

count

Number of uplink RBs with 2000 Kbps ≤ throughput < 2200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin17

count

Number of uplink RBs with 22000 Kbps ≤ throughput < 2400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin18

count

Number of uplink RBs with 2400 Kbps ≤ throughput < 2600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin19

count

Number of uplink RBs with 2600 Kbps ≤ throughput < 2800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin20

count

Number of uplink RBs with 2800 Kbps ≤

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ULThruBin21

count

ULThruBin22

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of uplink RBs with 3000 Kbps ≤ throughput < 3400 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of uplink RBs with 3400 Kbps ≤ throughput < 3800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin23

count

Number of uplink RBs with 3800 Kbps ≤ throughput < 4200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin24

count

Number of uplink RBs with 4200 Kbps ≤ throughput < 4600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin25

count

Number of uplink RBs with 4600 Kbps ≤ throughput < 5000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin26

count

Number of uplink RBs with 5000 Kbps ≤ throughput < 5400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin27

count

Number of uplink RBs with 5400 Kbps ≤ throughput < 5800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin28

count

Number of uplink RBs with 5800 Kbps ≤ throughput < 6200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin29

count

Number of uplink RBs with 6200 Kbps ≤ throughput < 6600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin30

count

Number of uplink RBs with 6600 Kbps ≤ throughput < 7000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin31

count

Number of uplink RBs with 7000 Kbps ≤ throughput < 7800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin32

count

Number of uplink RBs with 7800 Kbps ≤ throughput < 8600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin33

count

Number of uplink RBs with 8600 Kbps ≤ throughput < 9400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin34

count

Number of uplink RBs with 9400 Kbps ≤ throughput < 10200 Kbps

Y

CC

event

int

0~2147483647

-

-

throughput < 3000 Kbps

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULThruBin35

count

Number of uplink RBs with 10200 Kbps ≤ throughput < 11000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin36

count

Number of uplink RBs with 11000 Kbps ≤ throughput < 11800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin37

count

Number of uplink RBs with 11800 Kbps ≤ throughput < 12600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin38

count

Number of uplink RBs with 12600 Kbps ≤ throughput < 13400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin39

count

Number of uplink RBs with 13400 Kbps ≤ throughput < 14200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin40

count

Number of uplink RBs with 14200 Kbps ≤ throughput < 15000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin41

count

Number of uplink RBs with 15000 Kbps ≤ throughput < 16600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin42

count

Number of uplink RBs with 16600 Kbps ≤ throughput < 18200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin43

count

Number of uplink RBs with 18200 Kbps ≤ throughput < 19800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin44

count

Number of uplink RBs with 19800 Kbps ≤ throughput < 21400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin45

count

Number of uplink RBs with 21400 Kbps ≤ throughput < 23000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin46

count

Number of uplink RBs with 23000 Kbps ≤ throughput < 24600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin47

count

Number of uplink RBs with 24600 Kbps ≤ throughput < 26200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin48

count

Number of uplink RBs with 26200 Kbps ≤ throughput < 27800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin49

count

Number of uplink RBs with 27800 Kbps ≤

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ULThruBin50

count

ULThruBin51

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of uplink RBs with 29400 Kbps ≤ throughput < 31000 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of uplink RBs with 31000 Kbps ≤ throughput < 34200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin52

count

Number of uplink RBs with 34200 Kbps ≤ throughput < 37400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin53

count

Number of uplink RBs with 37400 Kbps ≤ throughput < 40600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin54

count

Number of uplink RBs with 40600 Kbps ≤ throughput < 43800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin55

count

Number of uplink RBs with 43800 Kbps ≤ throughput < 47000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin56

count

Number of uplink RBs with 47000 Kbps ≤ throughput < 50200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin57

count

Number of uplink RBs with 50200 Kbps ≤ throughput < 53400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin58

count

Number of uplink RBs with 53400 Kbps ≤ throughput < 56600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin59

count

Number of uplink RBs with 56600 Kbps ≤ throughput < 59800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin60

count

Number of uplink RBs with 59800 Kbps ≤ throughput < 63000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin61

count

Number of uplink RBs with 63000 Kbps ≤ throughput < 69400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin62

count

Number of uplink RBs with 69400 Kbps ≤ throughput < 75800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin63

count

Number of uplink RBs with 75800 Kbps ≤ throughput < 82200 Kbps

Y

CC

event

int

0~2147483647

-

-

throughput < 29400 Kbps

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULThruBin64

count

Number of uplink RBs with 82200 Kbps ≤ throughput < 88600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin65

count

Number of uplink RBs with 88600 Kbps ≤ throughput < 95000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin66

count

Number of uplink RBs with 95000 Kbps ≤ throughput < 101400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin67

count

Number of uplink RBs with 101400 Kbps ≤ throughput < 107800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin68

count

Number of uplink RBs with 107800 Kbps ≤ throughput < 114200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin69

count

Number of uplink RBs with 114200 Kbps ≤ throughput < 120600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin70

count

Number of uplink RBs with 120600 Kbps ≤ throughput < 127000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin71

count

Number of uplink RBs with 127000 Kbps ≤ throughput < 139800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin72

count

Number of uplink RBs with 139800 Kbps ≤ throughput < 152600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin73

count

Number of uplink RBs with 152600 Kbps ≤ throughput < 165400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin74

count

Number of uplink RBs with 165400 Kbps ≤ throughput < 178200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin75

count

Number of uplink RBs with 178200 Kbps ≤ throughput < 191000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin76

count

Number of uplink RBs with 191000 Kbps ≤ throughput < 203800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin77

count

Number of uplink RBs with 203800 Kbps ≤ throughput < 216600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin78

count

Number of uplink RBs with 216600 Kbps ≤

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

ULThruBin79

count

ULThruBin80

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of uplink RBs with 229400 Kbps ≤ throughput < 242200 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of uplink RBs with 242200 Kbps ≤ throughput < 255000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin81

count

Number of uplink RBs with 255000 Kbps ≤ throughput < 280600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin82

count

Number of uplink RBs with 280600 Kbps ≤ throughput < 306200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin83

count

Number of uplink RBs with 306200 Kbps ≤ throughput < 331800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin84

count

Number of uplink RBs with 331800 Kbps ≤ throughput < 357400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin85

count

Number of uplink RBs with 357400 Kbps ≤ throughput < 383000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin86

count

Number of uplink RBs with 383000 Kbps ≤ throughput < 408600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin87

count

Number of uplink RBs with 408600 Kbps ≤ throughput < 434200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin88

count

Number of uplink RBs with 434200 Kbps ≤ throughput < 459800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin89

count

Number of uplink RBs with 459800 Kbps ≤ throughput < 485400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin90

count

Number of uplink RBs with 485400 Kbps ≤ throughput < 511000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin91

count

Number of uplink RBs with 511000 Kbps ≤ throughput < 562200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin92

count

Number of uplink RBs with 562200 Kbps ≤ throughput < 613400 Kbps

Y

CC

event

int

0~2147483647

-

-

throughput < 229400 Kbps

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

316

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ULThruBin93

count

Number of uplink RBs with 613400 Kbps ≤ throughput < 664600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin94

count

Number of uplink RBs with 664600 Kbps ≤ throughput < 715800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin95

count

Number of uplink RBs with 715800 Kbps ≤ throughput < 767000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin96

count

Number of uplink RBs with 767000 Kbps ≤ throughput < 818200 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin97

count

Number of uplink RBs with 818200 Kbps ≤ throughput < 869400 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin98

count

Number of uplink RBs with 869400 Kbps ≤ throughput < 920600 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin99

count

Number of uplink RBs with 920600 Kbps ≤ throughput < 971800 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin100

count

Number of uplink RBs with 971800 Kbps ≤ throughput < 1023000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruBin101

count

Number of uplink RBs with throughput ≥ 1023000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin1

count

Number of downlink RBs with 0 Kbps ≤ throughput < 100 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin2

count

Number of downlink RBs with 100 Kbps ≤ throughput < 200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin3

count

Number of downlink RBs with 200 Kbps ≤ throughput < 300 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin4

count

Number of downlink RBs with 300 Kbps ≤ throughput < 400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin5

count

Number of downlink RBs with 400 Kbps ≤ throughput < 500 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin6

count

Number of downlink RBs with 500 Kbps ≤

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

317

Chapter 2 Counter Description Name

Unit

DLThruBin7

count

DLThruBin8

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of downlink RBs with 600 Kbps ≤ throughput < 700 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of downlink RBs with 700 Kbps ≤ throughput < 800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin9

count

Number of downlink RBs with 800 Kbps ≤ throughput < 900 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin10

count

Number of downlink RBs with 900 Kbps ≤ throughput < 1000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin11

count

Number of downlink RBs with 1000 Kbps ≤ throughput < 1200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin12

count

Number of downlink RBs with 1200 Kbps ≤ throughput < 1400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin13

count

Number of downlink RBs with 1400 Kbps ≤ throughput < 1600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin14

count

Number of downlink RBs with 1600 Kbps ≤ throughput < 1800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin15

count

Number of downlink RBs with 1800 Kbps ≤ throughput < 2000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin16

count

Number of downlink RBs with 2000 Kbps ≤ throughput < 2200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin17

count

Number of downlink RBs with 2200 Kbps ≤ throughput < 2400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin18

count

Number of downlink RBs with 2400 Kbps ≤ throughput < 2600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin19

count

Number of downlink RBs with 2600 Kbps ≤ throughput < 2800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin20

count

Number of downlink RBs with 2800 Kbps ≤ throughput < 3000 Kbps

Y

CC

event

int

0~2147483647

-

-

throughput < 600 Kbps

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLThruBin21

count

Number of downlink RBs with 3000 Kbps ≤ throughput < 3400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin22

count

Number of downlink RBs with 3400 Kbps ≤ throughput < 3800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin23

count

Number of downlink RBs with 3800 Kbps ≤ throughput < 4200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin24

count

Number of downlink RBs with 4200 Kbps ≤ throughput < 4600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin25

count

Number of downlink RBs with 4600 Kbps ≤ throughput < 5000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin26

count

Number of downlink RBs with 5000 Kbps ≤ throughput < 5400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin27

count

Number of downlink RBs with 5400 Kbps ≤ throughput < 5800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin28

count

Number of downlink RBs with 5800 Kbps ≤ throughput < 6200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin29

count

Number of downlink RBs with 6200 Kbps ≤ throughput < 6600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin30

count

Number of downlink RBs with 6600 Kbps ≤ throughput < 7000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin31

count

Number of downlink RBs with 7000 Kbps ≤ throughput < 7800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin32

count

Number of downlink RBs with 7800 Kbps ≤ throughput < 8600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin33

count

Number of downlink RBs with 8600 Kbps ≤ throughput < 9400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin34

count

Number of downlink RBs with 9400 Kbps ≤ throughput < 10200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin35

count

Number of downlink RBs with 10200 Kbps ≤

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

DLThruBin36

count

DLThruBin37

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of downlink RBs with 11000 Kbps ≤ throughput < 11800 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of downlink RBs with 11800 Kbps ≤ throughput < 12600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin38

count

Number of downlink RBs with 12600 Kbps ≤ throughput < 13400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin39

count

Number of downlink RBs with 13400 Kbps ≤ throughput < 14200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin40

count

Number of downlink RBs with 14200 Kbps ≤ throughput < 15000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin41

count

Number of downlink RBs with 15000 Kbps ≤ throughput < 16600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin42

count

Number of downlink RBs with 16600 Kbps ≤ throughput < 18200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin43

count

Number of downlink RBs with 18200 Kbps ≤ throughput < 19800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin44

count

Number of downlink RBs with 19800 Kbps ≤ throughput < 21400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin45

count

Number of downlink RBs with 21400 Kbps ≤ throughput < 23000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin46

count

Number of downlink RBs with 23000 Kbps ≤ throughput < 24600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin47

count

Number of downlink RBs with 24600 Kbps ≤ throughput < 26200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin48

count

Number of downlink RBs with 26200 Kbps ≤ throughput < 27800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin49

count

Number of downlink RBs with 27800 Kbps ≤ throughput < 29400 Kbps

Y

CC

event

int

0~2147483647

-

-

throughput < 11000 Kbps

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLThruBin50

count

Number of downlink RBs with 29400 Kbps ≤ throughput < 31000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin51

count

Number of downlink RBs with 31000 Kbps ≤ throughput < 34200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin52

count

Number of downlink RBs with 34200 Kbps ≤ throughput < 37400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin53

count

Number of downlink RBs with 37400 Kbps ≤ throughput < 40600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin54

count

Number of downlink RBs with 40600 Kbps ≤ throughput < 43800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin55

count

Number of downlink RBs with 43800 Kbps ≤ throughput < 47000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin56

count

Number of downlink RBs with 47000 Kbps ≤ throughput < 50200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin57

count

Number of downlink RBs with 50200 Kbps ≤ throughput < 53400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin58

count

Number of downlink RBs with 53400 Kbps ≤ throughput < 56600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin59

count

Number of downlink RBs with 56600 Kbps ≤ throughput < 59800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin60

count

Number of downlink RBs with 59800 Kbps ≤ throughput < 63000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin61

count

Number of downlink RBs with 63000 Kbps ≤ throughput < 69400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin62

count

Number of downlink RBs with 69400 Kbps ≤ throughput < 75800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin63

count

Number of downlink RBs with 75800 Kbps ≤ throughput < 82200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin64

count

Number of downlink RBs with 82200 Kbps ≤

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

DLThruBin65

count

DLThruBin66

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of downlink RBs with 88600 Kbps ≤ throughput < 95000 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of downlink RBs with 95000 Kbps ≤ throughput < 101400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin67

count

Number of downlink RBs with 101400 Kbps ≤ throughput < 107800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin68

count

Number of downlink RBs with 107800 Kbps ≤ throughput < 114200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin69

count

Number of downlink RBs with 114200 Kbps ≤ throughput < 120600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin70

count

Number of downlink RBs with 120600 Kbps ≤ throughput < 127000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin71

count

Number of downlink RBs with 127000 Kbps ≤ throughput < 139800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin72

count

Number of downlink RBs with 139800 Kbps ≤ throughput < 152600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin73

count

Number of downlink RBs with 152600 Kbps ≤ throughput < 165400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin74

count

Number of downlink RBs with 165400 Kbps ≤ throughput < 178200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin75

count

Number of downlink RBs with 178200 Kbps ≤ throughput < 191000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin76

count

Number of downlink RBs with 191000 Kbps ≤ throughput < 203800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin77

count

Number of downlink RBs with 203800 Kbps ≤ throughput < 216600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin78

count

Number of downlink RBs with 216600 Kbps ≤ throughput < 229400 Kbps

Y

CC

event

int

0~2147483647

-

-

throughput < 88600 Kbps

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

DLThruBin79

count

Number of downlink RBs with 229400 Kbps ≤ throughput < 242200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin80

count

Number of downlink RBs with 242200 Kbps ≤ throughput < 255000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin81

count

Number of downlink RBs with 255000 Kbps ≤ throughput < 280600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin82

count

Number of downlink RBs with 280600 Kbps ≤ throughput < 306200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin83

count

Number of downlink RBs with 306200 Kbps ≤ throughput < 331800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin84

count

Number of downlink RBs with 331800 Kbps ≤ throughput < 357400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin85

count

Number of downlink RBs with 357400 Kbps ≤ throughput < 383000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin86

count

Number of downlink RBs with 383000 Kbps ≤ throughput < 408600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin87

count

Number of downlink RBs with 408600 Kbps ≤ throughput < 434200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin88

count

Number of downlink RBs with 434200 Kbps ≤ throughput < 459800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin89

count

Number of downlink RBs with 459800 Kbps ≤ throughput < 485400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin90

count

Number of downlink RBs with 485400 Kbps ≤ throughput < 511000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin91

count

Number of downlink RBs with 511000 Kbps ≤ throughput < 562200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin92

count

Number of downlink RBs with 562200 Kbps ≤ throughput < 613400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin93

count

Number of downlink RBs with 613400 Kbps

Y

CC

event

int

0~2147483647

-

-

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323

Chapter 2 Counter Description Name

Unit

DLThruBin94

count

DLThruBin95

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of downlink RBs with 664600 Kbps ≤ throughput < 715800 Kbps

Y

CC

event

int

0~2147483647

-

-

count

Number of downlink RBs with 715800 Kbps ≤ throughput < 767000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin96

count

Number of downlink RBs with 767000 Kbps ≤ throughput < 818200 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin97

count

Number of downlink RBs with 818200 Kbps ≤ throughput < 869400 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin98

count

Number of downlink RBs with 869400 Kbps ≤ throughput < 920600 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin99

count

Number of downlink RBs with 920600 Kbps ≤ throughput < 971800 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin100

count

Number of downlink RBs with 971800 Kbps ≤ throughput < 1023000 Kbps

Y

CC

event

int

0~2147483647

-

-

DLThruBin101

count

Number of downlink RBs with throughput ≥ 1023000 Kbps

Y

CC

event

int

0~2147483647

-

-

ULThruAvg

Kbps

Average of the user uplink throughputs collected

Y

GAUGE

event

int

0~2147483647

ULThruTot/ ULThruCnt

sum(ULThruTot)/ sum(ULThruCnt)

ULThruMax

Kbps

Maximum value of the user uplink throughput collected

Y

GAUGE

event

int

0~2147483647

-

max(ULThruMax)

ULThruMin

Kbps

Minimum value of the user uplink throughput collected

Y

GAUGE

event

int

0~2147483647

-

min(ULThruMin)

ULThruTot

Kbps

Sum of the user uplink throughputs collected

Y

GAUGE

event

int

0~2147483647

-

-

ULThruCnt

count

Number of user uplink throughput collections

Y

GAUGE

event

int

0~2147483647

-

-

DLThruAvg

Kbps

Average of the user downlink throughputs collected

Y

GAUGE

event

int

0~2147483647

DLThruTot/ DLThruCnt

sum(DLThruTot)/ sum(DLThruCnt)

DLThruMax

Kbps

Maximum value of the user downlink

Y

GAUGE

event

int

0~2147483647

-

max(DLThruMax)

≤ throughput < 664600 Kbps

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

324

Chapter 2 Counter Description Name

Unit

DLThruMin

Kbps

DLThruTot DLThruCnt

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Minimum value of the user downlink throughputs collected

Y

GAUGE

event

int

0~2147483647

-

min(DLThruMin)

Kbps

Sum of the user downlink throughputs collected

Y

GAUGE

event

int

0~2147483647

-

-

count

Number of user downlink throughput collections

Y

GAUGE

event

int

0~2147483647

-

-

throughputs collected

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325

Chapter 2 Counter Description

Delay Distribution This section provides the statistics for packet delay distribution. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RlcDLDelayBin1

count

Number of downlink RBs with 0 ms ≤ delay < 10 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin2

count

Number of downlink RBs with 10 ms ≤ delay < 20 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin3

count

Number of downlink RBs with 20 ms ≤ delay < 30 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin4

count

Number of downlink RBs with 30 ms ≤ delay < 40 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin5

count

Number of downlink RBs with 40 ms ≤ delay < 50 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin6

count

Number of downlink RBs with 50 ms ≤ delay < 60 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin7

count

Number of downlink RBs with 60 ms ≤ delay < 70 ms

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

326

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RlcDLDelayBin8

count

Number of downlink RBs with 70 ms ≤ delay < 80 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin9

count

Number of downlink RBs with 80 ms ≤ delay < 90 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin10

count

Number of downlink RBs with 90 ms ≤ delay < 100 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin11

count

Number of downlink RBs with 100 ms ≤ delay < 110 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin12

count

Number of downlink RBs with 110 ms ≤ delay < 120 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin13

count

Number of downlink RBs with 120 ms ≤ delay < 130 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin14

count

Number of downlink RBs with 130 ms ≤ delay < 140 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin15

count

Number of downlink RBs with 140 ms ≤ delay < 150 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin16

count

Number of downlink RBs with 150 ms ≤ delay < 160 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin17

count

Number of downlink RBs with 160 ms ≤ delay < 170 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin18

count

Number of downlink RBs with 170 ms ≤ delay < 180 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin19

count

Number of downlink RBs with 180 ms ≤ delay < 190 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin20

count

Number of downlink RBs with 190 ms ≤ delay < 200 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin21

count

Number of downlink RBs with 200 ms ≤ delay < 210 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin22

count

Number of downlink RBs with 210

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description Name

Unit

RlcDLDelayBin23

count

RlcDLDelayBin24

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of downlink RBs with 220 ms ≤ delay < 230 ms

Y

CC

event

int

0~2147483647

-

-

count

Number of downlink RBs with 230 ms ≤ delay < 240 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin25

count

Number of downlink RBs with 240 ms ≤ delay < 250 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin26

count

Number of downlink RBs with 250 ms ≤ delay < 260 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin27

count

Number of downlink RBs with 260 ms ≤ delay < 270 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin28

count

Number of downlink RBs with 270 ms ≤ delay < 280 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin29

count

Number of downlink RBs with 280 ms ≤ delay < 290 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin30

count

Number of downlink RBs with 290 ms ≤ delay < 300 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin31

count

Number of downlink RBs with 300 ms ≤ delay < 320 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin32

count

Number of downlink RBs with 320 ms ≤ delay < 340 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin33

count

Number of downlink RBs with 340 ms ≤ delay < 360 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin34

count

Number of downlink RBs with 360 ms ≤ delay < 380 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin35

count

Number of downlink RBs with 380 ms ≤ delay < 400 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin36

count

Number of downlink RBs with 400 ms ≤ delay < 420 ms

Y

CC

event

int

0~2147483647

-

-

ms ≤ delay < 220 ms

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RlcDLDelayBin37

count

Number of downlink RBs with 420 ms ≤ delay < 440 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin38

count

Number of downlink RBs with 440 ms ≤ delay < 460 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin39

count

Number of downlink RBs with 460 ms ≤ delay < 480 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin40

count

Number of downlink RBs with 480 ms ≤ delay < 500 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin41

count

Number of downlink RBs with 500 ms ≤ delay < 550 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin42

count

Number of downlink RBs with 550 ms ≤ delay < 600 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin43

count

Number of downlink RBs with 600 ms ≤ delay < 650 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin44

count

Number of downlink RBs with 650 ms ≤ delay < 700 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin45

count

Number of downlink RBs with 700 ms ≤ delay < 750 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin46

count

Number of downlink RBs with 750 ms ≤ delay < 800 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin47

count

Number of downlink RBs with 800 ms ≤ delay < 850 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin48

count

Number of downlink RBs with 850 ms ≤ delay < 900 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin49

count

Number of downlink RBs with 900 ms ≤ delay < 950 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin50

count

Number of downlink RBs with 950 ms ≤ delay < 1000 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin51

count

Number of downlink RBs with 1000

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

RlcDLDelayBin52

count

RlcDLDelayBin53

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Number of downlink RBs with 1100 ms ≤ delay < 1200 ms

Y

CC

event

int

0~2147483647

-

-

count

Number of downlink RBs with 1200 ms ≤ delay < 1300 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin54

count

Number of downlink RBs with 1300 ms ≤ delay < 1400 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin55

count

Number of downlink RBs with 1400 ms ≤ delay < 1500 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin56

count

Number of downlink RBs with 1500 ms ≤ delay < 1600 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin57

count

Number of downlink RBs with 1600 ms ≤ delay < 1700 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin58

count

Number of downlink RBs with 1700 ms ≤ delay < 1800 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin59

count

Number of downlink RBs with 1800 ms ≤ delay < 1900 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin60

count

Number of downlink RBs with 1900 ms ≤ delay < 2000 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin61

count

Number of downlink RBs with 2000 ms ≤ delay < 2100 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin62

count

Number of downlink RBs with 2100 ms ≤ delay < 2200 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin63

count

Number of downlink RBs with 2200 ms ≤ delay < 2300 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin64

count

Number of downlink RBs with 2300 ms ≤ delay < 2400 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin65

count

Number of downlink RBs with 2400 ms ≤ delay < 2500 ms

Y

CC

event

int

0~2147483647

-

-

ms ≤ delay < 1100 ms

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

RlcDLDelayBin66

count

Number of downlink RBs with 2500 ms ≤ delay < 2600 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin67

count

Number of downlink RBs with 2600 ms ≤ delay < 2700 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin68

count

Number of downlink RBs with 2700 ms ≤ delay < 2800 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin69

count

Number of downlink RBs with 2800 ms ≤ delay < 2900 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin70

count

Number of downlink RBs with 2900 ms ≤ delay < 3000 ms

Y

CC

event

int

0~2147483647

-

-

RlcDLDelayBin71

count

Number of downlink RBs with delay ≥ 3000 ms

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description

Drop Distribution This section provides the statistics for packet drop and loss distribution. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduDropRate DLBin1

count

Number of downlink RBs with SDU packet drop rate ≤ 0 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduDropRate DLBin2

count

Number of downlink RBs with 0 ppm < SDU packet drop rate ≤ 1 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduDropRate DLBin3

count

Number of downlink RBs with 1 ppm < SDU packet drop rate ≤ 10 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduDropRate DLBin4

count

Number of downlink RBs with 10 ppm < SDU packet drop rate ≤ 100 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduDropRate DLBin5

count

Number of downlink RBs with 100 ppm < SDU packet drop rate ≤ 1000 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduDropRate DLBin6

count

Number of downlink RBs with 1000 ppm < SDU packet drop rate ≤ 10000 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduDropRate DLBin7

count

Number of downlink RBs with 10000 ppm < SDU packet drop rate ≤ 100000 ppm

Y

CC

event

int

0~2147483 647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

PdcpSduDropRate DLBin8

count

Number of downlink RBs with 100000 ppm < SDU packet drop rate ≤ 1000000 ppm

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin1

count

Number of downlink RBs with PDU packet drop rate ≤ 0

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin2

count

Number of downlink RBs with 0 < PDU packet drop rate ≤ 0.000001

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin3

count

Number of downlink RBs with 0.000001 < PDU packet drop rate ≤ 0.00001

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin4

count

Number of downlink RBs with 0.00001 < PDU packet drop rate ≤ 0.0001

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin5

count

Number of downlink RBs with 0.0001 < PDU packet drop rate ≤ 0.001

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin6

count

Number of downlink RBs with 0.001 < PDU packet drop rate ≤ 0.01

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin7

count

Number of downlink RBs with 0.01 < PDU packet drop rate ≤ 0.1

Y

CC

event

int

0~2147483 647

-

-

RlcSduDropRateD LBin8

count

Number of downlink RBs with 0.1 < PDU packet drop rate ≤ 1

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate ULBin1

count

Number of uplink RBs with SDU packet loss rate ≤ 0 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate ULBin2

count

Number of uplink RBs with 0 ppm < SDU packet loss rate ≤ 1 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate ULBin3

count

Number of uplink RBs with 1 ppm < SDU packet loss rate ≤ 10 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate ULBin4

count

Number of uplink RBs with 10 ppm < SDU packet loss rate ≤ 100 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate ULBin5

count

Number of uplink RBs with 100 ppm < SDU packet loss rate ≤ 1000 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate

count

Number of uplink RBs with 1000 ppm < SDU

Y

CC

event

int

0~2147483

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

packet loss rate ≤ 10000 ppm

ULBin6

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

647

PdcpSduLossRate ULBin7

count

Number of uplink RBs with 10000 ppm < SDU packet loss rate ≤ 100000 ppm

Y

CC

event

int

0~2147483 647

-

-

PdcpSduLossRate ULBin8

count

Number of uplink RBs with 100000 ppm < SDU packet loss rate ≤ 1000000 ppm

Y

CC

event

int

0~2147483 647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

334

Chapter 2 Counter Description

CQI Distribution This section provides the statistics for CQI distribution. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CQI1Bin

count

Number of RBs that use CQI 1

Y

CC

event

int

0~2147483647

-

-

CQI2Bin

count

Number of RBs that use CQI 2

Y

CC

event

int

0~2147483647

-

-

CQI3Bin

count

Number of RBs that use CQI 3

Y

CC

event

int

0~2147483647

-

-

CQI4Bin

count

Number of RBs that use CQI 4

Y

CC

event

int

0~2147483647

-

-

CQI5Bin

count

Number of RBs that use CQI 5

Y

CC

event

int

0~2147483647

-

-

CQI6Bin

count

Number of RBs that use CQI 6

Y

CC

event

int

0~2147483647

-

-

CQI7Bin

count

Number of RBs that use CQI 7

Y

CC

event

int

0~2147483647

-

-

CQI8Bin

count

Number of RBs that use CQI 8

Y

CC

event

int

0~2147483647

-

-

CQI9Bin

count

Number of RBs that use CQI 9

Y

CC

event

int

0~2147483647

-

-

CQI10Bin

count

Number of RBs that use CQI 10

Y

CC

event

int

0~2147483647

-

-

CQI11Bin

count

Number of RBs that use CQI 11

Y

CC

event

int

0~2147483647

-

-

CQI12Bin

count

Number of RBs that use CQI 12

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

CQI13Bin

count

Number of RBs that use CQI 13

Y

CC

event

int

0~2147483647

-

-

CQI14Bin

count

Number of RBs that use CQI 14

Y

CC

event

int

0~2147483647

-

-

CQI15Bin

count

Number of RBs that use CQI 15

Y

CC

event

int

0~2147483647

-

-

CQI16Bin

count

Number of RBs that use CQI 16

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description

eMBMS MBMS eNB Signaling This section provides statistics for MBMS eNB Signaling. Index Name

Description

-

-

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

M2ConnEstabAtt

count

Count of M2 session setup attempts transmitted by the eNB

Y

CC

event

int

0~2147483 647

-

-

M2ConnEstabSucc

count

Count of M2 session setup successes received by the eNB

Y

CC

event

int

0~2147483 647

-

-

M2ConnEstabFail_M 2apCuFail

count

A call is released due to the M2 specification cause during the M2 session setup.

Y

CC

event

int

0~2147483 647

-

-

M2ConnEstabFail_M 2apLinkFail

count

A call is released due to M2 SCTP Link failure during the M2 session setup

Y

CC

event

int

0~2147483 647

-

-

SessionStartAtt

count

Count of M2 MBMS session start request attempts received by the eNB

Y

CC

event

int

0~2147483 647

-

-

SessionStartSucc

count

Count of M2 MBMS session start response successes received by the eNB

Y

CC

event

int

0~2147483 647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SessionStartFail_M2 apCuFail

count

A call is released due to the M2 specification cause during the M2 session setup.

Y

CC

event

int

0~2147483 647

-

-

SessionStartFail_M2 apLinkFail

count

A call is released due to M2 SCTP Link failure during the M2 session setup

Y

CC

event

int

0~2147483 647

-

-

SessionStopAtt

count

Count of M2 MBMS session stop request attempts received by the eNB

Y

CC

event

int

0~2147483 647

-

-

SessionStopSucc

count

Count of M2 MBMS session stop response successes transmitted by the eNB

Y

CC

event

int

0~2147483 647

-

-

SessionStopFail_Cp CcFail

count

A call is released due to reset notification (eNB failure or block restart) from ECMB or by ECCB during the M2 session stop procedure.

Y

CC

event

int

0~2147483 647

-

-

SessionStopFail_M2 apLinkFail

count

A call is released due to M2 SCTP Link failure during M2 session stop.

Y

CC

event

int

0~2147483 647

-

-

SessionStartFail_M2 OtherReasons

count

If failure occurs in the eNB by an exceptional situation other than the reason specified by the statistics

Y

CC

event

int

0~2147483 647

-

-

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Chapter 2 Counter Description

MBMS eNB Sync This section provides statistics for MBMS eNB Sync. Index Name

Description

-

-

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SyncPduType0Rx Count

count

Number of SYNC PDU Type 0 received by the SYNC handler

Y

CC

event

int

0~2147483647

-

-

SyncPduType1Rx Count

count

Number of SYNC PDU Type 1 received by the SYNC handler

Y

CC

event

int

0~2147483647

-

-

SyncPduType3Rx Count

count

Number of SYNC PDU Type 3 received by the SYNC handler

Y

CC

event

int

0~2147483647

-

-

DroppedSyncSequ enceCount

count

Number of sync sequences discarded

Y

CC

event

int

0~2147483647

-

-

DroppedSyncPduC ount_InvalidTeid

count

Number of SYNC PDUs arrived as invalid TEIDs

Y

CC

event

int

0~2147483647

-

-

DroppedSyncPduB yte_InvalidTeid

bytes

Byte of SYNC PDUs arrived as invalid TEIDs

Y

CC

event

int

0~2147483647

-

-

SyncPduType0Rx Byte

kbytes

SYNC PDU Type 0 received by the SYNC handler

Y

CC

5s

int

0~2147483647

-

-

SyncPduType1Rx Byte

kbytes

SYNC PDU Type 1 received by the SYNC handler

Y

CC

5s

int

0~2147483647

-

-

SyncPduType3Rx

kbytes

SYNC PDU Type 3 received by the

Y

CC

5s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Byte

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SYNC handler

DroppedSyncPduC ount_OtherReason s

count

Count of collection of packets discarded by the reason other than that specified by the statistics

Y

CC

5s

int

0~2147483647

-

-

ReceivedSyncSeq uenceCount

count

SYNC sequence count received from eMBMS-GW

Y

CC

5s

int

0~2147483647

-

-

DroppedSyncPduC ount

count

Count of SYNC PDU collection discarded

Y

CC

5s

int

0~2147483647

-

-

DelayedSyncSequ enceCount_Outof OrderPacket

count

SYNC sequence count delayed due to the out-of-order packet

Y

CC

5s

int

0~2147483647

-

-

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Chapter 2 Counter Description

MBMS Cell Sync Statistics by eMBMS SYNC protocol cell Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

TotalSyncPduTxCount

count

Number of Tx packets sent from SYNC handler to RLC

Y

CC

5s

int

0~2147483647

-

-

TotalSyncPduTxByte

kbytes

Number of Tx bytes sent from SYNC handler to RLC

Y

CC

5s

int

0~2147483647

-

-

DeliveredSyncSequence Count

count

SYNC sequence count sent to RLC

Y

CC

5s

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

341

Chapter 2 Counter Description

Aggregate Maximum Bit Rate UE-AMBR Override Collection when UE-AMBR override occurs. Index Name

Description

PLMN

PLMN Id; mcc in the first three-digit numbers and mnc after the three-digit numbers

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

S1APUEAmbrOverride

count

If the UE-AMBR value received from MME is larger than the limited MAX value, count the relevant statistics.

Y

CC

event

int

0~2147483647

-

-

X2APUEAmbrOverride

count

If the UE-AMBR value received from the source eNB at the handover is larger than the limited MAX value, count the relevant statistics.

Y

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description

KPI This section calculates the KPI defined as per 3GPP 32.450 and provides to the EMS.

Accessibility This KPI shows the probability for an end-user to be provided with an E-RAB at request.



Probability Success Rate for E-RABs Establishment



Successful attempts compared with total number of attempts for the different parts of the E-RAB establishment

 SAEB.NbrSu ccEstabInit.QCI  RRC.SuccCo nnEstab.cause  S1SIG.Conn EstabSucc QCI A1  InitialEPS BEstabSR  cause    100  RRC.AttConnEstab.cause  S1SIG.Conn EstabAtt  SAEB.NbrAttEstabInit.QCI cause

A2  AddedEPSBE stabSR 

QCI

 SAEB.NbrSuccEstabAdd.QCI

QCI

 SAEB.NbrAttEstabAdd.QCI

 100

QCI

Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

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Chapter 2 Counter Description

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ErabAccessibilit yInit

%

Initial E-RAB establishment success rate. E-RAB success/ ERAB attempt

Y

OW

Period

float

0~100

(SumRrcConnEstabS ucc/SumRrcConnEsta bAtt)*(SumS1sigS1Co nnEstabSucc/SumS1s igS1ConnEstabAtt)*(S umErabEstabInitSucc Nbr/SumErabEstabInit AttNbr)*100

(sum(SumRrcConnEstabSucc)/s um(SumRrcConnEstabAtt))*(su m(SumS1sigS1ConnEstabSucc) /sum(SumS1sigS1ConnEstabAtt ))*(sum(SumErabEstabInitSuccN br)/sum(SumErabEstabInitAttNbr ))*100

SumRrcConnEs tabSucc

count

Total RRC ESTAB success count

-

CC

Period

int

0~2147483 647

-

-

SumRrcConnEs tabAtt

count

Total RRC ESTAB attempt count

-

CC

Period

int

0~2147483 647

-

-

SumS1sigS1Co nnEstabSucc

count

Total UE Logical S1 Connection Setup success count

-

CC

Period

int

0~2147483 647

-

-

SumS1sigS1Co nnEstabAtt

count

Total UE Logical S1 Connection Setup attempt count

-

CC

Period

int

0~2147483 647

-

-

SumErabEstabI nitSuccNbr

count

Total ERAB setup success count

-

CC

Period

int

0~2147483 647

-

-

SumErabEstabI nitAttNbr

count

Total ERAB setup attempt count

-

CC

Period

int

0~2147483 647

-

-

ErabAccessibilit yAdd

%

Added E-RAB establishment success rate Added E-RAN success/Added ERAB attempt

Y

OW

Period

float

0~100

(SumErabEstabAddS uccNbr/SumErabEsta bAddAttNbr)*100

(sum(SumErabEstabAddSuccNb r)/sum(SumErabEstabAddAttNbr ))*100

SumErabEstabA ddSuccNbr

count

Total ERAB additional setup success count

-

CC

Period

int

0~2147483 647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SumErabEstabA ddAttNbr

count

Total ERAB additional setup attempt count

-

CC

Period

int

0~2147483 647

-

-

ErabConnection FailureRate

%

probability for an enduser to not be provided with an E-UTRAN Radio Access Bearer at initial request

Y

OW

Period

float

0~100

if((SumRrcConnEstab Att=0)&(SumS1sigS1 ConnEstabAtt=0)&(Su mErabEstabInitAttNbr =0), 0, if((Sum RrcConnEstabAtt=0)|( SumS1sigS1ConnEst abAtt=0)|(SumErabEs tabInitAttNbr =0), 100, 100-(SumRrc ConnEstabSucc/Sum RrcConnEstabAtt)*(S umS1sigS1ConnEsta bSucc/SumS1sigS1C onnEstabAtt)*(SumEr abEstabInitSuccNbr/S umErabEstabInitAttNb r)*100))

if((sum(SumRrcConnEstabAtt)= 0)&(sum(SumS1sigS1ConnEsta bAtt)=0)&(sum(SumErabEstabIni tAttNbr)=0), 0, if((sum(SumRrcConnEstabAtt)= 0)|(sum(SumS1sigS1ConnEstab Att)=0)|(sum(SumErabEstabInitA ttNbr)=0), 100, 100(sum(SumRrcConnEstabSucc)/s um(SumRrcConnEstabAtt))*(su m(SumS1sigS1ConnEstabSucc) /sum(SumS1sigS1ConnEstabAtt ))*(sum(SumErabEstabInitSuccN br)/sum(SumErabEstabInitAttNbr ))*100))

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Chapter 2 Counter Description

Retainability A measurement that shows how often an end-user abnormally looses an E-RAB during the time the E-RAB is used. This statistics item is collected for each cell.

Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

ErabRetainabil ity

%

Number of E-RABs with data in a buffer that was abnormally released

Y

OW

Period

float

0~100

SumRelActive/ RetainSession TimeUE*100

sum(SumRelActive)/su m(RetainSessionTime UE)*100

SumRelActive

count

Total count of bearers among active E-RABs where a call is released due to abnormal operation in eNB

-

CC

event

int

0~2147483647

-

-

RetainSession TimeUE

ms

Total in-session time of the UE

-

CC

5.12 s

float

0~60*Period*1000

-

-

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Chapter 2 Counter Description

Integrity A KPI that shows how E-UTRAN impacts the service quality provided to an end-user. Payload data volume on IP level per elapsed time unit on the Uu interface.



E-UTRAN IP Throughput

V _ tp _ DL IP_ Throughput  Samples

 T _ tp _ DL Samples



E-UTRAN IP Latency Downlink

LatQCI  x  DRB.IPLatDlQCI  x

Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

QCI

QoS Class Identifier

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EutranIpThroughput

Kbps

EutranIpThroughput per QCI

Y

OW

Period

float

0~3.4*10^38

-

avg (EutranIpThroughput)

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EutranIpLatency

ms

EutranIpLatency per QCI

Y

OW

Period

float

0~60*Period*1000

-

avg (EutranIpLatency)

IntegrityEutranIpThro ughputTot

Kbps

Sum of collected IpThru

-

CC

10 s

float

0~3.4*10^38

-

-

IntegrityEutranIpThro ughputCnt

count

Count of collected IpThru

-

CC

10 s

int

0~2147483647

-

-

IntegrityEutranIpLate ncyTot

ms

Sum of collected IpLateDI

-

CC

10 s

float

0~60*Period*1000

-

-

IntegrityEutranIpLate ncyCnt

ms

Count of collected IpLateDI

-

CC

10 s

int

0~60*Period*1000

-

-

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Chapter 2 Counter Description

Availability A KPI that shows availability of an E-UTRAN cell.



Percentage of time that the cell is considered available.



The elapsed time from the cell down due to the fault until its recovery.



E-UTRAN Cell Availability CellAvaila bility 

measuremen t_period -  RRU.CellUnavailableT ime.[cause ] cause

measurement _ period

100

Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EutranCellAvaila bility

%

Percentage of time that the cell is considered available

Y

OW

Period

float

0~100

(CellAvailPmPerio dTime-ReadCell UnavailableTime)* 100/CellAvailPmP eriodTime

(sum(CellAvailPmPerio dTime)-sum(Read CellUnavailableTime))* 100/sum(CellAvailPmP eriodTime)

ReadCellUnavail ableTime

s

Disabled time per unit time

-

CC

1min

int

0~60*Period

-

-

CellAvailPmPeri odTime

s

Data collection interval

-

OW

Period

int

0~60*Period

-

-

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Chapter 2 Counter Description

Mobility A KPI that shows how E-UTRAN Mobility functionality is working.



Success rate of E-UTRAN mobility Mobility Success RateQCIx 

HO.ExeSucc HO.PrepSucc.QCI QCIx  100% HO.ExeAtt HO.PrepAtt.QCIQCI x

The handover is calculated for each case to produce the KPI.



Intra eNB Handover



X2 Handover Out



X2 Handover In



S1 Handover Out



S1 Handover In



Inter-RAT HPRD Handover

HO.PrepAtt.QCI is calculated by HO.PrepSucc.QCI+HO.PrepFail.QCI. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

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Chapter 2 Counter Description

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

EutranMobilityHoInt ra

%

HOIntra success rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoIntraSucc/SumH oIntraAtt*100

sum(SumHoIntraSucc)/ sum(SumHoIntraAtt)*1 00

SumHoIntraAtt

count

Total intra handover attempt count

-

CC

event

int

0~2147483647

-

-

SumHoIntraSucc

count

Total intra handover execution success count

-

CC

event

int

0~2147483647

-

-

SumHoIntraPrepSu cc

count

Total intra handover preparation success count

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoX 2Out

%

HOX2Out success rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoX2OutSucc/Su mHoX2OutAtt*100

sum(SumHoX2OutSuc c)/sum(SumHoX2OutA tt)*100

SumHoX2OutAtt

count

Total X2 handover attempt count in SeNB

-

CC

event

int

0~2147483647

-

-

SumHoX2OutSucc

count

Total X2 handover execution success count in SeNB

-

CC

event

int

0~2147483647

-

-

SumHoX2OutPrep Succ

count

Total X2 handover preparation success count in SeNB

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoX 2In

%

HOX2In success rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoX2InSucc/Sum HoX2InAtt*100

sum(SumHoX2InSucc) /sum(SumHoX2InAtt)*1 00

SumHoX2InAtt

count

Total X2 handover attempt count in TeNB

-

CC

event

int

0~2147483647

-

-

SumHoX2InSucc

count

Total X2 handover execution success count in TeNB

-

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SumHoX2InPrepSu cc

count

Total X2 handover preparation success count in TeNB

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoS 1Out

%

HOIS1Out success rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoS1OutSucc/Su mHoS1OutAtt*100

sum(SumHoS1OutSuc c)/sum(SumHoS1OutA tt)*100

SumHoS1OutAtt

count

Total S1 handover attempt count in SeNB

-

CC

event

int

0~2147483647

-

-

SumHoS1OutSucc

count

Total S1 handover execution success count in SeNB

-

CC

event

int

0~2147483647

-

-

SumHoS1OutPrep Succ

count

Total S1 handover preparation success count in SeNB

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoS 1In

%

HOS1In success rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoS1InSucc/Sum HoS1InAtt*100

sum(SumHoS1InSucc) /sum(SumHoS1InAtt)*1 00

SumHoS1InAtt

count

Total S1 handover attempt count in TeNB

-

CC

event

int

0~2147483647

-

-

SumHoS1InSucc

count

Total S1 handover execution success count in SeNB

-

CC

event

int

0~2147483647

-

-

SumHoS1InPrepSu cc

count

Total S1 handover preparation success count in TeNB

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoInt erRatHrpd

%

HOInterRat success rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoInterRatHrpdSu cc/SumHoInterRatHrpd Att*100

sum(SumHoInterRatHr pdSucc)/sum(SumHoIn terRatHrpdAtt)*100

SumHoInterRatHrp dAtt

count

Total Inter RAT Optimized HRPD

-

CC

event

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

SumHoInterRatHrp dSucc

count

SumHoInterRatHrp dPrepSucc

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

Total Inter RAT Optimized HRPD handover execution success count

-

CC

event

int

0~2147483647

-

-

count

Total Inter RAT Optimized HRPD handover preparation success count

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoInt erRatUtranOut

%

HOInterRatUtranOut rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoInterRatUtranO utSucc/SumHoInterRat UtranOutAtt*100

sum(SumHoInterRatUt ranOutSucc)/sum(Sum HoInterRatUtranOutAtt )*100

SumHoInterRatUtra nOutAtt

count

Total LTE to Inter-RAT UTRAN handover attempt count

-

CC

event

int

0~2147483647

-

-

SumHoInterRatUtra nOutSucc

count

Total LTE to Inter-RAT UTRAN handover preparation failure count

-

CC

event

int

0~2147483647

-

-

SumHoInterRatUtra nOutPrepSucc

count

Total LTE to Inter-RAT UTRAN handover preparation success count

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoInt erRatUtranIn

%

HOInterRatUtranIn rate of E-UTRAN mobility

Y

OW

Period

float

0~100

SumHoInterRatUtranIn Succ/SumHoInterRatUt ranInAtt*100

sum(SumHoInterRatUt ranInSucc)/sum(SumH oInterRatUtranInAtt)*1 00

SumHoInterRatUtra nInAtt

count

Total Inter-RAT UTRAN to LTE handover attempt count

-

CC

event

int

0~2147483647

-

-

SumHoInterRatUtra

count

Total Inter-RAT UTRAN

-

CC

event

int

0~2147483647

-

-

handover attempt count

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Chapter 2 Counter Description Name

Unit

nInSucc

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

to LTE handover execution success count

SumHoInterRatUtra nInPrepSucc

count

Total Inter-RAT UTRAN to LTE handover preparation success count

-

CC

event

int

0~2147483647

-

-

EutranMobilityHoInt er

%

Probability that an enduser successfully completes a handover to a separate eNB of the same frequency

Y

OW

Period

float

0~100

(SumHoS1OutSucc+Su mHoX2OutSucc)/(Sum HoS1OutAtt+SumHoX2 OutAtt)*100

(sum(SumHoS1OutSu cc)+sum(SumHoX2Out Succ))/(sum(SumHoS1 OutAtt)+sum(SumHoX 2OutAtt))*100

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Chapter 2 Counter Description

Two-Way Active Measurement Protocol This family defines the SLA statistics. (TWAMP) Index Name

Description

IpVer

enum=IPv4 (1), IPv6 (2)

SrcIp

Source IP address (IPv4/IPv6)

DestIp

Destination IP address (IPv4/IPv6)

PktSize

The test packet size of TWAMP Test.

PktPerSec

Packets per second

UdpDscp

The UDP DSCP of TWAMP Test packet.

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SlaDelayAvg

ms

The average value of Average Delay Round-Trip Time.

Y

SI

10 s

float

0~60*Period*10 00

SlaDelayTot/SlaDel ayCnt

sum(SlaDelayTot)/sum(S laDelayCnt)

SlaDelayMin

ms

The minimum value of Delay Round-Trip Time.

Y

GAUGE

10 s

float

0~60*Period*10 00

-

min(SlaDelayMin)

SlaDelayMinCnt

count

The update count of SlaDelayMin.

Y

GAUGE

10 s

int

0~2147483647

-

-

SlaDelayMax

ms

The maximum value of Delay Round-Trip Time.

Y

GAUGE

10 s

float

0~60*Period*10 00

-

max(SlaDelayMax)

SlaDelayMaxCnt

count

The update count of

Y

GAUGE

10 s

int

0~2147483647

-

-

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Chapter 2 Counter Description Name

Unit

SlaDelayTot

ms

SlaDelayCnt

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The total value of Average Delay Round-Trip Time.

Y

SI

10 s

float

0~3.4*10^38

-

-

count

The update count of SlaDelayAvg.

Y

SI

10 s

int

0~2147483647

-

-

SlaJitterAvg

ms

The average value of JITTER.

Y

SI

10 s

float

0~60*Period*10 00

SlaJitterTot/SlaJitte rCnt

sum(SlaJitterTot)/sum(Sl aJitterCnt)

SlaJitterMin

ms

The minimum value of JITTER.

Y

GAUGE

10 s

float

0~60*Period*10 00

-

min(SlaJitterMin)

SlaJitterMinCnt

count

The update count of SlaJitterMin.

Y

GAUGE

10 s

int

0~2147483647

-

-

SlaJitterMax

ms

The maximum value of JITTER.

Y

GAUGE

10 s

float

0~60*Period*10 00

-

max(SlaJitterMax)

SlaJitterMaxCnt

count

The update count of SlaJitterMax.

Y

GAUGE

10 s

int

0~2147483647

-

-

SlaJitterTot

ms

The total value of Average JITTER.

Y

SI

10 s

float

0~3.4*10^38

-

-

SlaJitterCnt

count

The update count of SlaJitterAvg.

Y

SI

10 s

int

0~2147483647

-

-

SlaMosAvg

count

The average value of MOS.

Y

GAUGE

10 s

float

0~3.4*10^38

SlaMosTot/SlaMos Cnt

sum(SlaMosTot)/sum(Sla MosCnt)

SlaMosMin

count

The minimum value of MOS.

Y

GAUGE

10 s

float

0~3.4*10^38

-

min(SlaMosMin)

SlaMosMax

count

The maximum value of MOS.

Y

GAUGE

10 s

float

0~3.4*10^38

-

max(SlaMosMax)

SlaMosTot

count

The total value of MOS.

Y

GAUGE

10 s

float

0~3.4*10^38

-

-

SlaMosCnt

count

The update count of

Y

GAUGE

10 s

int

0~2147483647

-

-

SlaDelayMax.

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Chapter 2 Counter Description Name

Unit

SlaLoss

count

SlaReordering

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

The total value of Loss.

Y

CC

10 s

int

0~2147483647

-

-

count

The total value of Reordering.

Y

CC

10 s

int

0~2147483647

-

-

SlaDuplicate

count

The total value of Duplicate.

Y

CC

10 s

int

0~2147483647

-

-

SlaTxPacket

count

The number of packets transmitted during the Test Duration.

Y

CC

10 s

int

0~2147483647

-

-

SlaSkip

count

The number of packets not received until Packet transmissions scheduled time+timeout.

Y

CC

10 s

int

0~2147483647

-

-

SlaAvailCnt

count

The number of periodic analysis.

Y

CC

10 s

int

0~2147483647

-

-

SlaUnavailCnt

count

The number of periodic analysis not received test packet.

Y

CC

10 s

int

0~2147483647

-

-

SlaLossRatioAvg

%

The average value of LOSS RATIO.

Y

GAUGE

10 s

float

0~100

SlaLossRatioTot/Sl aLossRatioCnt

sum(SlaLossRatioTot)/ sum(SlaLossRatioCnt)

SlaLossRatioMin

%

The minimum value of LOSS RATIO.

Y

GAUGE

10 s

float

0~100

-

min(SlaLossRatioMin)

SlaLossRatioMax

%

The maximum value of LOSS RATIO.

Y

GAUGE

10 s

float

0~100

-

max(SlaLossRatioMax)

SlaMosAvg.

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Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SlaLossRatioTot

count

The total value of LOSS RATIO.

Y

GAUGE

10 s

float

0~3.4*10^38

-

-

SlaLossRatioCnt

count

The update count of SlaLossRation Avg.

Y

GAUGE

10 s

int

0~2147483647

-

-

SlaConnectivity

%

The connectivity of SLA is calculated as (SlaTxPacketSlaLoss)/(SlaTxPac ket+SlaSkip)*100

Y

OW

period

float

0~100

(SlaTxPacketSlaLoss)/(SlaTxPac ket+SlaSkip)*100

(sum(SlaTxPacket)sum(SlaLoss))/(sum(SlaT xPacket)+sum(SlaSkip))* 100

SlaAvailability

%

The availability of SLA is calculated as (SlaAvailCnt)/ (SlaAvailCnt+SlaUn availCnt)*100

Y

OW

period

float

0~100

SlaAvailCnt/(SlaAv ailCnt+SlaUnavailC nt)*100

sum(SlaAvailCnt)/(sum(S laAvailCnt)+sum(SlaUna vailCnt))*100

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Chapter 2 Counter Description

VoLTE Handover Success Rate VoLTE Handover Success Rate Per QCI1 are calculated based on the VoLTE Handover (QCI1) statistics collected. Index Name

Description

cNum

Cell Id

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SumVoLTE_IntraEn bAtt

count

Total intra handover attempt count

-

CC

event

int

0~2147483647

-

-

SumVoLTE_IntraEn bPrepSucc

count

Total successful intra handover execution count

-

CC

event

int

0~2147483647

-

-

SumVoLTE_IntraEn bSucc

count

Total successful intra handover preparation count

-

CC

event

int

0~2147483647

-

-

VoLTE_IntraHoSucc essRate

%

VoLTE HO Intra Success rate

Y

OW

period

float

0~100

SumVoLTE_IntraEn bSucc/SumVoLTE_ IntraEnbAtt*100

sum(SumVoLTE_IntraEn bSucc)/sum(SumVoLTE_ IntraEnbAtt)*100

SumVoLTE_InterX2 OutAtt

count

Total X2 handover attempt count

-

CC

event

int

0~2147483647

-

-

SumVoLTE_InterX2 OutPrepSucc

count

Total successful X2 handover execution count

-

CC

event

int

0~2147483647

-

-

SumVoLTE_InterX2

count

Total successful X2

-

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

359

Chapter 2 Counter Description Name

Unit

OutSucc

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

handover preparation count

VoLTE_X2HoSucce ssRate

%

VoLTE HO X2 Success rate

Y

OW

period

float

0~100

SumVoLTE_InterX2 OutSucc/SumVoLT E_InterX2OutAtt*10 0

sum(SumVoLTE_InterX2 OutSucc)/sum(SumVoLT E_InterX2OutAtt)*100

SumVoLTE_InterS1 OutAtt

count

Total S1 handover attempt count

-

CC

event

int

0~2147483647

-

-

SumVoLTE_InterS1 OutPrepSucc

count

Total successful S1 handover execution count

-

CC

event

int

0~2147483647

-

-

SumVoLTE_InterS1 OutSucc

count

Total successful S1 handover preparation count

-

CC

event

int

0~2147483647

-

-

VoLTE_S1HoSucce ssRate

%

VoLTE HO S1 Success rate

Y

OW

period

float

0~100

SumVoLTE_InterS1 OutSucc/SumVoLT E_InterS1OutAtt*10 0

sum(SumVoLTE_InterS1 OutSucc)/sum(SumVoLT E_InterS1OutAtt)*100

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

360

Chapter 2 Counter Description

UE Category UE Category This section provides the statistics for the number of UE for each UE Category. The eNB performs a count by category of EMMRegistered UE. Index Name

Description

-

-

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

UECategory1

count

The number of UE for UECategory 1

Y

CC

event

int

0~2147483647

-

-

UECategory2

count

The number of UE for UECategory 2

Y

CC

event

int

0~2147483647

-

-

UECategory3

count

The number of UE for UECategory 3

Y

CC

event

int

0~2147483647

-

-

UECategory4

count

The number of UE for UECategory 4

Y

CC

event

int

0~2147483647

-

-

UECategory5

count

The number of UE for UECategory 5

Y

CC

event

int

0~2147483647

-

-

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Chapter 2 Counter Description

Scheduler Smart RRH Tx Power This section provides statistics data on Tx Power per RRH for Subcell configured by SMART SON through TPC. Index Name

Description

cNum

Cell Id

mcID

Subcell Index (displayed only for smart cell configuration; included in the statistics)

EarfcnDl

Cell Frequency(EARFCN DL)

Statistics Type Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

SmartSon_TxPower Avg

dBm

The Average value of Tx Power

Y

GAUGE

1s

float

-1000~1000

SmartSon_TxPow erTot/SmartSon_ TxPowerCnt

sum(SmartSon_TxPowerTot)/s um(SmartSon_TxPowerCnt)

SmartSon_TxPower Max

dBm

The Maximum value of Tx Power

Y

GAUGE

1s

float

-1000~1000

-

max(SmartSon_TxPowerMax)

SmartSon_TxPower Min

dBm

The Minimum value of Tx Power

Y

GAUGE

1s

float

-1000~1000

-

min(SmartSon_TxPowerMin)

SmartSon_TxPower Tot

dBm

The total sum of Tx Power

Y

GAUGE

1s

float

-1000~1000

-

-

SmartSon_TxPower Cnt

count

Number of times that the TxPower values

Y

GAUGE

1s

int

0~21474836 47

-

-

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362

Chapter 2 Counter Description Name

Unit

Description

Visible

Counter Type

Trigger Type

Data Type

Min/Max

Granularity Formula

Hourly, Daily, Monthly Formula

were collected

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Appendix A Acronyms AP ARQ AVG BH BHCAC BLER CAC CALLRSC CDMA CLI CPRI CQI CQIRSC CRC CS CSFB CSL DCCH DLUL DRB DRX DSCH DSP DTCH DTX EARFCN ECMB EMS ENB EPC EPS ERAB ETWA EUTRA EUTRAN GBR GPRS GTP GTPB GW LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Application Automatic Repeat Request Average Backhaul Backhaul Call Admission Control Block Error Rate Call Admission Control Call Resource Code Division Multiple Access Command Line Interface Common Public Radio Interface Channel Quality Indicator Channel Quality Indicator Resource Cyclic Redundancy Check Circuit Switched Circuit Switched Fallback Call Summary Log Dedicated Control Channel Downlink and Uplink Data Radio Bearer Discontinuous Reception Downlink Shared Channel Digital Signal Processing Dedicated Traffic Channel Discontinuous Transmission E-UTRA Absolute Radio Frequency Channel Number ENB Call Control Block Element Management System E-UTRAN NodeB Evolved Packet Core Evolved Packet System E-UTRAN Radio Access Bearer Earthquake and Tsunami Warning service Evolved-Universal Terrestrial Radio Access Evolved UTRAN Guaranteed Bit Rate General Packet Radio Services GPRS Tunneling Protocol GTP Block Gateway 364

Appendix A Acronyms

HARQ HC HFN HRPD IP KPI LBHO LSM LTE MAC MACB MCS MIMO MLB MME MRO MSGID NACK NAS OAM OOS OW PAG PDCB PDCCH PDCP PDN PDSCH PDU PHY PLD PLMN PMI PRB PUSCH QCI QOS RA RAB RACH RB RBID RCL RLC LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Hybrid ARQ High Capability Hyper Frame Number High Rate Packet Data Internet Protocol Key Performance Indicators Load Balancing Handover LTE System Manager Long Term Evolution Medium Access Control Medium Access Control Block Modulation and Coding Scheme Multiple Input Multiple Output Mobility Load Balancing Mobility Management Entity Mobility Robustness Optimization Message ID Negative Acknowledgement Non Access Stratum Operating And Management Out Of Service Overwrite Paging Packet Data Control Block Physical Download Control Channel Packet Data Convergence Protocol Packet Data Network Physical Downlink Shared Channel Packet Data Unit Physical Programmed Loadable Data Public Land Mobile Network Precoding Matrix Indicator Physical Resource Block Physical Uplink Shared Channel QoS Class Identifier Quality Of Service Radio Access Radio Access Bearer Random Access Channel Resource Block Resource Block ID Routing Control Layer Radio Link Control 365

Appendix A Acronyms

RLCB RLF RNC RNTI RNTP RRC RRH RRM RRU RSP RSSI SAE SCTP SDU SGSN SLR SRB STMSI TA TB TMSI TS TTI TTI UE UL UTRAN VPN WEEE

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

Radio Link Control Block Radio Link Fail Radio Network Controller Radio Network Temporary Identifier Relative Narrowband TX Power Radio Resource Control Remote RF Header Radio Resource Manager Remote RF Unit RNC Switch control Processor Received Signal Strength Indicator System Architecture Evolution Stream Control Transmission Protocol Service Data Unit Serving GPRS Support Node Samsung LTE Release Signaling Radio Bearer SAE Temporary Mobile Subscriber Identity Timing Alignment Transport Block Temporary Mobile Station Identify Technical Specification Transmission Time Interval Transmission Time Interval User Equipment Uplink UMTS Terrestrial Radio Access Network Virtual Private Network Waste Electrical and Electronic Equipment

366

Appendix B Index Range Explains the index used for each counter.

Parameters

Value Range

Description

MAX

MIN

PLMN

268435455

0

PLMN Id; mcc in the first three-digit numbers and mnc after the three-digit numbers

cNum

8

0

Cell Id

scID

268435455

0

Source Cell Id

tcID

268435455

0

Target Cell Id

NeighborCell

268435455

0

The identifier of NeighborCell which is the target of the handover problem (Cell Identity)

EstabCause

5

0

RRC Connection Establishment Cause  0: emergency (Emergency call connection)  1: highPriorityAccess (Access by the UE with a specific access class)  2: mt_Access (Access by the UE due to paging received)  3: mo_Signaling (Access by the UE due to attach)  4: mo_Data (Access by the UE due to service request)  5: delay_tolerant_access (Access by the delay tolerant access)

QCI

255

0

QoS Class Identifier

ReEstabCause

3

0

RRC Connection Re-establishment Cause  0: reconfigurationFailure (Re-establishment occurs due to reconfiguration failure)  1: handoverFailure (Re-establishment occurs due to handover failure)  2: otherFailure (Re-establishment occurs due to other failures)  3: reserved

mcID

17

0

Subcell Index (displayed only for smart cell configuration; included in the statistics)

CSFBIndicator

1

0

CSFB Indicator  0: Normal  1: High priority

SIBOwn

1

0

Indicates whether UTRAN SI information is included.  0: Not Included  1: Included

ShelfId

4

0

Shelf ID.

SlotId

5

0

The ID of the slot where the board is mounted.

PortNum

5

0

Number of the port connectable with an external device

QoSPortNum

7

0

Back-haul port number

DL Layer

4

1

Layer (data stream count)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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Appendix B Index Range Parameters

Value Range MAX

Description MIN    

1: 1 stream 2: 2 stream 3: 3 stream 4: 4 stream

codeword

1

0

Codeword (Transport block count)  0: First transport block  1: Second transport block

status

2

0

0: ACK, 1: NACK, 2: DTX

PRB

99

0

PRB Index

Path

1

0

Path in the RRH

LEVEL

9

0

IOT Level

Fa

1

0

The FA where the RRH provides service

sector

8

0

The Sector where the RRH provides service

BID

2

0

Board Id

RuPort

2

0

Ru Port Number

Cascade

0

0

Cascade ID

RuId

0

0

-

IIUID

1

0

IIU ID

FPGAID

2

0

FPGA ID

RSSIPath

7

0

RSSI Path ID

Step

3

1

Load Balancing Handover Triggering Step  1: LBHO within the same group and sector  2: LBHO between different groups but the same sector (the same eNB)  3: LBHO between different sectors

TxPowerPath

7

0

-

TargetEarfcnDl

268435455

0

target Neighbor Cell Frequency (EARFCN DL)

HOIndication

1

0

Upon performing the handover Information on classifying PS_CS, and CS_only

HOCause

1

0

Handover Cause  0: Handover desirable for radio reasons  1: reserved

VrId

0

0

Vrid in the VRConf PLD.

VlanId

268435455

0

dbIndex in the VlanConf PLD

gOS

4

0

In one cache server, 0 to 4 or up to five edge applications may be equipped.

relationIdx

255

0

RelationIdx value of the cell

CpuId

2

0

CPU ID

CoreId

15

0

CORE ID

VPNNum

11

0

VPN Number

IpVer

2

1

enum = IPv4 (1), IPv6 (2)

SrcIp

“ffff.ffff.ffff.ffff.f fff.ffff.ffff.ffff”

"0.0.0.0. 0.0.0.0."

Source IP address (IPv4/IPv6)

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

368

Appendix B Index Range Parameters

Value Range

Description

MAX

MIN

DestIp

“ffff.ffff.ffff.ffff.f fff.ffff.ffff.ffff”

"0.0.0.0. 0.0.0.0."

Destination IP address (IPv4/IPv6)

PktSize

8206

83

The test packet size of TWAMP Test.

PktPerSec

20000

1

Packets per second

UdpDscp

63

0

The UDP DSCP of TWAMP Test packet.

CallDropEstabCa use

6

0

RRC Connection Establishment Cause  0: emergency: Emergency call connection  1: highPriorityAccess: Access by the UE with a specific access class  2: mt_Access: Access by the UE due to paging received  3: mo_Signaling: Access by the UE due to attach  4: mo_Data: Access by the UE due to service request  5: delay_tolerant_access: Access by the delay tolerant access  6: relocated: Access by the UE due to handover

NbrEnbId

268435455

0

Neighbor ENB Id

EarfcnDl

268435455

0

Cell Frequency(EARFCN DL)

The constant in the formula are calculated as follows: Constant

Description

Value

K_UNIT

The constant value used in the unit conversion in the packet (Kbyte  byte)

1000

M_UNIT

The constant value used in the unit conversion in the packet (Mbyte  byte)

1000 × 1000

LTE eNB Counter Description for PKG 4.0.0 v1.0 © Samsung Proprietary and Confidential

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LTE eNB Counter Description for PKG 4.0.0 Document Version 1.0 © 2014 Samsung Electronics Co., Ltd. All rights reserved.

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