Huawei KPI Troubleshooting Guide
Huawei KPI Troubleshooting Guide
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     The cell SDCCH congestion information can get from NPMS software by path:
     http://10.225.199.144:8080/PNMS/peak-Detail
    The cell has congestion when you see the value on the counter SDCCH
    congestion. If the Cell has SDCCH congestion 4/7 days continuous than you
    must have to solution to clear this congestion.
    Case 1: The TU non half rate lower than 80%
    In this case, The load of cell is a little but the SD congestion exist. Using the
    Command LST GTRXCHAN to check how many SDCCH channel config on
    this cell and convert TCH channel to SDCCH channel to solve this problem.
    Case 2: The TU non half rate greater than 80%
    In this case, The load of cell is heavy. Some reason make cell heavy are more
    subscriber or near border LAC. You can upgrade more TRXs and config more
    SDCCHs channel or install co-site to solve this congestion.
2. TCR
 a. Formula
    TCR (%) = No Subscriber Perceived TCH Congestion(D-C)/No TCH Ass Att(D-
C)*100
 b. Counter on U2000
    K3021: Failed TCH Seizures due to Busy TCH (Signaling Channel)
    K3011A: Failed TCH Seizures due to Busy TCH (Traffic Channel)
    K3020: TCH Seizure Requests (Signaling Channel)
    K3010A: TCH Seizure Requests (Traffic Channel)
    No Subscriber Perceived TCH Congestion(D-C) = K3021+ K3011A
    No TCH Ass Att(D-C) = K3020+ K3010A
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     The cell has congestion when you see the value on the counter TCH congestion.
     If the Cell has TCH congestion 4/7 days continuous than you must have to
     solution to clear this congestion.
     In this case, If the TCH congestion of cell is a little, you can config HR 100%
     and convert fix PDTCH channel to TCH channel. When the load of cell is heavy
     (TU non half rate greater than 80%). The reason make cell heavy is more
     subscriber. You can upgrade more TRXs and config or install co-site to solve this
     congestion.
3. CDR
 a. Formula
     CDR (%) = No TCH Drop(D-C)/(No TCH Ass Succ(D-C)+No Incoming HO
Succ(D-C)-No Outgoing HO Succ(D-C))*100
 b. Counter on U2000
     CM33: Call Drop on Traffic Channel
     K3013A: Successful TCH Seizures (Traffic Channel)
     CH323: Successful Incoming Internal Inter-Cell Handovers
     CH343: Successful Incoming External Inter-Cell Handovers
     CH313: Successful Outgoing Internal Inter-Cell Handovers
     CH333: Successful Outgoing External Inter-Cell Handovers
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     - Call Drops due to Forced Handover (Traffic Channel): The system forces
       subscriber to handover to another cell. You need check the quality of cell by
       Quality map, the distance of subscriberby TA map.
    - Call Drops on TCH(TA): When you see more the call Drop from this counter
       it mean the position of subscriber is very far (more than 35km). So you must
       optimize the corverage of the cell. You can check corverage of cell by the TA
       map.
4. SDR
 a. Formula
    SDR (%) = No SDCCH Drop(D-C)/No SDCCH Ass Succ(D-C)*100
 b. Counter on U2000
    CM30: Call Drop on SDCCH
    K3003: Successful SDCCH Seizures
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    -   Due to CSSR relative with SDR and TCH Assigment Success so we need to
        define bad KPI CSSR from SDR or TCH Assigment Success. For
        troubleshooting SDR KPI you can refer to last explain. We have some
        reasons make TCH Assigment Success, TCH congestion is one of the reason,
        for troubleshooting TCR KPI refer to last explain. TCH Assigment Success
        reduce due to radio environment, You need to check interference, TA, rxlev
        for cell to solve this problem.
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6. HOSR
 a. Formula
    HOSR (%) = No Outgoing HO Succ(D-C)/No Outgoing HO Att(D-C)*100
 b. Counter on U2000
    CH313: Successful Outgoing Internal Inter-Cell Handover
    CH333: Successful Outgoing External Inter-Cell Handover
    CH311: Outgoing Internal Inter-Cell Handover Commands
    CH331: Outgoing External Inter-Cell Handover Commands
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Part 2: KPI 3G
1. CS RAB CR
 a. Formula
     CS RAB CR (%) = No CS RAB Congestion/No CS RAB Attempt*100
 b. Processing information on system
     The CS congestion information can get from U2000 software by templet
     “Congestion”
    Explain counter:
    - VS.RAB.FailEstCS.Code.Cong: The congestion due to code congestion,
       when the Cell supplies service for many subscribers so the code tree not
       enough resource to assign for subscriber. You can change the corverage of
       cell congestion or neighbor cell to share together. If the cell congestion has
       only F1, you can upgrade new F2 for this cell to solve the congestion.
    - VS.RAB.FailEstCS.DL.Power.Cong: The congestion due to downlink power,
       the solution in this case is same solution for code congestion.
    - VS.RAB.FailEstCS.UL.Power.Cong: Congestion due to uplink power, the
       solution in this case is same solution for code congestion.
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     Explain counter:
     - VS.RAB.FailEstPS.Code.Cong: The congestion due to code congestion,
        when the Cell supplies service for many subscribers so the code tree not
        enough resource to assign for subscriber. You can change the corverage of
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         cell congestion or neighbor cell to share together. If the cell congestion has
         only F1, you can upgrade new F2 for this cell to solve the congestion.
      - VS.RAB.FailEstPS.DL.Power.Cong: The congestion due to downlink power,
         the solution in this case is same solution for code congestion.
      - VS.RAB.FailEstPS.UL.Power.Cong: Congestion due to uplink power, the
         solution in this case is same solution for code congestion.
      - VS.RAB.FailEstPS.DLCE.Cong: Congestion due to DL CE (Channel
         Element) not enough resource. The CE has supplied by WBBP, when you see
         this congestion, you must insert more WBBPs.
      - VS.RAB.FailEstPS.ULCE.Cong: Congestion due to UL CE (Channel
         Element) not enough resource. The CE has supplied by WBBP, when you see
         this congestion, you must insert more WBBPs.
      - VS.RAB.FailEstab.PS.DLIUBBand.Cong: Congestion due to bandwidth of
         transmisstion is limited. In this case, You must expand the transmisstion
         capacity.
      - VS.RAB.FailEstab.PS.ULIUBBand.Cong: Congestion due to bandwidth of
         transmisstion is limited. In this case, You must expand the transmisstion
         capacity.
      - VS.RAB.FailEstab.PS.HSDPAUser.Cong: The congestion due to the
         subscriber request HSDPA service more than the subscriber config on system.
         You can check how many subscriber config on system by LST UCELLCAC.
         In this case, you must expand the value config on system to solve this
         problem.
      - VS.RAB.FailEstab.PS.HSUPAUser.Cong: The congestion due to the
         subscriber request HSDPA service more than the subscriber config on system.
         You can check how many subscriber config on system by LST UCELLCAC.
         In this case, you must expand the value config on system to solve this
         problem.
3. CS CSSR
    a. Formula
       CS CSSR (%) = (CS RRC SR*CS RAB SR)/100
   With:
       CS RRC SR (%) = CS RRC Succ/CS RRC Att*100
       CS RAB SR (%) = CS RAB Succ/CS RAB Att*100
    b. Processing information on system
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         You can get RRC Failed and CS RAB Failed information from U2000 as
below:
     RRC is failed: You can get information from “RRC analyse” on U2000
     Explain counter:
     - VS.RRC.Rej.Sum: This counter calculate all RRC failed of cells.
     - VS.RRC.Rej.RL.Fail: This counter calculate all RRC failed of cells due to
        Radio link. When you see this counter, you have to check quality radio
        environment.
     - VS.RRC.Rej.TNL.Fail: This counter calculate all RRC failed of cells due to
        quality of the transmission.
     - VS.RRC.FailConnEstab.Cong: This counter calculate all RRC failed of cells
        due to congestion. Depend on type of congestion you will have situation
        solution.
     - VS.RRC.Rej.Code.Cong: The RRC is rejected due to code resource. You can
        change the corverage of cell congestion or neighbor cell to share together. If
        the cell congestion has only F1, you can upgrade new F2 for this cell to solve
        the congestion.
     - VS.RRC.Rej.ULIUBBand.Cong: The RRC is rejected due to Iub congestion.
        You must expand the transmisstion capacity.
     - VS.RRC.Rej.DLIUBBand.Cong: The RRC is rejected due to Iub congestion.
        You must expand the transmisstion capacity.
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CS RAB Failed: You can get information from “CS RAB analyse” on U2000
Explain counter:
- VS.RAB.FailEstabCS.UuFail: The CS RAB is failed due to Uu interface
   (Radio link). you have to check quality radio environment.
- VS.RAB.FailEstabCS.SRBReset: The CS RAB is failed due to SRB
   (Signalling Radio Bearer) reset. When the radio environment has problem, the
   SRB will reset to reconnect signalling.
- VS.RAB.FailEstabCS.Cong: This counter calculate all RAB failed of cells
   due to congestion. Depend on type of congestion you will have situation
   solution.
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Explain counter:
- VS.RAB.FailEstabPS.UuFail: The PS RAB is failed due to Uu interface
   (Radio link). you have to check quality radio environment.
- VS.RAB.FailEstabPS.SRBReset: The PS RAB is failed due to SRB
   (Signalling Radio Bearer) reset. When the radio environment has problem, the
   SRB will reset to reconnect signalling.
- VS.RAB.FailEstabPS.CellUpd: This counter calculate all PS RAB failed but
   not supported by system.
- VS.RAB.FailEstabPS.Cong: This counter calculate all RAB failed of cells
   due to congestion. Depend on type of congestion you will have situation
   solution.
- VS.RAB.FailEstabPS.Code.Cong: The PS RAB is failed due to code
   resource. You can change the corverage of cell congestion or neighbor cell to
   share together. If the cell congestion has only F1, you can upgrade new F2 for
   this cell to solve the congestion.
- VS.RAB.FailEstabPS.DLCE.Cong: The PS RAB is failed due to CE
   congestion. The CE has supplied by WBBP, when you see this congestion,
   you must insert more WBBPs.
- VS.RAB.FailEstabPS.ULCE.Cong: The PS RAB is failed due to CE
   congestion. The CE has supplied by WBBP, when you see this congestion,
   you must insert more WBBPs.
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      Explain counter:
      - VS.SHO.AttRLAdd: This counter count how many times UE add new radio
         link for soft handover.
      - VS.SHO.AttRLDel: This counter count how many times UE delete radio link
         for soft handover.
      - No SHO Attempt: This counter is sum of VS.SHO.AttRLAdd and
         VS.SHO.AttRLDel.
      - VS.SHO.SuccRLA: This counter count how many times UE add success new
         radio link for soft handover.
      - VS.SHO.SuccRLDel: This counter count how many times UE delete success
         radio link for soft handover.
      - No SHO Success: This counter is sum of VS.SHO.SuccRLA and
         VS.SHO.SuccRLDel
      When the cell has bad SHOSR KPI, You need to check relation cell to cell and
      add more if missing neighbor.
6. CS CDR
    a. Formula
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 Explain counter:
 - VS.RAB.AbnormRel.CS: This counter calculate all CS RAB abnormal
    release of cells.
 - VS.RAB.AbnormRel.CS.RF: Number of CS RABs abnormally released due
    to RF for cell(The RF failure includes radio connection with UE lost and
    failure in the radio interface procedure). You must check the quality of cell,
    relation cell to cell, corverage of cell, RTWP.
 - VS.RAB.AbnormRel.CS.RF.SRBReset: Number of CS RABs abnormally
    released due to signaling RLC reset(Fault over Iu:Radio connection with UE
    lost). You have to check radio environment to solve this problem.
 - VS.RAB.AbnormRel.CS.RF.UuNoReply: Number of CS RABs abnormally
    released due to UU interface Fail(Failure in the Radio Interface Procedure).
    You must check the quality of cell, relation cell to cell, corverage of cell,
    RTWP.
 - VS.RAB.AbnormRel.CS.RF.ULSync: Number of CS RABs abnormally
    released due to Uplink Synchronization Fail(radio connection with UE lost).
    In this case, You must check the quality of cell, relation cell to cell, corverage
    of cell, RTWP.
 - VS.RAB.AbnormRel.CS.OM: Number of CS RAB abnormal released due to
    OM Intervention for Cell.
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     Explain counter:
     - VS.RAB.AbnormRel.PS: This counter calculate all PS RAB abnormal release
        of cells.
     - VS.RAB.AbnormRel.PS.RF: Number of PS RABs abnormally released due
        to RF for cell(The RF failure includes radio connection with UE lost and
        failure in the radio interface procedure). You must check the quality of cell,
        relation cell to cell, corverage of cell, RTWP. Some time PS RAB abnormal
        release due to UE error.
     - VS.RAB.AbnormRel.PS.RF.SRBReset: Number of PS RABs abnormally
        released due to signaling RLC reset(Fault over Iu:Radio connection with UE
        lost). You have to check radio environment to solve this problem.
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