LG Electronics USA 3G1XINBTS STAREX-IS 1900 Indoor BTS User Manual STAREX IS User s Manual

LG Electronics USA STAREX-IS 1900 Indoor BTS STAREX IS User s Manual

Users Manual Part B

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STAREX-IS BSM Manual
Fig. 4.3-27 Forward Link Power Management Information (RS2) Verification
SMD-011-PMA210
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4.3.2.6. Backward
Verification
Link
Power
Management
Information
(RS2)
Rate Set 2 transmits data at the speed of 14400,7200,3600,1800 bps. Input the
following command to check the parameter information for RS2 Backward Link Power
Management. Among the input values, FER (Frame Error Rate) has the value ranging
from 0.5%, 1 to 5%.
• Command DIS-RS2-REVP: BSC=a, BTS=b, FER=c;
a : BSC Number(0~11)
b: BTS Number(0~47)
c:FER
(POINT_5/PERCENT_1/PERCENT_2/PERCENT_3/PERCENT_4/PERCET_5)
• Input DIS-RS2-REVP: BSC=0, BTS=0, FER=POINT_5;
• Output
SMD-011-PMA210
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Fig. 4.3-28 Backward Link Power Management Information (RS2) Verification
SMD-011-PMA210
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4.3.2.7. Service Option FER Verification
Target FER can be designated by the Service Option. Input the following command to
display this information. In the next display, 1% Target FER is applied for the "8K
VOICE" Service Option and for this, the following power management information is
used: RS1 forward link power management information, RS1 backward link power
management information, RS2 forward link power management information, and RS2
backward (or reverse-direction) link power management information.
• Command
DIS-FER-PARA: BSC=a;
a : BSC Number(0~11)
• Input
DIS-FER-PARA: BSC=0;
• Output
SMD-011-PMA210
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Fig. 4.3-29 Service Option FER Verification
SMD-011-PMA210
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4.3.2.8. MAHHO Verification
• Command
DIS-MAHH-PARA: BSC=a, BTS=b, SECT=c;
a : BSC Number(0~11)
b: BTS Number(0~47)
c: Sector Id .(ALPHA/BETA/GAMMA)
• Input DIS-MAHH-PARA: BSC=0,BTS=0,SECT=ALPHA;
• Output
Fig. 4.3-30 MAHHO Verification
SMD-011-PMA210
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4.3.2.9. LOCATION Verification
• Command DIS-LOC-PARA: BSC=a, BTS=b, SECT=c;
a : BSC Number(0~11)
b: BTS Number(0~47)
c: Sector Id .(ALPHA/BETA/GAMMA)
• Input DIS-LOC-PARA: BSC=0,BTS=0,SECT=ALPHA;
• Output
Fig. 4.3-31 LOCATION Verification
SMD-011-PMA210
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4.3.2.10. SCH Verification
• Command
DIS-SCH-PARA: BSC=a, BTS=b, SECT=c;
a : BSC Number(0~11)
b: BTS Number(0~47)
c: Sector Id .(ALPHA/BETA/GAMMA)
• Input
DIS-SCH-PARA: BSC=0,BTS=0,SECT=ALPHA;
• Output
Fig. 4.3-32 SCH Verification
SMD-011-PMA210
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4.3.2.11. Power Control Data Verification
• Command DIS-PWR-CTRL: BSC=a, BTS=b, FER=c;
a : BSC Number(0~11)
b: BTS Number(0~47)
c: FER (0~30)
• Input DIS-PWR-CTRL: BSC=0, BTS=0,FER=0;
• Output
SMD-011-PMA210
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Fig. 4.3-33 Power Control Data Verification
SMD-011-PMA210
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4.3.2.12. BTS Name Display
Input the following command to display the BTS name:
• Command
DIS-BTS-NAME: BSC=a, BTS=b;
a : BSC Number(0~11)
b: BTS Number(0~47)
• Input DIS-BTS-NAME: BSC=0, BTS=0;
• Output
Fig. 4.3-34 BTS Name Display
SMD-011-PMA210
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4.3.2.13. PCP Timer Information Verification
• Command
DIS-PCF-TIMER:PCP =a;
a : PCP Number(0~2)
• Input DIS-PCF-TIMER: PCP=0;
• Output
Fig. 4.3-35 PCP Timer Information Verification
SMD-011-PMA210
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4.3.2.14. PCF Parameter Information Verification
• Command
DIS-PCF-PARA :PCP =a;
a : PCP Number(0~2)
• Input DIS-PCF-PARA: PCP=0;
• Output
Fig. 4.3-36 PCF Parameter Information Verification
SMD-011-PMA210
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4.3.2.15. PCF MAC ADDRESS Information Verification
• Command
DIS-PCF-MAC :PCP =a;
a : PCP Number(0~2)
• Input
DIS-PCF-MAC: PCP=0;
• Output
Fig. 4.3-37 PCF MAC ADDRESS Information Verification
SMD-011-PMA210
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4.3.3. NETWORK
Information
Display
(Display_Parameter_Information_3)
4.3.3.1. CAN ATM NODE Information Display
• Command
DIS-CAN-NODE;
• Output
SMD-011-PMA210
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Fig. 4.3-38 CAN ATM NODE Information Display
SMD-011-PMA210
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4.3.3.2. CAN PVC SETTING Information Display
• Command
• Input
DIS-CAN-PVC;NODE_A=a;
DIS-CAN-PVC: NODE_A=BSM_A;
a: BSM_A,BSM_B, BSC (0~11)
• Output
Fig. 4.3-39 CAN PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.3. CAN NETWORK PARAMETER Information Display
• Command
• Input
DIS-CAN-NETP;
DIS-CAN-NETP;
• Output
Fig. 4.3-40 CAN NETWORK PARAMETER Information Display
SMD-011-PMA210
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4.3.3.4. CAN INTER BSC AAL2 Setting Information Display
• Command
DIS-CAN-IUR:BSC=a;
a:BSC Number (0~11)
• Input
DIS-CAN-IUR:BSC=0;
• Output
Fig. 4.3-41 CAN INTER BSC AAL2 Setting Information Display
SMD-011-PMA210
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4.3.3.5. CAN INTER BSC AAL5 Setting Information Display
• Command
DIS-CAN-BSC;
• Output
Fig. 4.3-42 CAN INTER BSC AAL5 Setting Information Display
SMD-011-PMA210
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4.3.3.6. CAN ATM NODE Information Display
• Command
DIS-CPN-NODE;
• Output
Fig. 4.3-43 CAN ATM NODE Information Display
SMD-011-PMA210
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4.3.3.7. PCF ATM NODE Information Display
• Command
DIS-PCF-NODE
• Output
Fig. 4.3-44 PCF ATM NODE Information Display
SMD-011-PMA210
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4.3.3.8. CAN PVC SETTING Information Display
• Command
DIS-CPN-PVC
• Output
Fig. 4.3-45 CAN PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.9. CAN PCF PVC SETTING Information Display
• Command
DIS-PCF-PVC
• Output
Fig. 4.3-46 CAN PCF PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.10. CPN METWORK PARAMETER Information Display
• Command
DIS-CPN-NETP
• Output
Fig. 4.3-47 CPN METWORK PARAMETER Information Display
SMD-011-PMA210
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4.3.3.11. CPN DATA AAL2/5 Connection Information Display
• Command
DIS-CPN-DATA;
• Output
Fig. 4.3-48 CPN DATA AAL2/5 Connection Information Display
SMD-011-PMA210
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4.3.3.12. CPN PCF AAK2/5 Connection Information Display
• Command
DIS-CPN-PCF;
• Output
Fig. 4.3-49 CPN PCF AAK2/5 Connection Information Display
SMD-011-PMA210
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4.3.3.13. BSC ATM NODE Information Display
• Command
DIS-BSC-NODE: BSC=a;
a: BSC Number (0~11)
• Input DIS-BSC-NODE: BSC=0;
• Output
Fig. 4.3-50 BSC ATM NODE Information Display
SMD-011-PMA210
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4.3.3.14. SLB ATM NODE Information Display
• Command
DIS-SLB-NODE: BSC=a;
a: BSC Number (0~11)
• Input
DIS-SLB-NODE: BSC=0;
• Output
Fig. 4.3-51 SLB ATM NODE Information Display
SMD-011-PMA210
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4.3.3.15. VCB
• Command
ATM
NODE Information Display
DIS-VCB-NODE: BSC=a;
a: BSC Number (0~11)
• Input
DIS-VCB-NODE: BSC=0;
• Output
Fig. 4.3-52 VCB
SMD-011-PMA210
ATM
NODE Information Display
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4.3.3.16. ALB ATM NODE Information Display
‘
• Command
DIS-ALB-NODE: BSC=a;
a: BSC Number (0~11)
• Input DIS-ALB-NODE: BSC=0;
• Output
Fig. 4.3-53 ALB ATM NODE Information Display
SMD-011-PMA210
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4.3.3.17. BTS ATM NODE Information Display
• Command
DIS-BTS-NODE: BSC=a ,BTS=b;
a: BSC Number (0~11)
b: BTS Number (0~47)
• Input DIS-BSC-NODE: BSC=0,BTS=0;
• Output
Fig. 4.3-54 BTS ATM NODE Information Display
SMD-011-PMA210
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4.3.3.18. BSC-BTS TRUNK Information Display
• Command
DIS-TRNK-DATA: BSC=a;
a: BSC Number (0~11)
• Input DIS-TRNK-DATA: BSC=0;
• Output
Fig. 4.3-55 BSC-BTS TRUNK Information Display
SMD-011-PMA210
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4.3.3.19. BSC PVC SETTING Information Display
• Command
DIS-BSC-PVC: BSC=a,NODE_A=b;
a: BSC Number (0~11)
b: NCP_A, NCP_B, CCP_A, CCP_B, ALMA0_0 , ALMA0_1, ALMA1_0 ,
ALMA1_1,CAN,CPN,ALP
• Input DIS-BSC-PVC: BSC=0,NODE_A=NCP_A;
• Output
SMD-011-PMA210
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Fig. 4.3-56 BSC PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.20. BSC SLB PVC SETTING Information Display
• Command
DIS-SLB-PVC: BSC=a;
a: BSC Number (0~11)
• Input
DIS-SLB-PVC: BSC=0;
• Output
Fig. 4.3-57 BSC SLB PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.21. BSC VCB PVC SETTING Information Display
• Command
DIS-VCB-PVC: BSC=a;
a: BSC Number (0~11)
• Input
DIS-VCB-PVC: BSC=0;
• Output
Fig. 4.3-58 BSC VCB PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.22. BSC ALB PVC SETTING Information Display
• Command
DIS-ALB-PVC: BSC=a;
a: BSC Number (0~11)
• Input
DIS-ALB-PVC: BSC=0;
• Output
Fig. 4.3-59 BSC ALB PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.23. BTS LOCAL PVC SETTING Information Display
• Command
DIS-BTS-LPVC: BSC=a;
a: BSC Number (0~11)
• Input
DIS-BTS-LPVC: BSC=0;
• Output
Fig. 4.3-60 BTS LOCAL PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.24. BTS OUTER PVC SETTING Information Display
• Command
DIS-BTS-OPVC: BSC=a, BTS=b;
a: BSC Number (0~11)
b: BTS Number(0~47)
• Input
DIS-BTS-OPVC: BSC=0, BTS=0;
• Output
Fig. 4.3-61 BTS OUTER PVC SETTING Information Display
SMD-011-PMA210
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4.3.3.25. BSC NETWORK PARAMETER Information Display
• Command
DIS-BSC-NETP: BSC=a;
a: BSC Number (0~11)
• Input
DIS-BSC-NETP: BSC=0;
• Output
Fig. 4.3-62 BSC NETWORK PARAMETER Information Display
SMD-011-PMA210
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4.3.3.26. BSC ALP NETWORK PARAMETER Information Display
• Command
DIS-ALS-NETP: BSC=a;
a: BSC Number (0~11)
• Input
DIS-ALS-NETP: BSC=0;
• Output
Fig. 4.3-63 BSC ALP NETWORK PARAMETER Information Display
SMD-011-PMA210
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4.3.3.27. BSC INTER BSC AAL2 Information Display
• Command
DIS-BSC-IUR: BSC=a;
a: BSC Number (0~11)
• Input DIS-BSC-IUR: BSC=0;
• Output
Fig. 4.3-64 BSC INTER BSC AAL2 Information Display
SMD-011-PMA210
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4.3.3.28. BSC INTER BTS AAL2 Information Display
• Command
DIS-BSC-IUB: BSC=a, BTS=b;
a: BSC Number (0~11)
b: BTS Number(0~47)
• Input
DIS-BSC-IUB: BSC=0, BTS=0;
• Output
Fig. 4.3-65 BSC INTER BTS AAL2 Information Display
SMD-011-PMA210
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4.3.3.29. BSC INTER CAN AAL2/5 Information Display
• Command
DIS-BSC-CAN: BSC=a;
a: BSC Number (0~11)
• Input
DIS-BSC-CAN: BSC=0;
• Output
Fig. 4.3-66 BSC INTER CAN AAL2/5 Information Display
SMD-011-PMA210
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4.3.3.30. BSC INTER SLB AAL5 Information Display
• Command
DIS-BSC-SLB: BSC=a;
a: BSC Number (0~11)
• Input
DIS-BSC-SLB: BSC=0;
• Output’
Fig. 4.3-67 BSC INTER SLB AAL5 Information Display
SMD-011-PMA210
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4.3.3.31. BSC INTER VCB AAL5 Information Display
• Command
DIS-BSC-VCB: BSC=a;
a: BSC Number (0~11)
• Input
DIS-BSC-VCB: BSC=0;
• Output
Fig. 4.3-68 BSC INTER VCB AAL5 Information Display
SMD-011-PMA210
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4.3.3.32. BSC INTER ALB AAL5 Information Display
• Command
DIS-BSC-ALB: BSC=a;
a: BSC Number (0~11)
• Input
DIS-BSC-ALB: BSC=0;
• Output
Fig. 4.3-69 BSC INTER ALB AAL5 Information Display
SMD-011-PMA210
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4.3.3.33. BTS NETWORK PARAMETER Information Display
• Command
DIS-BTS-NETP: BSC=a ,BTS=b;
a: BSC Number (0~11)
b: BTS Number (0~47)
• Input DIS-BTS-NETP: BSC=0,BTS=0;
• Output
Fig. 4.3-70 BTS NETWORK PARAMETER Information Display
SMD-011-PMA210
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4.3.3.34. BTS INTER BTS AAL2 Information Display
• Command
DIS-BTS-IUB: BSC=a ,BTS=b;
a: BSC Number (0~11)
b: BTS Number (0~47)
• Input
DIS-BTS-IUB: BSC=0,BTS=0;
• Output
Fig. 4.3-71 BTS INTER BTS AAL2 Information Display
SMD-011-PMA210
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4.3.3.35. BTS INTER RCU AAL5 Information Display
• Command
DIS-BTS-RCU: BSC=a ,BTS=b;
a: BSC Number (0~11)
b: BTS Number (0~47)
• Input DIS-BTS-RCU: BSC=0,BTS=0;
• Output
Fig. 4.3-72 BTS INTER RCU AAL5 Information Display
SMD-011-PMA210
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4.3.4. Parameter
Information
Change
Command
(Change_Parameter_Information_1)
This section describes commands that are used to change the parameter information
that is inquired. The command to change parameter information cannot be easily input
by the keyboard since input parameter counts are too many. For this reason, this
section will skip the command input in Text and demonstrate window input by mouse.
Upon inputting the command, the part in blue is the parameter that the user can change
and the user can change part or entire fields among them. For details of each
parameter that is input, refer to Appendix.
SMD-011-PMA210
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Table 4.3-1 Parameter Data Change Command (1) List
2201
CHG-BTS-DATA
BTS parameter data change
2202
CHG-SECT-DATA
SECTOR Parameter data change
2203
CHG-CHAN-DATA
CDMA CHANNEL parameter data Change
2205
CHG-SYS1-PARA
SYSTEM PARAMETER(1) change
2206
CHG-SYS2-PARA
SYSTEM PARAMETER(2) change
2207
CHG-EXT1-SYS
EXTENDED SYSTEM PARAMETER(1) change
2208
CHG-EXT2-SYS
EXTENDED SYSTEM PARAMETER(2) change
2209
ADD-NGBR-DATA
Addition of Neighbor cell data
2210
RMV-NGBR-DATA
Deletion of Neighbor cell data
2211
CHG-NGBR-DATA
Neighbor cell data change
2213
CHG-NGBR-BCON
HOPPING BEACON PARAMETER change
2214
CHG-QOS-PARA
QOS parameter data change
2216
CHG-CHIP-PWR
Chip Power Control data change
2222
CHG-TIC-DATA
TIC parameter data change
2223
CHG-SECT-CHAN
Sector CDMA Channel change
2224
CHG-PWR-PARA
Power control parameter data change
2225
CHG-AC-PARA
ACCESS CHANNEL parameter information change
2226
CHG-TXMS-PARA
TXMS parameter data change
2227
START-BTS-CALB
BTS CALIBRATION start
2229
CHG-GSRM-PARA
PC GLOBAL REDIRECT parameter change
2230
CHG-ACC-PARA
ACCESS PARAMETER change
2232
CHG-PC-PARA
PAGING CHANNEL parameter data change
2233
CHG-PICH-PARA
PILOT CHANNEL parameter data change
2236
CHG-SC-PARA
SYNC CHANNEL parameter data change
2238
CHG-QPC-PARA
QUICH PAGING CHANNEL parameter data change
2239
CHG-BCON-PARA
SMD-011-PMA210
HOPPING PILOT BEACON CHANNEL parameter data
change
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4.3.4.1. BTS Parameter Information Change
To
change
the
BTS
parameter
information,
click
CDM->Change_Parameter_
Information->Change BTS Data on the Command Window in order and input the value
that the command wants to change in each field.
• Command CHG-BTS-DATA :BSC=a ,BTS=b [,SID=c] [,NID=d] [,BASE_ID=e]
[,BASE_CLASS=f] [,REG_ZONE=g] [,LTM_OFF=h]
[,DAY_LT=i] [,BASE_LAT=j] [,BASE_LONG=k]
[,TUB_ENC=l] [,REV_PWR=m];
• Input CHG-BTS-DATA :BSC=0 ,BTS=0 ,SID=3333;
• Output
SMD-011-PMA210
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Fig. 4.3-73
BTS Parameter Information Display
4.3.4.2. Sector Parameter Information Change
To change the sector parameter information, click CDM->Change_Parameter_
Information_1-> CHG-SECT-DATA on the Command Window in order. If the next
input window is displayed, then input the value to be changed.
• Command
CHG-SECT-DATA :BSC=a ,BTS=b ,SECT=c [,PN=d]
[,CNTL_PARA=e] ;
• Input CHG-SECT-DATA :BSC=0 ,BTS=0 ,SECT=ALPHA ,PN=40;
• Output
Fig. 4.3-74 Sector Parameter Information Change
SMD-011-PMA210
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4.3.4.3. CDMA Channel Parameter Information Change
To change the CDMA parameter information, click CDM->Change_Parameter_
Information_1-> CHG-CHAN-DATA on the Command Window in order. If the next
input window is displayed, then input the value to be changed.
• Command CHG-CHAN-DATA :BSC=a ,BTS=b ,CDMACH=c
[,FREQ_BAND=d] [,CH_NUM=e] [,TCE_4HO=f] [,MAX_SCH=g];
• Input CHG-CHAN-DATA :BSC=0,BTS=0 ,CDMACH=0 ,FREQ_BAND=2222;
• Output
Fig. 4.3-75 CDMA Channel Parameter Information Display
SMD-011-PMA210
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4.3.4.4. SYSTEM PARAMETER(1) Change
To
change
the
system
parameter
message,
click
CDM->
Change_Parameter_Information_1-> CHG-SYS1-PARA on the Command Window in
order. As the System Parameter Message have many elements, they are divided into
the three commands. The output format for each command is the same.
• Command CHG-SYS1-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d [,TOT_ZONE=e]
[,ZONE_TIME=f] [,MULT_SIDS=g] [,MULT_NIDS=h]
[,REP_THSH=i] [,REP_FRAM=j] [,SRCH_WINA=k]
[,SRCH_WINN=l] [,SRCH_WINR=m] [,NGHB_MAGE=n] [,T_ADD=o]
[,T_DROP=p] [,T_COMP=q] [,T_TDRP=r];
• Input CHG-SYS1-PARA :BSC=0,BTS=0 ,SECT=ALPHA,CDMACH=0,TOT_ZONE=5
• Output
SMD-011-PMA210
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Fig. 4.3-76 System Parameter Change(1) Display
4.3.4.5. SYSTEM
4.3.4.6. PARAMETER(2) Change
To
change
the
system
parameter
message,
click
CDM->
Change_Parameter_Information_1-> CHG-SYS2-PARA on the Command Window in
order. Since the System Parameter Message have many elements, they are divided
into three commands. The output format for each command is the same.
• Input CHG-SYS2-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d [,HOME_REG=e]
[,MAX_SCI=f] [,NID_REG=g] [,SID_REG=h] [,PARM_REG=i] [,REG_PRD=j]
[,REG_DIST=k] [,PWR_UP=l] [,PWR_DOWN=m]
[,THSH_EABL=n] [,PRID_EABL=o] [,REP_DELY=p]
[,RE_SCAN=q] [,EXT_SYS=r] [,EXT_NGHBR=s] [,GEN_NGHBR=t]
[,REDIRECT=u] [,PRI_NGHBR=v] [,USER_ZONE=w]
[,EXT_REDIRECT=x] [,EXT_CHAN=y] ;
• Output CHG-SYS2-PARA :BSC=0 ,BTS=0,SECT=ALPHA ,CDMACH=0,
HOME_REG=MANUAL;
• Display
SMD-011-PMA210
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Fig. 4.3-77 System Parameter Change(2) Display
SMD-011-PMA210
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4.3.4.7. EXTENDED SYSTEM PARAMETER(1) Change
To
change
the
Extended
System
Parameter
Message,
click
CDM->
Change_Parameter_Information_1-> CHG-EXT1-SYS on the Command Window in
order. If the next input window is displayed, then input the value to be changed.
• Change CHG-EXT1-SYS :BSC=a ,BTS=b ,SECT=c ,CDMACH=d [,PREF_MSID=e]
[,MCC=f] [,IMSI_11_12=g] [,TMSI_LEN=h]
[,TMSI_ZONE_1=i] [,TMSI_ZONE_2=j] [,TMSI_ZONE_3=k]
[,TMSI_ZONE_4=l] [,TMSI_ZONE_5=m]
[,TMSI_ZONE_6=n] [,TMSI_ZONE_7=o]
[,TMSI_ZONE_8=p] [,BCAST_IDX=q] [,SOFT_SLOPE=r]
[,ADD_INT=s] [,DROP_INT=t] [,NGBR_SET=u]
[,ACCESS_HO=v] [,HO_MSG_RSP=w] [,ACC_PRB_HO=x] [,PRB_HO_OT=y] ;
• Input
CHG-EXT1-SYS :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0 ,
PREF_MSID=IMSI;
• Output
SMD-011-PMA210
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Fig. 4.3-78 Extended System Parameter Change(1) Display
SMD-011-PMA210
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4.3.4.8. EXTENDED SYSTEM PARAMETER(2) Change
To
change
the
Extended
System
Parameter
Message,
click
CDM->
Change_Parameter_Information_1-> CHG-EXT2-SYS on the Command Window in
order. If the next input window is displayed, then input the value to be changed.
•
Command
CHG-EXT2-SYS
:BSC=a
,BTS=b
,SECT=c
,CDMACH=d
[,IMSI_T_SUPRT=e]
[,P_REV=f] [,MIN_P_REV=g] [,MAX_ALT_SO=h]
[,RESEL_INCL=i] [,EC_THRESH=j]
[,EC_IO_THRESH=k] [,PILOT_REPORT=l]
[,NGBR_SET_INF=m] [,ACC_HO_ORD=n] [,HO_LIST_UPD=o]
[,MAX_PRB_HO=p] [,BRD_GPS_ASS=q] [,QPC_SUPPORT=r] [,NUM_QPCH=s]
[,QPCH_RATE=t] [,QPC_PWR_LEV=u] [,QPC_CCI=v] [,QPC_PWR_CFG=w]
[,SDB_SUPPORT=x] [,MAC_CF_SPRT=y] [,RLGAIN_PICH=z];
• Input CHG-EXT2-SYS :BSC=0 ,BTS=0,SECT=ALPHA ,CDMACH=,IMSI_T_SUPRT=1;
• Output
SMD-011-PMA210
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Fig. 4.3-79 Extended System Parameter Change(2) Display
SMD-011-PMA210
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4.3.4.9. Neighbor Cell Information Addition
To add the neighbor list, click the CDM->Change_Parameter_Information_1-> ADDNGBR-DATA on the Command Window in order. If the next input window is displayed,
then input the values to be changed.
• Command
ADD-NGBR-DATA :BSC=a ,BTS=b ,SECT=c ,INDEX=d ,NGBR_CNFG=e
,NGBR_PN=f ,NGBR_SID=g ,NGBR_NID=h ,NGBR_BASE=i ,NGBR_MSC=j
,NGBR_BSC=k ,NGBR_BTS=l ,NGBR_SECT=m ,NGBR_MSC_T=n
,NGBR_BSC_T=o,NGBR_BCON=p ,SRCH_PRIO=q
,FREQ_INCL=r [,NGBR_BAND=s] [,NGBR_FREQ=t]
[,TIME_INCL=u] [,TX_OFFSET=v] [,TX_DURATION=w] [,TX_PERIOD=x]
[,SRCH_SET=y] [,ADD_PICH_REC=z] [,PICH_REC=] [,OTD_PWR=]
[,SRCH_OFFSET=] [,ACC_HO=] [,ACC_HO_ALW=];
• Input ADD-NGBR-DATA :BSC=0 ,BTS=0 ,SECT=ALPHA ,INDEX=0 ,NGBR_CNFG=0
,NGBR_PN=0 ,NGBR_SID=0 ,NGBR_NID=0 ,NGBR_BASE=0 ,NGBR_MSC=0
,NGBR_BSC=0 ,NGBR_BTS=0 ,NGBR_SECT=ALPHA ,NGBR_MSC_T=LG_MSC
,NGBR_BSC_T=LG_BSC,NGBR_BCON=NO ,SRCH_PRIO=LOW
,FREQ_INCL=NO,NGBR_BAND=Mhz_800;
• Output
SMD-011-PMA210
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Fig. 4.3-80 Neighbor Cell Addition Display
4.3.4.10. Neighbor Cell Information Deletion
To delete the neighbor list, click CDM->Change_Parameter_Information_1-> RMVNGBR-DATA on the Command Window in order. If the next window is displayed, then
input the sector and PN value of the sector to be deleted.
• Command
• Input
RMV-NGBR-DATA :BSC=a ,BTS=b ,SECT=c ,NGBR_PN=d;
RMV-NGBR-DATA :BSC=0 ,BTS=0 ,SECT=ALPHA ,NGBR_PN=0;
• Output
Fig. 4.3-81 Neighbor Cell Information Deletion Display
SMD-011-PMA210
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4.3.4.11. Neighbor Cell Information Change
To change the neighbor list, click CDM->Change_Parameter_Information_1-> CHGNGBR-DATA on the Command Window in order. If the next input Window is displayed,
input the sector and the PN value of the sector to be deleted.
•
Command
CHG-NGBR-
DATA :BSC=a ,BTS=b ,SECT=c ,NGBR_PN=d ,NEW_INDEX=e
• Input
• Output
SMD-011-PMA210
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4.3.4.12. HOPPING BEACON PARAMETER Change
To change Hopping Beacon Parameter, click CDM->Change_Parameter_Information_1> CHG-NGBR-BCON on the Command Window in order.
•
Command
CHG-NGBR-BCON
:BSC=a
,BTS=b
,SECT=c
,CDMACH=d
[,NGBR_SRCH=e]
[,USE_TIMING=f] [,G_TIME_INCL=g] [,G_TX_DURATE=h]
[,G_TX_PERIOD=i] [,SRCH_OFF_INC=j] ;
• Input CHG-NGBR-BCON :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0 ,
NGBR_SRCH=255;
• Output
Fig. 4.3-82 Hopping Beacon Parameter Change Display
SMD-011-PMA210
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4.3.4.13. QOS Parameter Change
To
change
Quality
Of
Service
parameter
>Change_Parameter_Information_1-> CHG-QOS-PARA
information,
click
CDM-
on the Command Window in
order.
• Command CHG-QOS-PARA :BSC=a ,BTS=b [,MAX_SCH_RATE=c];
• Input CHG-QOS-PARA :BSC=0 ,BTS=0,MAX_SCH_RATE=255;
• Output
Fig. 4.3-83 QOS Parameter Information Change Display
SMD-011-PMA210
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4.3.4.14. Chip Power Control Information Change
To
change
Chip
Power
Control
information,
click
CDM-
>Change_Parameter_Information_1-> CHG-CHIP-PWR on the Command Window in
order.
• Command
CHG-CHIP-PWR :BSC=a ,BTS=b [,CH_PWR0=c] [,CH_PWR1=d]
[,CH_PWR2=e]
[,CH_PWR3=f] [,MIN_GAIN0=g] [,MIN_GAIN1=h] [,MIN_GAIN2=i]
[,MIN_GAIN3=j][,MAX_GAIN0=k] [,MAX_GAIN1=l] [,MAX_GAIN2=m]
[,MAX_GAIN3=n] [,STEP_UP_SIZE=o]
[,STEP_DN_SIZE=p]
[,FPC_PUNC=q] [,RPC_PUNC=r] [,PWR_CNT_PNT=s] [,PWR_CNT_PTN=t] ;
• Input CHG-CHIP-PWR :BSC=0 ,BTS=0 ,CH_PWR0=255;
• Output
SMD-011-PMA210
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Fig. 4.3-84 Chip Power Control Information Change Display
4.3.4.15. TIC Parameter Change
To change Tx Gain value, click CDM->Change_ Parameter_Information_1-> CHGTIC-DATA on the Command Window in order. If the next input window is displayed,
then input the value to be changed.
• Command
CHG-TIC-DATA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d [,TX_GAIN=e] ;
• Input CHG-TIC-DATA :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0 ,TX_GAIN=255 ;
• Output
SMD-011-PMA210
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Fig. 4.3-85 TIC Parameter Information Change Display
SMD-011-PMA210
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4.3.4.16. OCNS Parameter Change
To change OCNS Parameter value,
click CDM->Change_ Parameter_Information_1->
CHG-OCNS-PARA on the Command Window in order. If the next input Window is
displayed, then input the value to be changed.
•
Command
CHG-OCNS-PARA
:BSC=a
,BTS=b
,SECT=c
,CDMACH=d
[,OCNS_ENABLE=e]
[,NUM_OCNS_CH=f] [,OCNS_TEST=g] [,OCNS_SO=h];
• Input CHG-OCNS-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,
CDMACH=0 ,OCNS_ENABLE=DISABLE,NUM_OCNS_CH=2;
• Output
Fig. 4.3-86 OCNS Parameter Change Display
SMD-011-PMA210
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4.3.4.17. Power Control Information Change
To change OCNS Parameter value,
click CDM->Change_ Parameter_Information_1->
CHG-PWR-PARA on the Command Window in order. If the next input Window is
displayed, then input the value to be changed.
•
Command
CHG-PWR-PARA
:BSC=a
,BTS=b
,SECT=c
,CDMACH=d
[,T_RX_FILTER=e]
[,G_RX_FILTER=f] [,G_TX_FILTER=g] [,GH_TX_FILTER=h]
[,R_TX_PILOT=i] [,FLN_BLK_THSH=j]
[,FLN_HO_THSH=k]
[,FLN_GAIN_SCA=l] [,RLN_BLK_THSH=m] [,RLNK_HO_THSH=n]
[,A_TX_MAX=o]
[,DELTA_A_TX=p] [,K_LEVEL=q] [,K_SLOPE=r]
[,K_DELTA=s] [,DELTA_T=t]
[,P_TX_MAX=u] [,INIT_CALB=v]
[,PRD_CALIB=w] [,BREATH_FLAG=x] [,PWR_EST_FLAG=y]
[,OVPWR_LMT=z] [,FLN_CAP_LMT=] [,RLN_CAP_LMT=];
• Input CHG-PWR-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0,
T_RX_FILTER=255;
• Output
SMD-011-PMA210
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Fig. 4.3-87 Power Control Parameter Information Display
SMD-011-PMA210
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4.3.4.18. ACCESS CHANNEL Parameter Information Change
To
change
Access
Channel
Parameter
information,
click
CDM->
Change_
Parameter_Information->CHG-AC-PARA on the Command Window in order. If the
next input window is displayed, then input the value to be changed.
• Command
CHG-AC-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d ,PC=e
,AC=f [,SRCH_OFFSET=g] [,SRCH_WIN_SZ=h];
• Input CHG-AC-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,
CDMACH=0 , PC=0, SRCH_WIN_SZ=32;
• Output
Fig. 4.3-88
SMD-011-PMA210
Access Channel Parameter Information Change Display
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4.3.4.19. TXMS Parameter Information Change
To
change
TXMS
Parameter
information,
click
CDM->
Change_
Parameter_Information->CHG-TXMS-PARA on the Command Window in order. If the
next input window is displayed, then input the value to be changed.
•Command
CHG-TXMS-
PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d ,OH_CH_ERP=e ;
• Input CHG-TXMS-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0 ,
OH_CH_ERP=25000 ;
• Output
Fig. 4.3-89 TXMS Parameter Information Change Display
SMD-011-PMA210
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4.3.4.20. BTS CALIBRATION Start
To start BTS Calibration, click CDM-> Change_ Parameter_Information->STARTBTS-CALB on the Command Window in order. If the next input window is displayed,
then input the value to be changed.
•
Command
START-BTS-CALB
[,CDMACH=d] ,METHOD=e
:BSC=a
,BTS=b
[,SECT=c]
• Input START-BTS-CALB :BSC=0 ,BTS=0 ,SECT=ALPHA,METHOD=OVHD ;
• Output
Fig. 4.3-90 BTS Calibration Start Display
SMD-011-PMA210
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4.3.4.21. BTS Calibration Time Change
To change BTS Calibration time, click CDM-> Change_ Parameter_Information->CHGCALB-TIME on the Command Window in order. If the next input window is displayed,
then input the value to be changed.
• Command CHG-CALB-DATA :BSC=a ,BTS=b ,HOUR=c ,MINUTE=d ,INTERVAL=e
,METHOD=f;
• Input CHG-CALB-DATA :BSC=0 ,BTS=0 ,HOUR=1 ,MINUTE=1 ,INTERVAL=1
,METHOD=OVHD;
• Output
Fig. 4.3-91 BTS Calibration Time Change Display
SMD-011-PMA210
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4.3.4.22. PC GLOBAL REDIRECT Parameter Information Change
To change Paging Channel Global Redirect information, click CDM-> Change_
Parameter_Information->CHG-GSRM-PARA on the Command Window in order. If the
next input window is displayed, then input the value to be changed.
•
Command
CHG-GSRM-PARA
:BSC=a
,BTS=b
,SECT=c
[,ACCOLC=d]
[,RET_IF_FAIL=e]
[,P_REV_MS=f] [,RDIR_P_REV=g] [,EXCL_P_REV=h] [,RDIR_P_MIN=i]
[,RDIR_P_MAX=j]
[,RECORD_TYPE=k] [,RECORD_LEN=l]
[,EXPECT_A_SID=m] [,IGNORE_CDMA=n] [,SYS_ORDER=o]
[,BAND_CLASS=p] [,EXPECT_SID=q] [,EXPECT_NID=r] [,NUM_CHAN=s]
[,CDMA_CH_0=t]
[,CDMA_CH_1=u] [,CDMA_CH_2=v]
[,CDMA_CH_3=w] [,CDMA_CH_4=x] [,CDMA_CH_5=y]
[,CDMA_CH_6=z] [,CDMA_CH_7=] [,CDMA_CH_8=] [,CDMA_CH_9=];
• Input CHG-GSRM-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA,ACCOLC=255;
• Output
SMD-011-PMA210
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Fig. 4.3-92 PC Global Redirect Parameter Information Change Display
SMD-011-PMA210
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4.3.4.23. ACCESS PARAMETER Change
To
change
Access
Parameter
information,
click
CDM->
Change_
Parameter_Information->CHG-ACC-PARA on the Command Window in order. If the
next input window is displayed, then input the value to be changed.
•
Command CHG-ACC-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d ,PC=e
[,NOM_PWR=f] [,INIT_PWR=g] [,PWR_STEP=h] [,NUM_STEP=i]
[,MAX_CAP_SZ=j]
[,PAM_SZ=k] [,PSST_09=l] [,PSST_10=m]
[,PSST_11=n] [,PSST_12=o]
[,PSST_13=p] [,PSST_14=q]
[,PSST_15=r] [,MSG_PSST=s] [,REG_PSST=t]
[,PRBE_RAN=u] [,ACC_TMO=v] [,PRBE_BKOF=w] [,BKOF=x]
[,MREQ_SEQ=y]
[,MRSP_SEQ=z] [,AUTH=] [,RAND=]
[,NOM_PWR_EXT=];
• Input CHG-ACC-PARA :BSC=0 ,BTS=0,SECT=ALPHA ,CDMACH=0 ,PC=0
,NOM_PWR=7;
• Output
SMD-011-PMA210
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Fig. 4.3-93 Access Parameter Information Change Display
SMD-011-PMA210
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4.3.4.24. PAGING CHANNEL Parameter Information Change
To
change
Paging
Channel
Parameter
information,
click
CDM->
Change_
Parameter_Information->CHG-PC-PARA on the Command Window in order. If the next
input window is displayed, then input the value to be changed.
• Command CHG-PC-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d ,PC=e
[,PC_GAIN=f] [,FRM_DUR=g] [,DATA_RATE=h];
• Input CHG-PC-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0 ,PC=0
,PC_GAIN=255;
• Output
Fig. 4.3-94 Paging Channel Parameter Information Display
SMD-011-PMA210
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4.3.4.25. PILOT CHANNEL Parameter Information Change
To
change
Pilot
Channel
Parameter
information,
click
CDM->
Change_
Parameter_Information->CHG-PICH-PARA on the Command Window in order. If the
next input window is displayed, then input the value to be changed.
• Command CHG-PICH-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d [,PLOT_GAIN=e]
[,PLOT_TD_GAIN=f];
• Input CHG-PICH-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,
CDMACH=0,PLOT_GAIN=255;
• Output
Fig. 4.3-95 Pilot Channel Parameter Information Change Display
SMD-011-PMA210
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4.3.4.26. SYNC CHANNEL Parameter Information Change
To
change
Sync.
Channel
Parameter
information,
click
CDM->
Change_
Parameter_Information->CHG-SC-PARA on the Command Window in order. If the next
input window is displayed, then input the value to be changed.
• Command CHG-SC-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d [,SC_GAIN=e];
• Input
CHG-SC-PARA :BSC=0 ,BTS=b ,SECT=ALPHA ,CDMACH=0,SC_GAIN=255;
• Output
Fig. 4.3-96 Sync Channel Parameter Information Change Display
SMD-011-PMA210
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4.3.4.27. QUICH PAGING CHANNEL Parameter Information Change
To change Quick Paging Channel Parameter information, click CDM-> Change_
Parameter_Information->CHG-QPC-PARA on the Command Window in order. If the
next input window is displayed, then input the value to be changed.
• Command CHG-QPC-PARA :BSC=a ,BTS=b ,SECT=c ,CDMACH=d ,QPCH_ID=e
[,FRAME_DUR=f] [,DATA_RATE=g];
• Input CHG-QPC-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,CDMACH=0 ,QPCH_ID=0
,FRAME_DUR=255;
• Output
Fig. 4.3-97 Quick Paging Channel Parameter Information Change Display
SMD-011-PMA210
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4.3.4.28. HOPPING PILOT BEACON CHANNEL Parameter Information
Change
To change Hopping Pilot Beacon Channel Parameter information, click CDM->
Change_ Parameter_Information->CHG-BCON-PARA on the Command Window in
order. If the next input window is displayed, then input the value to be changed.
• Command CHG-BCON-PARA :BSC=a ,BTS=b ,SECT=c [,PILOT_GAIN=d]
[,NUM_CDMA_CH=e]
[,CDMA_FREQ1=f] [,CDMA_FREQ2=g]
[,CDMA_FREQ3=h] [,CDMA_FREQ4=i] [,CDMA_FREQ5=j]
[,CDMA_FREQ6=k] [,CDMA_FREQ7=l] [,CDMA_FREQ8=m]
[,CDMA_FREQ9=n] [,CDMA_FREQ10=o]
[,CDMA_FREQ11=p] [,CDMA_FREQ12=q];
• Input CHG-BCON-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA ,PILOT_GAIN=255;
• Output
Fig. 4.3-98 Hopping Pilot Beacon Channel Parameter Information Change Display
SMD-011-PMA210
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4.3.4.29. CDMA Channel FA Test Start
To start the CDMA Channel FA test, click CDM-> Change_ Parameter_Information>STRT-FA-TEST on the Command Window in order. If the next input window is
displayed, then input the value to be changed.
• Command STRT-FA-TEST :BSC=a ,BTS=b ,FA=c;
• Input STRT-FA-TEST :BSC=0 ,BTS=0 ,FA=0;
• Output
Fig. 4.3-99 CDMA Channel FA Test Start Display
4.3.4.30. Termination of CDMA Channel FA Test
To stop the CDMA Channel FA test, click CDM-> Change_ Parameter_Information>STOP-FA-TEST on the Command Window in order. If the next input window is
displayed, then input the value to be changed.
• Command STOP-FA-TEST :BSC=a ,BTS=b ,FA=c;
• Input STOP-FA-TEST :BSC=0,BTS=0 ,FA=0;
SMD-011-PMA210
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• Output
Fig. 4.3-100 CDMA Channel FA Test Termination Display
SMD-011-PMA210
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4.3.5. Parameter
Information
Change
Command
(Change_Parameter_Information_2)
This section describes commands that are used to change the parameter information
that is inquired (required). The command to change parameter information cannot be
easily input by the keyboard since input parameter counts are too many. For this
reason, this section will skip the command input in text and demonstrate window input
by mouse. Upon inputting the command, the part in blue is the parameter that the user
can change and the user can change part or entire fields among them. For more
information on parameters for each command, refer to the test procedures.
Table 4.3-2 Parameter Information Change Command (2) List
CRN
MMC
Description
2240
CHG-DORM-DATA
Dormant Timer Change
2241
CHG-PKZN-DATA
PACKET ZONE DATA Change
2243
CHG-FAC-TIMER
FACILITIES MANAGEMENT TIMER Change
2244
CHG-HO-TIMER
HANDOFF TIMER Change
2245
CHG-SUP-TIMER
BSC SUPPLEMENT SERVICES TIMER Change
2246
CHG-CALL-TIMER
BSC CALL PROCESSING TIMER Change
2247
CHG-MOB-TIMER
BSC MOBILITY MANAGEMENT TIMER Change
2248
CHG-A89-TIMER
A8 A9 INTERFACE TIMER Change
2249
CHG-A37-TIMER
A3, A7 INTERFACE TIMER Change
2250
CHG-RS1-FWDP
2251
CHG-RS1-REVP
2255
CHG-RS2-FWDP
2256
CHG-RS2-REVP
2257
CHG-FER-PARA
Service Option FER Change
2261
CHG-MAHO-DATA
MAHHO DATA change
2262
CHG-LOC-PARA
LOCATION PARA information change
2263
CHG-SCH-PARA
SCH parameter information change
2265
CHG-PWR1-CTRL
POWER CONTROL parameter information (1) change
SMD-011-PMA210
Forward Link Power Management Information (RS1)
change
Backward (or Reverse) Link Power Management
Information (RS1) change
Forward Link Power Management Information (RS2)
change
Backward (or Reverse) Link Power Management
Information (RS2) change
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2266
CHG-PWR2-CTRL
POWER CONTROL parameter information (2) change
2267
CHG-PWR3-CTRL
POWER CONTROL parameter information (3) change
2271
CHG-BTS-NAME
BTS name change
2292
CHG-PCF-TIMER
PCF TIMER change
2294
CHG-PCP-ADDR
PCP/PMP ADDRESS change
2295
CHG-PIP-ADDR
PIP ADDRESS change
2296
CHG-PCF-PARA
PCF PARAMETER change
4.3.5.1. Dormant Timer Change
To change Dormant Timer, click CDM->Change_Parameter_ Information_2-> CHGDORM-DATA on the Command Window in order. Input the value to be changed in each
field.
• Command CHG-DORM-DATA :BSC=a [,DORMANT_T=b] [,INACTIVE_T=c]
[,BAND_FRAME_T=d] [,BAND_CLASS=e] ;
• Input CHG-DORM-DATA :BSC=0,DORMANT_T=255;
• Command
SMD-011-PMA210
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Fig. 4.3-101 Dormant Timer Change Display
4.3.5.2. PACKET ZONE DATA Change
To change PACKET ZONE DATA, click CDM->Change_Parameter_ Information_2->
CHG-PKZN-DATA on the Command Window in order. Input the value to be changed in
each field as shown below.
• Command
CHG-PKZN-DATA :BSC=a [,PKT_ZONE=b] [,PCP_ID=c];
• Input CHG-PKZN-DATA :BSC=0,PKT_ZONE=255;
• Output
Fig. 4.3-102 Packet Zone Data Change Display
SMD-011-PMA210
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4.3.5.3. FACILITIES MANAGEMENT TIMER Change
To change FACILITIES MANAGEMENT TIMER, click CDM->Change_Parameter_
Information_2-> CHG-FAC-TIMER on the Command Window in order. Input the value
to be changed in each field as shown below.
• Command CHG-FAC-TIMER :BSC=a [,T1=b] [,T2=c] [,T4=d] [,T5=e]
[,T6=f] [,T12=g] [,T13=h] [,T16=i] [,T309=j];
• Input CHG-FAC-TIMER :BSC=0,T1=255;
• Output
Fig. 4.3-103 Facilities Management Timer Change Display
SMD-011-PMA210
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4.3.5.4. HANDOFF TIMER Change
To change HANDOFF TIMER, click CDM->Change_Parameter_ Information_2-> CHGHO-TIMER on the Command Window in order. Input the value to be changed in each
field as shown below.
• Command CHG-HO-TIMER :BSC=a [,T7=b] [,T9=c] [,T10=d] [,T50=e]
[,T52=f] [,T777=g] [,T778=h] [,T787=i] [,T789=j]
[,T790=k];
• Input CHG-HO-TIMER :BSC=0,T7=255;
• Output
FIG 4.3-104
SMD-011-PMA210
Handoff Timer Change Display
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4.3.5.5. BSC SUPPLEMENT SERVICES TIMER Change
To change BSC SUPPLEMENT SERVICES TIMER, click CDM->Change_Parameter_
Information_2-> CHG-SUP-TIMER on the Command Window in order. Input the value
to be changed in each field as shown below.
• Command CHG-SUP-TIMER :BSC=a [,T60=b] [,T61=c] [,T62=d] [,T63=e] ;
• Input CHG-SUP-TIMER :BSC=0,T60=99;
• Output
Fig. 4.3-105 BSC Supplement Services Timer Change Display
SMD-011-PMA210
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4.3.5.6. BSC CALL PROCESSING TIMER Change
To change BSC
CALL
PROCESSING
TIMER,
click
CDM->Change_Parameter_
Information_2-> CHG-CALL-TIMER on the Command Window in order. Input the value
to be changed in each field as shown below.
• Command CHG-CALL-TIMER :BSC=a [,T20=b] [,T30=c] [,T40=d] [,T300=e]
[,T301=f] [,T302=g] [,T303=h] [,T306=i] [,T307=j]
[,T308=k] [,T311=l] [,T312=m] [,T313=n] [,T315=o]
[,T316=p] [,T325=q] [,T326=r] [,T3113=s] [,T3230=t]
[,T3280=u] [,Tpaca1=v] [,Tpaca2=w];
• Input CHG-CALL-TIMER :BSC=0,T20=99;
• Output
Fig. 4.3-106 BSC Call Processing Timer Change Display
SMD-011-PMA210
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4.3.5.7. BSC MOBILITY MANAGEMENT TIMER Change
To change BSC MOBILITY MANAGEMENT TIMER, click CDM->Change_Parameter_
Information_2-> CHG-MOB-TIMER on the Command Window in order. Input the value
to be changed in each field as shown below.
•
Command
CHG-MOB-TIMER
:BSC=a
[,T3210=b]
[,T3220=c]
[,T3240=d]
[,T3260=e]
[,T3270=f] [,T3271=g] [,T3272=h];
• Input CHG-MOB-TIMER :BSC=0,T3210=99;
• Output
Fig. 4.3-107 BSC Mobility Management Timer Change Display
SMD-011-PMA210
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4.3.5.8. A8 A9 INTERFACE TIMER Change
To
change
A8
A9
INTERFACE
TIMER,
click
CDM->Change_Parameter_
Information_2_2-> CHG-A89-TIMER on the Command Window in order. Input the
value to be changed in each field as shown below.
• Command CHG-A89-TIMER :BSC=a [,TA8_SETUP=b] [,Talc9=c] [,Tald9=d]
[,Trel9=e];
• Input CHG-A89-TIMER :BSC=0,TA8_SETUP=99;
• Output
Fig. 4.3-108 A8 A9 INTERFACE TIMER Change
SMD-011-PMA210
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4.3.5.9. A3, A7 INTERFACE TIMER Change
To
change
A3
A7
INTERFACE
TIMER,
click
CDM->Change_Parameter_
Information_2_2-> CHG-A37-TIMER on the Command Window in order. Input the
value to be changed in each field as shown below.
• Command CHG-A37-TIMER :BSC=a [,Tacm=b] [,Tbstact=c] [,Tbsccom=d]
[,Tchanstat=e] [,Tconn3=f] [,Tdiscon3=g] [,Tdrptgt=h] [,Ttgtrmv=i]
[,Thoreq=j] [,Tpcm=k] [,Tphysical=l];
• Input CHG-A37-TIMER :BSC=0,Tacm=1000;
• Output
Fig. 4.3-109 A3, A7 INTERFACE TIMER Change
SMD-011-PMA210
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4.3.5.10. Forward Link Power Management Information (RS1) Change
To
change
forward
link
power
management
information
(RS1),
click
CDM-
>Change_Parameter_ Information_2_2-> CHG-RS1-FWDP on the Command Window in
order. Input the value to be changed in each field as shown below.
•
Command
CHG-RS1-FWDP
:BSC=a
,BTS=b
,FER=c
[,SLOW_TIME=d]
[,FAST_TIME=e]
[,STEP_FAST=f] [,SLOW_DLTA=g] [,FAST_DLTA=h] [,NOM_GAIN=i]
[,MAX_TC_GAIN=j]
[,MIN_TC_GAIN=k] [,FER_THRE=l]
[,BGUP_DLTA=m] [,SMLL_DLTA=n] [,SIGL_DLTA=o]
[,DLTA_GAN1=p] [,DLTA_GAN2=q] [,DLTA_GAN3=r];
• Input CHG-RS1-FWDP :BSC=0 ,BTS=0 ,FER=POINT_5,SLOW_TIME=20000;
• Output
SMD-011-PMA210
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Fig. 4.3-110 Forward Link Power Management Information (RS1) Change
4.3.5.11. Backward Link Power Management Information (RS1) Change
To change Backward link power management information (RS1), click CDM>Change_Parameter_ Information_2_2-> CHG-RS1-REVP on the Command Window in
order. Input the value to be changed in each field as shown below.
• Command
CHG-RS1-REVP :BSC=a ,BTS=b ,FER=c [,PNOM=d] [,PMAX=e]
[,PMIN=f] [,PUPF=g] [,PFRR=h] [,PUPE=i] [,PUPEL=j]
[,PD=k] [,PVD=l] [,PFW=m] [,PERL=n];
• Input CHG-RS1-REVP :BSC=0 ,BTS=0 ,FER=POINT_5,PNOM= 255;
• Output
Fig. 4.3-111 Backward Link Power Management Information (RS1) Change
SMD-011-PMA210
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4.3.5.12. Forward Link Power Management Information (RS2) Change
To change Forward link power management information (RS2), click CDM>Change_Parameter_ Information_2_2-> CHG-RS2-FWDP on the Command Window in
order. Input the value to be changed in each field as shown below.
•
Command
CHG-RS2-FWDP
:BSC=a
,BTS=b
,FER=c
[,IN_DWNT=d]
[,MAX_DWNT=e]
[,MIN_DWNT=f] [,TDWN_DLT=g] [,TUP_DLT=h] [,STT_THS=i]
[,ERA_MSR=j]
[,CONT_ERA=k] [,CUMU_ERA=l] [,NOM_GAIN=m]
[,MAX_TX_GAIN=n] [,MIN_TX_GAIN=o]
[,GAIN_DWN=p]
[,BIG_UP=q] [,SMALL_UP=r] [,SIGL_DLT=s] [,DLT_GAN1=t]
[,DLT_GAN2=u] [,DLT_GAN3=v];
• Input CHG-RS2-FWDP :BSC=0 ,BTS=0 ,FER=POINT_5,IN_DWNT=255;
• Output
SMD-011-PMA210
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Fig. 4.3-112 Forward Link Power Management Information (RS2) Change
4.3.5.13. Backward Link Power Management Information (RS2) Change
To change Backward link power management information (RS2), click CDM>Change_Parameter_ Information_2_2-> CHG-RS2-REVP on the Command Window in
order. Input the value to be changed in each field as shown below.
• Command CHG-RS2-REVP :BSC=a ,BTS=b ,FER=c [,PNOM=d] [,PMAX=e]
[,PMIN=f] [,RBUD=g] [,RSUD=h] [,RNEW=i] [,RMAXDD=j]
[,RMINDD=k] [,RDDIS=l] [,RCONTEE=m] [,RCUMULEE=n] [,REMF=o]
[,RSCT=p];
• Input CHG-RS2-REVP :BSC=0 ,BTS=0 ,FER=POINT_5,PNOM=255;
• Output
SMD-011-PMA210
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Fig. 4.3-113 Backward Link Power Management Information (RS2) Change
SMD-011-PMA210
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4.3.5.14. Service Option FER Change
To change Service Option FER, click CDM->Change_Parameter_ Information_2_2->
CHG-FER-PARA on the Command Window in order. Input the value to be changed in
each field as shown below.
• Command
CHG-FER-DATA :BSC=a [,VOICE_8K=b] [,LOOPBK_8K=c] [,EVRC=d]
[,ASYNC=e]
[,LOOPBK_13K=j]
[,G3FAX=f] [,SMS=g] [,PPP_PKT=h] [,CDPP_PKT=i]
[,STU_TR=k] [,STU_NTR=l] [,ASYNC_13K=m]
[,G3FAX_13K=n] [,SMS_13K=o]
[,VOICE_13K=p] [,IS96_VOICE=q]
[,MARKOV_8K=r] [,DATA=s] [,IS96A_1BY8=t]
[,MARKOV_13K=u] [,WLL_OFFHOOK=v] [,RS1_MARKOV=w]
[,RS2_MARKOV=x] [,FCH=y]
[,SCH=z] [,DCCH=] [,SCH_LB=] [,SCH_LB2=];
• Input CHG-FER-DATA :BSC=0,VOICE_8K=P_5;
• Output
SMD-011-PMA210
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Fig. 4.3-114 Service Option FER Change
SMD-011-PMA210
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4.3.5.15. MAHHO DATA Change
To change MAHHO DATA, click the CDM->Change_Parameter_ Information_2->
CHG-MAHO-DATA on the Command Window in order. Input the value to be changed
in each file as shown below.
• Command
CHG-MAHO-DATA :BSC=a ,BTS=b ,SECT=c [,BORDER_FLAG=d]
[,BD_CLS=e]
[,NUM_CHAN=f] [,CDMA_FREQ0=g] [,CDMA_FREQ1=h] [,CDMA_FREQ2=i]
[,CDMA_FREQ3=j]
[,CDMA_FREQ4=k] [,CDMA_FREQ5=l]
[,CDMA_FREQ6=m] [,CDMA_FREQ7=n] [,CDMA_FREQ8=o]
[,CDMA_FREQ9=p] [,CDMA_FREQ10=q] [,CDMA_FREQ11=r] [,STET=s]
[,STEIT=t]
[,DRPT=u] [,MIN_TOT=v] [,CF_T_ADD=w]
[,TF_WAIT_TIME=x] [,SRCH_N=y]
[,SRCH_R=z];
• Input CHG-MAHO-DATA :BSC=0 ,BTS=0 ,SECT=ALPHA,BORDER_FLAG=ON;
• Output
SMD-011-PMA210
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Fig. 4.3-115 MAHHO DATA Change
SMD-011-PMA210
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4.3.5.16. LOCATION PARA Information Change
To
change
LOCATION
PARA
information,
click
CDM->Change_Parameter_
Information_2-> CHG-LOC-PARA on the Command Window in order. Input the value
to be changed in each field as shown below.
•
Command
CHG-LOC-PARA
:BSC=a
[,PUF_ST_SZ=e][,PUF_P_SZ=f]
,BTS=b
,SECT=c
[,ACT_T_FRM=d]
[,PUF_INTERVAL=g]
[,PUF_I_PWR=h]
[,PUF_P_STEP=i] [,TOT_PUF_P=j] [,MAX_PWR_PUF=k];
• Input CHG-LOC-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA,ACT_T_FRM=ON;
• Output
Fig. 4.3-116 LOCATION PARA Information Change
SMD-011-PMA210
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4.3.5.17. SCH Parameter Information Change
To change SCH PARA information, click CDM->Change_Parameter_ Information_2->
CHG-SCH-PARA on the Command Window in order. Input the value to be changed in
each field as shown below.
•
Command
CHG-SCH-PARA
:BSC=a
,BTS=b
,SECT=c
[,SCH_T_ADD=d]
[,SCH_T_DROP=e]
[,T_MULCHAN=f] [,BEGIN_PRMBL=g] [,RES_PRMBL=h]
[,PS_MIN_DELTA=i] [,ORD_INTERVAL=j]
[,NUM_PILOTS=k]
[,PRD_INTERVAL=l] [,FLOOR_HIGH=m] [,FLOOR_LOW=n]
[,PS_CEIL_HIGH=o]
[,PS_CEIL_LOW=p] [,THSH_INTERVAL=q]
[,T_SLOTTED=r];
• Input CHG-SCH-PARA :BSC=0 ,BTS=0 ,SECT=ALPHA,SCH_T_ADD=ON;
• Output
Fig. 4.3-117 SCH Parameter Information Change
SMD-011-PMA210
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4.3.5.18. POWER CONTROL Parameter Information (1) Change
To
change
POWER
CONTROL
Parameter
information
(1),
click
CDM-
>Change_Parameter_ Information_2-> CHG-PWR1-CTRL on the Command Window in
order. Input the value to be changed in each field as shown below.
• Command
CHG-PWR1-CTRL :BSC=a ,BTS=b ,FER=c [,PWR_CNT_STEP=d]
[,FPC_MODE=e]
[,FPC_FC_INIT=f] [,FPC_FC_MIN=g]
[,FPC_FCH_MAX=h] [,FPC_DCC_INIT=i] [,FPC_DCC_MIN=j]
[,FPC_DCC_MAX=k] [,FPC_SC_INIT=l] [,FPC_SC_MIN=m]
[,FPC_SC_MAX=n]
[,FPC_THRESH=o]
[,FCH_THSH_SC=p] [,FCH_ADJ_GAIN=q]
[,DCC_ADJ_GAIN=r] [,SC0_ADJ_GAIN=s] [,SC1_ADJ_GAIN=t]
[,FPC_SUBCH=u]
[,RL_GAIN_ADJ=v]
[,RL_TC_PICH=w]
[,RL_SC_PILOT=x];
• Input CHG-PWR1-CTRL :BSC=0 ,BTS=0 ,FER=30,PWR_CNT_STEP=255;
• Output
SMD-011-PMA210
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Fig. 4.3-118 POWER CONTROL Parameter Information (1) Change
SMD-011-PMA210
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4.3.5.19. POWER CONTROL Parameter Information (2) Change
To
change
POWER
CONTROL
Parameter
information
(2),
click
CDM-
>Change_Parameter_ Information_2-> CHG-PWR2-CTRL on the Command Window in
order. Input the value to be changed in each field as shown below.
•
Command
CHG-PWR2-CTRL
:BSC=a
,BTS=b
,FER=c
,USE_REV_P=d
[,GAIN_1500=e]
[,GAIN_2700=f] [,GAIN_4800=g] [,GAIN_9600=h] [,GAIN_1800=i]
[,GAIN_3600=j]
[,GAIN_7200=k] [,GAIN_14400=l]
[,NORM_9600_5MS=m];
• Input CHG-PWR2-CTRL :BSC=0 ,BTS=0 ,FER=c ,USE_REV_P=USE_REV_P,
GAIN_1500=255;
• Output
Fig. 4.3-119 POWER CONTROL Parameter Information (2) Change
SMD-011-PMA210
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4.3.5.20. POWER CONTROL Parameter Information (3) Change
To
change
POWER
CONTROL
Parameter
information
(3),
click
CDM-
>Change_Parameter_ Information_2-> CHG-PWR3-CTRL on the Command Window in
order. Input the value to be changed in each field as shown below.
•
Command
CHG-PWR3-
CTRL :BSC=a ,BTS=b ,FER=c ,USE_REV_P=d ,USE_TUB_ENC=e
[,GAIN_19200=f] [,GAIN_38400=g] [,GAIN_76800=h] [,GAIN_153600=i]
[,GAIN_307200=j]
[,GAIN_614400=k] [,GAIN_28800=l]
[,GAIN_57600=m] [,GAIN_115200=n] [,GAIN_230400=o]
[,GAIN_460800=p] [,GAIN_1036800=q];
• Input CHG-PWR3-CTRL :BSC=0 ,BTS=0 ,FER=0 ,USE_REV_P=NOUSE_REV_P ,
USE_TUB_ENC=NOUSE_TUB_ENC,GAIN_19200=255;
• Output
Fig. 4.3-120 POWER CONTROL Parameter Information (3) Change
SMD-011-PMA210
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4.3.5.21. BTS Name Change
To change BTS name, click CDM->Change_Parameter_ Information_2-> CHG-BTSNAME on the Command Window in order. Input the value to be changed in each field
as shown below.
• Command
CHG-BTS-NAME :BSC=a ,BTS=b ,NAME=c;
• Input CHG-BTS-NAME :BSC=0 ,BTS=0 ,NAME=jhpark;
• Output
Fig. 4.3-121 BTS Name Change
SMD-011-PMA210
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4.3.5.22. PCF TIMER Change
To change PCF TIMER, click CDM->Change_Parameter_ Information_2-> CHG-PCFTIMER on the Command Window in order. Input the value to be changed in each field
as shown below.
•
Command
CHG-PCF-TIMER
:PCP=a
[,TRP_LIFETIME=b]
[,TBSREQ9=c]
[,TDISCON9=d]
[,TWAITHO9=e]
[,TREGREQ=f] [,RRQ_RETRY_CNT=g];
• Input CHG-PCF-TIMER :PCP=0,TRP_LIFETIME=255;
• Output
Fig. 4.3-122 PCF TIMER Change
SMD-011-PMA210
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4.3.5.23. PCP/PMP ADDRESS Change
To change PCP/PMP ADDRESS, click CDM->Change_Parameter_ Information_2->
CHG-PCP-ADDR on the Command Window in order. Input the value to be changed in
each field as shown below.
• Command CHG-PCP-ADDR :PCF=a ,SHELF_ID=b ,SIDE=c ,IP_ADDR=d;
• Input CHG-PCP-ADDR :PCF=0 ,SHELF_ID=0 ,SIDE=A_SIDE ,
IP_ADDR=255.255.255.255;
• Output
Fig. 4.3-123 PCP/PMP ADDRESS Change
SMD-011-PMA210
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4.3.5.24. PIP ADDRESS Change
To change PIP ADDRESS, click CDM->Change_Parameter_ Information_2-> CHGPIP-ADDR on the Command Window in order. Input the value to be changed in each
field as shown below.
•
Command
CHG-PIP-ADDR
:PCF=a
,SHELF_ID=b
,PIP_ID=c
[,IP_ADDR=d]
[,NETMASK=e]
• Input CHG-PIP-ADDR :PCF=0 ,SHELF_ID=0 ,PIP_ID=0, NETMASK=255.255.0.0;
• Output
Fig. 4.3-124 PIP ADDRESS Change
SMD-011-PMA210
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4.3.5.25. PCF PARAMETER Change
To change PCF PARAMETER, click CDM->Change_Parameter_ Information_2-> CHGPCF-PARA on the Command Window in order. Input the value to be changed in each
field as shown below.
• Command CHG-PCF-PARA :PCF=a [,AAA_TYPE=b] [,SID=c] [,NID=d]
[,LTM_OFF=e]
[,DAY_LT=f] [,PKZN_ID=g] [,ID_TYPE=h] [,GRE_SEQ=i] [,SEQ_TIMER=j]
[,MSID_TYPE=k];
• Input CHG-PCF-PARA :PCF=0,AAA_TYPE=255,SEQ_TIMER=255;
• Output
Fig. 4.3-125 PCF PARAMETER Change
SMD-011-PMA210
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4.3.6. Network
Parameter
Information
Change
(Change_Parameter_Info_3)
4.3.6.1. CAN INTER BSC AAL2 Setting Information Change
• Command
CHG-CAN-IUR: BSC=a, [BSC0_AAL2=b], [BSC1_AAL2=c],
[BSC2_AAL2=d], [BSC3_AAL2=e], [BSC4_AAL2=f],
[BSC5_AAL2=g], [BSC6_AAL2=h], [BSC7_AAL2=i],
[BSC8_AAL2=j],[BSC9_AAL2=k],[BSC10_AAL2=l],
[BSC11_AAL2=m], [NO_AAL2_VC=n];
• Input CHG-CAN-IUR: BSC=0, BSC0_AAL2=255
• Output
SMD-011-PMA210
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4.3.6.2. CAN INTER BSC AAL5 Setting Information Change
• Command CHG-CAN-BSC: [CAN0_START_AAL5=a],
[CAN1_START_AAL5=b], [NO_AAL5_VC=0~],
a ,b: 0~0xffffff
c: 0~
• Input CHG-CAN-BSC: CAN0_START_AAL5=255
• Output
SMD-011-PMA210
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4.3.6.3. CPN INTER DATA AAL5 Setting Information Change
• Command CHG-CPN-DATA: [BSC0_AAL5=a], [BSC1_AAL5=b], [BSC2_AAL5=c],
[BSC3_AAL5=d], [BSC4_AAL5=e], [BSC5_AAL5=f],
[BSC6_AAL5=g], [BSC7_AAL5=h], [BSC8_AAL5=i],
[BSC9_AAL5=j], [BSC10_AAL5=k], [BSC11_AAL5=l],
[NO_AAL5_VC=m];
a ~n: BSC AAL5 (32~0xffffff)
m: 0~32
• Input CHG-CPN-DATA: BSC0_AAL5=255;
• Output
SMD-011-PMA210
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4.3.6.4. CPN INTER PCF AAL5 Setting Information Change
• Command CHG-CPN-PCF: [PIP0_0_AAL5=a], [PIP0_1_AAL5=b], [PIP1_0_AAL5=c],
[PIP1_1_AAL5=d], [PIP2_0_AAL5=e], [PIP2_1_AAL5=f],
[PIP3_0_AAL5=g], [PIP3_1_AAL5=h], [PIP4_0_AAL5=i],
[PIP4_1_AAL5=j], [PIP5_0_AAL5=k], [PIP5_1_AAL5=l],
[PIP6_0_AAL5=m], [PIP6_1_AAL5=n], [PIP7_0_AAL5=o],
[PIP7_1_AAL5=p], [PIP8_0_AAL5=q], [PIP8_1_AAL5=r],
[PIP9_0_AAL5=s], [PIP9_1_AAL5=t], [PIP10_0_AAL5=u],
[PIP10_1_AAL5=v], [NO_AAL5_VC=w]
a~v: PIP AAL5 (32~0xffffff)
w: 0~480
• Input CHG-CPN-PCF: PIP0_0_AAL5=255 ;
• Output
SMD-011-PMA210
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4.3.6.5. BSC INTER BSC AAL2 Setting Information Change
•
Command
CHG-BSC-IUR:
BSC=a,
[BSC0_AAL2=b],
[BSC1_AAL2=c],
[BSC2_AAL2=d],
[BSC3_AAL2=e], [BSC4_AAL2=f], [BSC5_AAL2=g],
[BSC6_AAL2=h], [BSC7_AAL2=i], [BSC8_AAL2=j],
[BSC9_AAL2=k], [BSC10_AAL2=l], [BSC11_AAL2=m],
[NO_AAL2_VC=n];
a : BSC Number(0~11)
b~m: BSC AAL2 (0~0xffffff)
n: 0~
• Input CHG-BSC-IUR: BSC=0, BSC0_AAL2=255;
• Output
SMD-011-PMA210
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4.3.6.6. BSC INTER BTSC AAL2 Setting Information Change
• Command CHG-BSC-IUB: BSC=a, BTS=b, LICA=c, LINK=d,
[LINK0_AAL2=e], [LINK1_AAL2=f], [LINK2_AAL2=g],
[LINK3_AAL2=h], [LINK4_AAL2=i], [LINK5_AAL2=j],
[LINK6_AAL2=k], [LINK7_AAL2=l], [LINK8_AAL2=m],
[LINK9_AAL2=n], [LINK10_AAL2=o], [LINK11_AAL2=p],
[LINK12_AAL2=q], [LINK13_AAL2=r], [LINK14_AAL2=s],
[LINK15_AAL2=t]
a : BSC Number(0~11)
b : BTS Number(0~47)
c : LICA Number(0~2)
d : LINK Number(0~15)
e~t: 0~0xffffff
• Input CHG-BSC-IUB: BSC=0, BTS=0, LICA=0, LINK0_AAL2=255;
• Output
SMD-011-PMA210
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4.3.6.7. BSC INTER CAN AAL2/5 Setting Information Change
• Command CHG-BSC-CAN: BSC=a, [CAN0_START_AAL5=b],
[CAN1_START_AAL5=c], [NO_AAL5_VC=d]
a: BSC Number(0~11)
b,c: 32~0xffffff
d: 0~8160
• Input CHG-BSC-CAN: BSC=0, CAN0_START_AAL5=255;
• Output
SMD-011-PMA210
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4.3.6.8. BSC INTER SLB AAL5 Setting Information
•
Command
CHG-BSC-SLB:
BSC=a,
[SLP0_AAL5=b],
[SLP1_AAL5=c],
[SLP2_AAL5=d],
[SLP3_AAL5=e], [SLP4_AAL5=f], [SLP5_AAL5=g],
[SLP6_AAL5=h], [SLP7_AAL5=i], [SLP8_AAL5=j],
[SLP9_AAL5=k], [SLP10_AAL5=l], [SLP11_AAL5=m],
[SLP12_AAL5=n], [SLP13_AAL5=o], [SLP14_AAL5=p],
[SLP15_AAL5=q], [SLP16_AAL5=r], [SLP17_AAL5=s],
[NO_AAL5_VC=t]
a: BSC Number(0~11)
b~s: 40~0xffffff
t: 0~984
• Input CHG-BSC-SLB: BSC=0, SLP0_AAL5=255;
• Output
SMD-011-PMA210
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4.3.6.9. BSC INTER VCB AAL5 Setting Information Change
• Command CHG-BSC-VCB: BSC=a,
[VCP0_AAL5=b], [VCP1_AAL5=c], [VCP2_AAL5=d],
[VCP3_AAL5=e], [VCP4_AAL5=f], [VCP5_AAL5=g],
[VCP6_AAL5=h], [VCP7_AAL5=i], [VCP8_AAL5=j],
[VCP9_AAL5=k], [VCP10_AAL5=l], [VCP11_AAL5=m],
[VCP12_AAL5=n], [VCP13_AAL5=o], [VCP14_AAL5=p],
[VCP15_AAL5=q], [NO_AAL5_VC=r]
a: BSC Number(0~11)
b~q: 40~0xffffff
r: 0~88
• Input CHG-BSC-VCB: BSC=0, VCP0_AAL5=255;
• Output
SMD-011-PMA210
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4.3.6.10. BSC INTER ALB AAL5 Setting Information Change
• Command CHG-BSC-ALB: BSC=a,
[ALMA0_ALP0_0=b], [ALMA0_ALP0_1=c], [ALMA0_ALP1_0=d],
[ALMA0_ALP1_1=e], [ALMA0_ALP2_0=f], [ALMA0_ALP2_1=g],
[ALMA0_ALP3_0=h], [ALMA0_ALP3_1=i], [ALMA0_ALP4_0=j],
[ALMA0_ALP4_1=k], [ALMA1_ALP0_0=l], [ALMA1_ALP0_1=m],
[ALMA1_ALP1_0=n], [ALMA1_ALP1_1=o], [ALMA1_ALP2_0=p],
[ALMA1_ALP2_1=q], [ALMA1_ALP3_0=r], [ALMA1_ALP3_1=s],
[ALMA1_ALP4_0=t], [ALMA1_ALP4_1=u], [NO_AAL5_VC=v]
a: BSC Number(0~11)
b~u: 32~0xffffff
v: 0~2016
• Input CHG-BSC-ALB: BSC=0, ALMA0_ALP0_0=255;
• Output
SMD-011-PMA210
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4.3.6.11. BTS INTER RCU AAL5 Setting Information Change
• Command CHG-BTS-RCU: BSC=a, BTS=b, RCU=c,
[LICA0_AAL5=d], [LICA1_AAL5=e], [LICA2_AAL5=f],
[LICA0_NO_VC=g], [LICA1_NO_VC=h], [LICA2_NO_VC=i]
a: BSC Number(0~11)
b:BTS Number(0~47)
c: RCU Number(0~9)
d~i: 0~
• Input CHG-BTS-RCU: BSC=0,BTS=0,RCU=0, LICA0_AAL5=255;
• Output
SMD-011-PMA210
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4.3.7. Configuration
Information
Display(Display_Configuration_Data)
This section describes the comands that are used to inquire the configuration
information which is related to processors, devices, and overhead channels which are
currently used in BTS and BSC.
Table 4.3-3 Configuration Information Display
CRN
MMC
2101
DIS-BSS-CONF
2103
DIS-SMP-CONF
2105
DIS-VMP-CONF
2112
DIS-BTS-CONF
2115
DIS-CHIP-CONF
2125
DIS-OVHD-CONF
2133
DIS-PDSN-CONF
SMD-011-PMA210
Description
BSS
configuration
information
verification
SMP
configuration
information
verification
VMP
configuration
information
verification
BTS
configuration
information
verification
DBPA CHIP configuration information
verification
OVERHEAD
CHANNEL
configuration
information verification
PDSN
configuration
information
verification
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4.3.7.1. BSS Configuration Information Verification
This is a command to check the BTS, Processors and PCF counts in the BSC.
• Command DIS-BSS-CONF: BSC=a;
• Input DIS-BSS-CONF: BSC=0;
• Output
Fig. 4.3-126 BSS Configuration Information Display
SMD-011-PMA210
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4.3.7.2. SMP Configuration Information Verification
• Command DIS-SMP-CONF: BSC=a;
a: BSC Number(#0~11)
• Input DIS-SMP-CONF: BSC=0;
• Output
Fig. 4.3-127 SMP Configuration Information Display
SMD-011-PMA210
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4.3.7.3. VMP Configuration Information Verification
• Command DIS-VMP-CONF: BSC=a;
a: BSC Number(#0~11)
• Input DIS-VMP-CONF: BSC=0;
• Output
Fig. 4.3-128 VMP Configuration Information Display
SMD-011-PMA210
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4.3.7.4. BTS Configuration Information Verification
• Command DIS-BTS-CONF: BSC=a, BTS=b;
a: BSC Number(#0~11)
b: BTS Number(#0~47)
• Input DIS-BTS-CONF: BSC=0, BTS=0;
• Output
Fig. 4.3-129 BTS Configuration Information Display
SMD-011-PMA210
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4.3.7.5. DBPA CHIP Configuration Information Verification
• Command DIS-CHIP-CONF: BSC=a, BTS=b;
a: BSC Number(#0~11)
b: BTS Number(#0~47)
• Input DIS-CHIP-CONF: BSC=0, BTS=0;
• Output
Fig. 4.3-130 DBPA CHIP Configuration Information Display
SMD-011-PMA210
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4.3.7.6. OVERHEAD CHANNEL Configuration Information Verification
• Command DIS-OVHD-CONF: BSC=a, BTS=b;
a: BSC Number(#0~11)
b: BTS Number(#0~47)
• Input DIS-OVHD-CONF: BSC=0, BTS=0;
• Output
Fig. 4.3-131 OVHD Channel Configuration Information Display
SMD-011-PMA210
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4.3.7.7. PDSN Configuration Information Verification
• Command DIS-PDSN-CONF: PCP=a;
a: PCP Number(#0~2)
• Input DIS-PDSN-CONF: PCP=0;
• Output
Fig. 4.3-132 PDSN Configuration Information Display
SMD-011-PMA210
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4.3.8. Configuration
Information
Change
(Change_Configuration_Data)
This section describes commands that are used to add or delete BTS and BSC
processors and devices. The configuration information that can be added and deleted
are presented below. For the command that has many parameters to input, input image
on the inpout Widow. This section does not cover details of each parameter.
Table 4.3-4 Configuration Information Change
CRN
C2312
MMC
CHG-BTS-CONF
C2315
Description
BTS configuration information change
Channel
CHG-CHIP1-CONF
C2317
Card
Chip
configuration
information(1) change
Channel Card Chip configuration
CHG-CHIP2-CONF
information(2) change
C2333
ADD-PDSN-CONF
PDSN CONFIG addition
C2334
RMV-PDSN-CONF
PDSN CONFIG deletion
C2335
CHG-PDSN-CONF
PDSN CONFIG change
C2337
ADD-PDSN-NODE
PDSN NODE addition
C2338
RMV-PDSN-NODE
PDSN NODE deletion
C2339
CHG-PDSN-NODE
PDSN NODE change
C2601
MOV-BSC-NODE
BSC Node movement
C2602
MOV-PCF-NODE
PCF Node movement
C2603
MOV-SMP-NODE
SMP Node movement
C2604
MOV-VMP-NODE
VMP Node movement
C2605
MOV-BTS-ID
BTS ID movement
C2606
MOV-BTS-TRNK
BTS TRUNK Node movement
C2607
MOV-LICA-LINK
LICA LINK movement
C2610
MOV-OVHD-CONF
OVERHEAD
CHANNEL
information movement
C2701
ADD-BSC-CONF
BSC configuration addition
C2702
RMV-BSC-CONF
BSC configuration deletion
C2711
ADD-PCF-CONF
PCF configuration addition
C2712
RMV-PCF-CONF
PCF configuration deletion
SMD-011-PMA210
configuration
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C2721
ADD-SMP-CONF
SMP configuration addition
C2722
RMV-SMP-CONF
SMP configuration deletion
C2731
ADD-VMP-CONF
VMP configuration addition
C2732
RMV-VMP-CONF
VMP configuration deletion
C2741
ADD-BTS-CONF
BTS configuration addition
C2742
RMV-BTS-CONF
BTS configuration deletion
C2751
ADD-SECT-CONF
SECTOR configuration addition
C2752
RMV-SECT-CONF
SECTOR configuration deletion
C2761
ADD-FA-CONF
FA configuration addition
C2762
RMV-FA-CONF
FA configuration deletion
C2771
C2772
ADD-TRNK-CONF
RMV-TRNK-CONF
BSC-BTS
TRUNK
configuration
TRUNK
configuration
addition
BSC-BTS
deletion
C2781
ADD-CAN-PVC
CAN PVC configuration addition
C2782
RMV-CAN-PVC
CAN PVC configuration deletion
C2783
ADD-CPN-PVC
CPN PVC configuration addition
C2784
RMV-CPN-PVC
CPN PVC configuration deletion
C2785
ADD-BSC-PVC
BSC PVC configuration addition
C2786
RMV-BSC-PVC
BSC PVC configuration deletion
SMD-011-PMA210
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4.3.8.1. BTS Configuration Information Change
• Command CHG-BTS-CONF :BSC=a ,BTS=b [,PA_TYPE=c] [,ANT_TYPE=d]
[,ANT_DUP=e] [,RX_DIV=f] [,LNA_EQP=g] [,RISA_EQP=h] [,BOTA_EQP=i];
• Input CHG-BTS-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
Fig. 4.3-133 BTS Configuration Information Change Display
SMD-011-PMA210
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4.3.8.2. Channel Card Chip Configuration Information (1) Change
•
Command
CHG-CHIP1-CONF
:BSC=a
,BTS=b
[,SECT_GAIN_A=c]
[,SECT_GAIN_B=d]
[,SECT_GAIN_G=e]
[,SECT_GAIN_D=f]
[,SECT_GAIN_E=g]
[,SECT_GAIN_Z=h]
[,T_DIV_SECT_A=i]
[,T_DIV_SECT_B=j]
[,T_DIV_SECT_G=k]
[,T_DIV_SECT_D=l]
[,T_DIV_SECT_E=m]
[,T_DIV_SECT_Z=n]
[,SECT_T_ADV_B=p]
[,SECT_T_ADV_A=o]
[,SECT_T_ADV_G=q]
[,SECT_T_ADV_D=r]
[,SECT_T_ADV_E=s] [,SECT_T_ADV_Z=t]
[,T_DIV_T_ADV_A=u]
[,T_DIV_T_ADV_B=v]
[,T_DIV_T_ADV_D=x]
[,T_DIV_T_ADV_E=y]
SMD-011-PMA210
[,T_DIV_T_ADV_G=w]
[,T_DIV_T_ADV_Z=z];
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• Input CHG-CHIP1-CONF:BSC=0, BTS=0,SECT_GAIN_A=255;
• Output
Fig. 4.3-134 Channel Card Chip Configuration Information (1) Change Display
SMD-011-PMA210
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4.3.8.3. Channel Card Chip Configuration Information (2) Change
• Command CHG-CHIP2-CONF :BSC=a ,BTS=b [,NUM_CHIP=c] [,SECT_T_IO=d]
[,CELL_RADIUS=e]
[,MAX_RACH_F=h]
[,MAX_REACH_S=k]
[,REV_IN_FORM=f] [,R_CELL_MODE=g]
[,MAX_RACH_S=i]
[,SRCH_WIN_ADJ=l]
[,MAX_CDMA2K=n] [,CSM_MODE=o]
SMD-011-PMA210
[,MAX_REACH_F=j]
[,MAX_CH95=m]
[,DIV_SCALE_2K=p];
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• Input CHG-CHIP2-CONF: BSC=0, BTS=0,NUM_CHIP=255;
• Output
Fig. 4.3-135 Channel Card Chip Configuration Information (2) Change Display
SMD-011-PMA210
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4.3.8.4. PDSN CONFIG Addition
• Command ADD-PDSN-CONF :PCF=a ,PDSN_IDX=b ,PDSN_IP=c;
• Input ADD-PDSN-CONF: BSC=0, BTS=0,PDSN_IP=255.255.255.0;
• Output
Fig. 4.3-136
SMD-011-PMA210
PDSN Configuration Addition Display
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4.3.8.5. PDSN CONFIG Deletion
• Command RMV-PDSN-CONF :PCF=a ,PDSN_IDX=b;
• Input RMV-PDSN-CONF: BSC=0, BTS=0,PDSN_IDX=1;
• Output
Fig. 4.3-137
SMD-011-PMA210
PDSN Configuration Deletion Display
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4.3.8.6. PDSN CONFIG Change
• Command CHG-PDSN-CONF :PCF=a ,PDSN_IDX=b ,PDSN_IP=c;
• Input CHG-PDSN-CONF: BSC=0, BTS=0,PDSN_IP=127.0.0.1;
• Output
Fig. 4.3-138
SMD-011-PMA210
PDSN Configuration Change Display
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4.3.8.7. PDSN NODE Addition
• Command ADD-PDSN-NODE :PCF=a ,PDSN_IDX=b ,PDSN_NODE_IDX=c ,
PDSN_NODE_IP=d ,SSK_VALUE=e
• Input ADD-PDSN-NODE: BSC=0, BTS=0,PDSN_NODE_IDX=0,
PDSN_NODE_IP:128.128.128.128;
• Output
Fig. 4.3-139
SMD-011-PMA210
PDSN NODE Addition Display
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4.3.8.8. PDSN NODE Deletion
• Command RMV-PDSN-NODE :PCF=a ,PDSN_IDX=b ,PDSN_NODE_IDX=c;
• Input RMV-PDSN-NODE: BSC=0, BTS=0,PDSN_IDX=0,PDSN_NODE_IDX=0;
• Output
Fig. 4.3-140
SMD-011-PMA210
PDSN NODE Deletion Display
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4.3.8.9. PDSN NODE Change
• Command CHG-PDSN-NODE :PCF=a ,PDSN_IDX=b ,PDSN_NODE_IDX=c
[,PDSN_NODE_IP=d] [,SSK_VALUE=e]
• Input CHG-PDSN-NODE: BSC=0, BTS=0,PDSN_IDX=0,PDSN_NODE_IDX=0,
PDSN_NODE_IP=100.100.0.1, SSK_VALUE=gamdok;
• Output
Fig. 4.3-141
SMD-011-PMA210
PDSN NODE Change Display
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4.3.8.10. BSC Node Movement
• Command MOV-BSC-NODE :T_PROC=a ,BSC=b ,CARD=c ,LINK=d;
• Input MOV-BSC-NODE: T_PROC=CNP,BSC=0,CARD=1,LINK=6;;
• Output
Fig. 4.3-142
SMD-011-PMA210
BSC NODE Movement Display
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4.3.8.11. PCF Node Movement
• Command MOV-PCF-NODE :PCF=a ,CARD0=b ,LINK0=c ,CARD1=d ,LINK1=e
,CARD2=f ,LINK2=g ,CARD3=h ,LINK3=i;
• Input MOV-PCF-NODE: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
SMD-011-PMA210
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4.3.8.12. SMP Node Movement
• Command MOV-SMP-NODE :BSC=a ,SMP=b ,CARD=c ,LINK=d;
• Input MOV-SMP-NODE: BSC=0, SMP=0,CARD=1,LINK=6
• Output
Fig. 4.3-143
SMD-011-PMA210
SMP NODE Movement Display
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4.3.8.13. VMP Node Movement
• Command MOV-VMP-NODE :BSC=a ,VMP=b ,CARD=c ,LINK=d;
• Input MOV-VMP-NODE: BSC=0, VMP=0, CARD=1, LINK=6;
• Output
Fig. 4.3-144
SMD-011-PMA210
VMP NODE Movement Display
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4.3.8.14. BTS ID Movement
• Command MOV-BTS-ID :BSC=a ,OLD_BTS=b ,NEW_BTS=c;
• Input MOV-BTS-ID: BSC=0, OLD_BTS=0,NEW_BTS=2;
• Output
Fig. 4.3-145
SMD-011-PMA210
BTS ID Movement Display
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4.3.8.15. BTS TRUNK Node Movement
For this command, execute DIS-TRNK-DATA first to input the parameter value.
• Command
MOV-BTS-TRNK :BSC=a ,BTS=b ,OLD_ALMA=c ,OLD_ALPA=d ,
OLD_ALPA_LINK=e ,NEW_ALMA=f ,NEW_ALPA=g ,NEW_ALPA_LINK=h;
• Input MOV-BTS-TRNK: BSC=0, BTS=2,
OLD_ALMA=0,OLD_ALPA=0,OLD_ALPA_LINK=0,
NEW_ALMA=1,NEW_ALPA=1,NEW_ALPA_LINK=1;
• Output
Fig. 4.3-146
SMD-011-PMA210
BTS TRUNK Movement display
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4.3.8.16. LICA LINK Movement
•
Command
MOV-LICA-
LINK :BSC=a ,BTS=b ,OLD_LICA=c ,OLD_LINK=d ,NEW_LICA=e
,NEW_LINK=f;
• Input MOV-LICA-LINK: BSC=0, BTS=1,
OLD_LICA=0, OLD_LINK=0,
NEW_LICA=1, NEW_LINK=1;
• Output
Fig. 4.3-147
SMD-011-PMA210
LICA LINK Movement Display
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4.3.8.17. OVERHEAD CHANNEL Configuration Information Movement
Refer to DIS-OVHD-CONF command
• Command MOV-OVHD-CONF :BSC=a ,BTS=b ,SECT=c ,CDMACH=d ,
NEW_CHC=e ;
• Input MOV-OVHD-CONF: BSC=0, BTS=0,
SECTOR=ALPHA,CDMACH=0,NEW_CHC=1;
• Output
Fig. 4.3-148
OVHD Channel Configuration Information Movement Display
SMD-011-PMA210
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4.3.8.18. BSC Configuration Addition
• Command ADD-BSC-CONF :T_PROC=a ,BSC=b ,CARD=c ,LINK=d;
• Input ADD-BSC-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
SMD-011-PMA210
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4.3.8.19. BSC Configuration Deletion
• Command RMV-BSC-CONF :T_PROC=a ,BSC=b;
• Input RMV-BSC-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
SMD-011-PMA210
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4.3.8.20. PCF Configuration Addition
• Command ADD-PCF-CONF :PCF=a ,CARD0=b ,LINK0=c ,CARD1=d ,LINK1=e
,CARD2=f ,LINK2=g ,CARD3=h ,LINK3=i;
•
Input
ADD-PCF-
CONF:PCF=1,CARD0=3,LINK0=4,CARD1=3,LINK1=4,CARD2=3,LINK2=4,CARD3=3,LI
NK3=4;
• Output
Fig. 4.3-149
SMD-011-PMA210
PCF Configuration Addition Display
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4.3.8.21. PCF Configuration Deletion
• Command RMV-PCF-CONF :PCF=a;
• Input RMV-PCF-CONF: PCF=1;
• Output
Fig. 4.3-150
SMD-011-PMA210
PCF Configuration Deletion Display
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4.3.8.22. SMP Configuration Addition
• Command ADD-SMP-CONF :BSC=a ,SMP=b ,CARD=c ,LINK=d;
• Input ADD-SMP-CONF: BSC=0,SMP=0,CARD=1,LINK=7;
• Output
Fig. 4.3-151
SMD-011-PMA210
SMP Configuration Addition Display
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4.3.8.23. SMP Configuration Deletion
• Command
RMV-SMP-CONF :BSC=a ,SMP=b;
• Input RMV-SMP-CONF: BSC=0, SMP=0;
• Output
Fig. 4.3-152
SMD-011-PMA210
SMP Configuration Deletion Display
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4.3.8.24. VMP Configuration Addition
• Command ADD-VMP-CONF :BSC=a ,VMP=b ,CARD=c ,LINK=d;
• Input ADD-VMP-CONF: BSC=0,VMP=0,CARD=1,LINK=5;
• Output
Fig. 4.3-153
SMD-011-PMA210
VMP Configuration Addition Display
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4.3.8.25. VMP Configuration Deletion
• Command RMV-VMP-CONF :BSC=a ,VMP=b;
• Input RMV-VMP-CONF: BSC=0, VMP=0;
• Output
Fig. 4.3-154
SMD-011-PMA210
VMP Configuration Deletion Display
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4.3.8.26. BTS Configuration Addition
•
Command
ADD-BTS-
CONF :BSC=a ,BTS=b ,B_TYPE=c ,SECT_EQP=d ,SECT_RANGE=e
,ALMA=f ,ALPA=g ,ALPA_LINK=h ,LICA=i ,LICA_LINK=j
,FA0_CH_NUM=k ,PN_ALPHA=l [,PN_BETA=m]
[,PN_GAMMA=n] [,PN_DELTA=o] [,PN_EPSILON=p]
[,PN_ZETA=q] [,PA_TYPE=r] [,ANT_TYPE=s] [,LNA_TYPE=t]
[,RISA_EQP=u] [,BOTA_EQP=v];
• Input Input ADD-BTS-CONF: BSC=0, BTS=0; -> ADD-BTS-CONF: BSC=1,
BTS=0,B_TYPE=STANDARD,SECT_EQP=OMNI;
• Output
SMD-011-PMA210
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4.3.8.27. BTS Configuration Deletion
• Command
RMV-BTS-CONF :BSC=a ,BTS=b;
• Input RMV-BTS-CONF: BSC=1, BTS=0;
• Output
Fig. 4.3-155
SMD-011-PMA210
BTS Configuration Deletion Display
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4.3.8.28. SECTOR Configuration Addition
• Command ADD-SECT-CONF :BSC=a ,BTS=b ,SECT=c ,PN=d;
• Input ADD-SECT-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
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4.3.8.29. SECTOR Configuration Deletion
• Command RMV-SECT-CONF :BSC=a ,BTS=b ,SECT=c;
• Input RMV-SECT-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
SMD-011-PMA210
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4.3.8.30. FA Configuration Addition
• Command ADD-FA-CONF :BSC=a ,BTS=b ,FA=c ,CH_NUM=d;
• Input ADD-FA-CONF: BSC=1, BTS=0,FA=0,CH_NUM=25;
• Output
Fig. 4.3-156
SMD-011-PMA210
FA Configuration Addition Display
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4.3.8.31. FA Configuration Deletion
• Command
RMV-FA-CONF :BSC=a ,BTS=b ,FA=c;
• Input RMV-FA-CONF: BSC=1, BTS=0,FA=0;
• Output
Fig. 4.3-157
SMD-011-PMA210
FA Configuration Deletion Display
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4.3.8.32. BSC-BTS TRUNK Configuration Addition
• Command
ADD-TRNK-CONF :BSC=a ,BTS=b ,ALMA=c ,ALPA=d ,ALPA_LINK=e
,LICA=f ,LICA_LINK=g ,ALLOC_TYPE=h;
• Input ADD-TRNK-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
SMD-011-PMA210
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4.3.8.33. BSC-BTS TRUNK Configuration Deletion
• Command
RMV-TRNK-CONF :BSC=a ,BTS=b ,ALMA=c ,ALPA=d ,ALPA_LINK=e ;
• Input RMV-TRNK-CONF: BSC=0, BTS=0,PA_TYPE=FA_NEQ;
• Output
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4.3.8.34. CAN PVC Configuration Addition
• Command ADD-CAN-PVC :NODE_A=a ,NODE_B=b ,VPCI_A=c ,VPCI_B=d
[,NO_VC=e] ;
•
Input
ADD-CAN-PVC:
NODE_A=CTYPE_BSM_A,
NODE_B=CTYPE_CNP_A,
VPCL_A=0,VPCL_B=0;
• Output
Fig. 4.3-158
SMD-011-PMA210
CAN PVC Configuration Addition Display
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4.3.8.35. CAN PVC Configuration Deletion
• Command RMV-CAN-PVC :INDEX=a;
• Input RMV-CAN-PVC: INDEX=0;
• Output
Fig. 4.3-159
SMD-011-PMA210
CAN PVC Configuration Deletion Display
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4.3.8.36. CPN PVC Configuration Addition
• Command ADD-CPN-PVC :NODE_A=a ,NODE_B=b ,VPCI_A=c ,VPCI_B=d
[,NO_VC=e] ;
•
Input
ADD-CPN-PVC:NODE_A=CTYPE_CAN_A,
NODE_B=CTYPE_CAN_B,
VPCI_A=0, VPCI_B=0;
• Output
Fig. 4.3-160
SMD-011-PMA210
CPN PVC Configuration Addition Display
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4.3.8.37. CPN PVC Configuration Deletion
• Command
RMV-CPN-PVC :INDEX=a;
• Input RMV-CPN-PVC: INDEX=0;
• Output
Fig. 4.3-161
SMD-011-PMA210
CPN PVC Configuration Deletion Display
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4.3.8.38. BSC PVC Configuration Addition
• Command ADD-BSC-PVC :BSC=a ,NODE_A=b ,NODE_B=c ,VPCI_A=d ,VPCI_B=e
[,NO_VC=f];
• Input ADD-BSC-PVC:BSC=0, NODE_A=CTYPE_CCP_A, NODE_B=CTYPE_CCP_B,
VPCI_A=0, VPCI_B=0;
• Output
Fig. 4.3-162
SMD-011-PMA210
BSC PVC Configuration Addition Display
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4.3.8.39. BSC PVC Configuration Deletion
• Command
RMV-BSC-PVC :BSC=a ,INDEX=b;
• Input RMV-BSC-PVC:BSC=0, INDEX=0;
• Output
Fig. 4.3-163 BSC PVC Configuration Deletion Display
SMD-011-PMA210
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4.4. STATUS COMMAND
4.4.1 PROCESSOR STATUS CONTROL
Table 4.4-1 Processor Status LIST
Status Types
Definition
NORM
NORMAL
ABNM
Abnormal
DCPY
Dual Copy
LDNG
StandBy Loading
NORM(OLD)
Normal (After StandBy Loading, Old version)
NORM(NEW)
Normal (After StandBy Loading, New version)
ABN_K
Abnormal with Keep Alive Fault
ABN_I
Abnormal with Process Isolation
UNDEF
Undefined Status
4.4.1.1. BSM CAN PROCESSOR STATUS DISPLAY COMMAND
Function to display processor status inserted in CAN.
Command : DIS-CAN-PRC;
Input : DIS-CAN-PRC;
Fig. 4.4-1 Result of CAN Processor Status Display Command
SMD-011-PMA210
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4.4.1.2. BSC Processor Status Display Command
Function to display Processor status inserted in BSC.
Command : DIS-BSC-PRC[:BSC=a];
a : BSC Number(0~11)
Input : DIS-BSC-PRC:BSC=0;
Fig. 4.4-2 Result of BSC Processor Status Display
4.4.1.3. Status Display Command of BTS Processor
Function to display operation status of processors mounted in all the BTSs within the
corresponding BSC or in each BTS
Command : DIS-BTS-STS:BSC=a[,BTS=b];
a:BSC Number (0~11)
b:BTS Number (0~47)
Input : DIS-BTS-STS:BSC=0,BTS=0;
Output
Fig. 4.4-3 Result of BTS Processor Status Display Command
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4.4.1.4. Processor Restart Command
Function to restart Processors
• Command : RST-PRC[:BSC=a][,BTS=b],RANGE=c,SIDE=d,CLS=e;
a : BSC Number (0~11)
b : BTS Number (0~47)
c : Scope of restart(All the Processors of CCP, PNP,NCP,PCP., etc.)
d : Side to restart (A,B,BOTH)
e : Class (RESTART, REBOOT, FLASH)
RESTART : Restart O/S and receive loading of PLD only.
REBOOT : It executes BOOTER. In case of the processors equipped with Flash
ROM, they check upper level processors and version of each block. If they are
different, they receive loading from the upper level processors. However, if
they are the same, they do not receive loading from the upper level
processors. The processors with no Flash ROM receive loading from the upper
level processors without checking version.
. For reference, Active Side before and after reboot does not change.
FLASH : Delete Flash content of the Processor with Flash ROM equipped and
reboot it to receive loading of all the files from the upper level Processor. For
reference, Active Side before and after Flash Reboot changes.
Input : RST-PRC:BSC=0,BTS=0,RANGE=RCP00,SIDE=A,CLS=RESTART;
Fig. 4.4-4 Result of Processor Restart Command
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4.4.1.5. CAN Processor H/W RESET(ISOLATION) COMMAND
Function to reset CAN Processor H/W.
Command : RMT-CAN-PRC:PROC=a,SIDE=b,CLS=c;
a: Processor Name : CNP,PNP,PCP,PMP
b: Side
: A,B
c: CLASS
: HARDRST,ISOLAT,UNISOL
HARDRST : Function to reset Processor on H/W Level (using Register Setting).
ISOLAT
: Function to isolate Processor on H/W Level (maintaining Status of RESET)
UNISOL
: Function to release the isolation
Input : RMT-CAN-PRC:PROC=PNP,SIDE=A,CLS=ISOLAT;
Fig. 4.4-5 CAN Processor H/W Command Result
4.4.1.6. BSC Processor H/W RESET(ISOLATION) COMMAND
Function to reset BSC Processor H/W.
Command : RMT-BSC-PRC:BSC=a,PROC=b,[SIDE=c],CLS=d;
a: BSC Number
b: Processor Name : CCP,NCP,SCP,ALP,SMP,VMP
c: Side
: A,B
d: CLASS
: HARDRST,ISOLAT,UNISOL
HARDRST : Function to RESET Processor on H/W Level (using Register Setting).
ISOLAT
: Function to isolate Processor on H/W Level (RESET Status maintained)
UNISOL
: Function to release isolation
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Input : RMT-BSC-PRC:BSC=0,PROC=NCP,SIDE=A,CLS=ISOLAT;
Fig. 4.4-6 BSC Processor H/W Command Result
4.4.1.7. BTS Processor H/W RESET(ISOLATION) COMMAND
Function to BSC Processor H/W.
Command : RMT-BTS-PRC:BSC=a,BTS=b,PROC=c,[SIDE=d],CLS=e;
a: BSC Number
b: BTS Number
c: Processor Name : BSP,BPP,CRP,RCP(00~05)
d: Side
: A,B
e: CLASS
: HARDRST,ISOLAT,UNISOL
HARDRST : Function to RESET Processor on H/W Level (using Register Setting).
ISOLAT
: Function to isolate Processor on H/W Level (RESET Status maintained)
UNISOL
: Function to release isolation
Input : RMT-BTS-PRC:BSC=0,BTS=0,PROC=BSP,SIDE=A,CLS=ISOLAT;
Fig. 4.4-7 BTS Processor H/W RESET(ISOLATION) Command Display Result
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4.4.1.8. Processor Switch Over(Switch) Command
Function to Switch over Processor.
Switching Over Command is executed for duplicated Processors and is performed only
when both sides of Processors are in a normal status.
Command : SWT-PRC [:BSC=a] [,BTS=b] ,PROC=c;
a: BSC Number
b: BTS Number
c: Processor Name : CNP, PNP, PCP00, PCP01,PCP02, PMP00, PMP01,PMP02,
CCP, NCP, SCP,ALP, BSP, CRP, RCP00, RCP01, RCP02, RCP03,RCP04, RCP05
Input : SWT-PRC :BSC=1 ,PROC=CCP;
Fig. 4.4-8 Processor Switch Over(Switch) Command Display Result
4.4.2. Network Status Control
Table 4.4-2 Network Node Status LIST
Status Types
Definition
Description
NORM
Normal
Normal Operation
Normal Act
While normally operated, Act Status is
NOR_A
NOR_S
maintained (Duplicated node)
Normal Standby
SMD-011-PMA210
While normally operated, Standby Status is
maintained (Duplicated node)
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ABN_D
Abnormal Deletion
card is removed
ABN_F
Abnormal Fault
Local Fault occurred
ABN_M
Abnormal MMC Block
Blocked Status by User’s MMC
Even equipped to PLD, a processor managing the
INIT
Initial
corresponding device does not normally operate
until now
Based on judgment that a normal call is
AB_OB
Abnormal Online Block impossible due to faults in other devices, the
corresponding device is blocked
N_EQP
Not Equipped
Card Type is not defined in PLD
4.4.2.1. Network Status Display Command
Function to display the BSS Network status.
Command : DIS-NET-STS: [BSC=a],[BTS=b],SHELF=c,CARD=d,ID=e,[CHIP=f];
a:
BSC Number
b:
BTS Number
c:
SHELF NAME(CAMU,CAMDU,ASMU,ALSU,BANU)
d:
CARD NAME(ASCA,ASIA,AOTA,ATSA,ALMA,LICA)
e:
CARD ID(0~3)
f:
CHIP Number(0~1)
Input : DIS-NET-STS:BSC=0,BTS=0,SHELF=BANU,CARD=LICA,ID=0;
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Fig. 4.4-9 Result of Network Status Display Command
4.4.2.2. ALPA Network Status Display
Function to display the ALPA Network status.
Command : DIS-ALPA-STS:BSC=a,ALMA=b,ALPA=c;
a:
BSC Number(0~11)
b:
ALMA ID(0~1)
c:
ALPA ID(0~4)
Input : DIS-ALPA-STS:BSC=0,ALMA=0,ALPA=0;
Fig. 4.4-10 Result of ALPA Network Status Display
4.4.2.3. PDSN NODE Status Display
Function to display the PDSN NODE Network status
Command : DIS-PDSN-STS:SHELF=a,PIP=b;
a: SHELF(PCP(00~02),PMP(00~02))
b: PIP(0~10)
Input : DIS-PDSN-STS:SHELF=PCP00,PIP=0;
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Fig. 4.4-11 Result of PDSN NODE Status Display
4.4.2.4. PCFU Network Status Display Command
Function to display the PCFU Network Status
Command : DIS-PCF-NET:PROC=a,TYPE=b;
a: PCP(00~02),PMP(00~02)
b: PIP_FERA,FETA_PDSN
Input : DIS-PCF-NET:PROC=PCP00,TYPE=PIP_FERA;
Fig. 4.4-12 Result of PCFU Network Status Display Command
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4.4.2.5. ALPA Network Block Command
Function to block the
ALPA Network.
Command : BLK-ALPA:BSC=a,ALMA=b,ALPA=c,[TYPE=d],[LINK=e];
a: BSC Number(00~11)
b: ALMA ID(0~1)
c: ALPA ID(0~4)
d: TYPE(STM_1,E1)
e: LINK(0~15)
Input : BLK-ALPA:BSC=0,ALMA=0,ALPA=0,TYPE=STM_1,LINK=0;
Fig. 4.4-13 Result of ALPA Network Block Command
4.4.2.6. UNBlock Command
Function to unblock the ALPA Network.
Command : UBLK-ALPA:BSC=a,ALMA=b,ALPA=c,[TYPE=d],[LINK=e];
a: BSC Number(00~11)
b: ALMA ID(0~1)
c: ALPA ID(0~4)
d: TYPE(STM_1,E1)
e: LINK(0~15)
Input : UBLK-ALPA:BSC=0,ALMA=0,ALPA=0,TYPE=STM_1,LINK=0;
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Fig. 4.4-14 Result of ALPA Network UNBlock Command
4.4.3. Can Device Status Control
Table 4.4-3 DEVICE Status List
Status
Definition
Types
NORM
Normal
ABN_D
Abnormal Deletion (Even equipped to PLD, it is in the Status of Removal)
ABN_F
Abnormal Fault(Status that normal operation is impossible due to fault in
Device)
(Test: As a result of DSP Chip Hardware Test, NOK occurs)
ABN_M
Abnormal MMC Block
INIT
Initial (Even equipped to PLD, a processor managing the corresponding
device does not operate normally until now)
AB_OB
Abnormal Online Block (Based on judgment that a normal call is impossible
due to faults in other devices, the appropriate device is blocked)
IDLE
Even if it is normal, call resources are not allocated (CE, VCE)
BUSY
normal and call resources are allocated (CE, VCE)
N_EQP
Status defined as Not Equipped to PLD
READY
Even if not defined in PLD, Device is inserted
UNDEF
Status that un-defined status is inserted
ABN_I
Status being separated as H/W Reset
ABN_B
BER Test Status by User
NOR_PB
In case that call exists when CHC, Chip is blocked, it indicates the status that
awaits until a call is terminated
it indicates, the Status that waits for the call termination in order to perform
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the Vocoder test.
REDNCY
In duplicated Device, it indicates Redundancy Status of Standby side(FETA
Only)
CB_OPN
For device that is managed only as fault, it is the case that is opened to Fault
Cable
CLK_F
During Vocoder Channel test, as a result of Timing-Module test, NOK
occurred (Test Only)
TSW_F
As a result of TSLU Loopback test, NOK is occurred (Test Only)
ABN_AT
Status in which Vocoder is put to Automatic(Online) test (Test Only)
ABN_MT
Status in which Vocoder Manual(Ondemand) is put to test (Test Only)
QAT0_F
As a result of QCELP Algorithm test during Vocoder channel test, NOK
occurred in State 0 (Test Only)
QAT1_F
As a result of QCELP Algorithm test during Vocoder channel test, NOK
occurred in State 1 (Test Only))
QAT2_F
As a result of QCELP Algorithm test during Vocoder channel test, NOK
occurred in State 2 (Test Only)
QAT3_F
As a result of QCELP Algorithm test during Vocoder channel test, NOK
occurred in State 3 (Test Only)
VPLB_F
As a result of VCPA Loopback test during Vocoder channel test, NOK
occurred (Test Only)
VMLB_F
As a result of VCMA Loopback test during Vocoder channel test, NOK
occurred (Test Only)
VLLB_F
As a result of VLIA Loopback test during Vocoder channel test, NOK occurred
(Test Only)
4.4.3.1. CAN Device Status Display Command
Function to display Device(BOARD) Status mounted to CAN
Command : DIS-CAN-DEV:PROC=a;
a : CNP,PNP,PCP(00~02)
Input : DIS-CAN-DEV:PROC=CNP;
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Fig. 4.4-15 Result of CAN Device Status Display Command
4.4.3.2. GPS(CAN) Status Display Command
Function to display Device and Information of CAN GPS.
Command : DIS-GPS-STS:TYPE=a;
a : ALL,GPS_DEV,GPS_INFO
Input : DIS-GPS-STS:TYPE=ALL;
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Fig. 4.4-16 Result of GPS(CAN) Status Display Command
4.4.3.3. H/W RESET CAN DEVICE Command
Function to reset CAN Device on H/W Level
Command : RMT-CAN-DEV:PROC=a,DEV=b,ID=c,[SIDE=d],CLS=e;
a: Processor :CNP,PNP,PCP(00~02),PMP(00~02)
b: Device Name: ASCA,ASIA,AOTA,ATSA,PIP,FERA,FETA,BCRA
c: Device ID : 0~10
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d: SIDE:A_SIDE,B_SIDE
e: CLASS : HARDRST,ISOLAT,UNISOL
Input : RMT-CAN-DEV:PROC=PNP,DEV=ASCA,ID=0,SIDE=A_SIDE,CLS=HARDRST;
Fig. 4.4-17 Result of H/W RESET CAN DEVICE Command
4.4.4. BSC Device Status Control
4.4.4.1. BSC Device Status Display Command
Function to display Status of various Boards mounted to BSC
Command : DIS-BSC-DEV:BSC=a,PROC=b;
a : BSC Number(00~11)
b : PROC Name(NCP,SCP,ALP,SMP(00~04),VMP(00~08))
Input : DIS-BSC-DEV:BSC=1,PROC=NCP;
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Fig. 4.4-18 Result of BSC Device Status Display
4.4.4.2. SLPA Status Display Command
Function to display the SLPA Status
Command : DIS-SLPA-STS:BSC=a,SMP=b,[SLPA=c];
a : BSC Number(00~11)
b : SMP Number(00~04)
c : SLPA Number(00~17)
Input : DIS-SLPA-STS:BSC=0,SMP=0,SLPA=0;
Fig. 4.4-19 Result of SLPA Status Display Command
4.4.4.3. VCPA Status Display Command
Function to display the VCPA Status
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Command : DIS-VCPA-STS:BSC=a,VMP=b,[VCPA=c];
a : BSC Number(00~11)
b : VMP Number(00~07)
c : VCPA Number(00~15)
Input : DIS-VCPA-STS:BSC=0,VMP=0,VCPA=0;
Fig. 4.4-20 Result of VCPA Status Display Command
4.4.4.4. E1 LINK Status Display Command
Function to display E1 Link Status of VLIA
Command : DIS-E1-STS:BSC=a,VMP=b,[VLIA=c];
a : BSC Number(00~11)
b: VMP Number(00~07)
c: VLIA Number(00~01)
Input : DIS-E1-STS:BSC=0,VMP=0,VLIA=0;
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Fig. 4.4-21 Result of E1 LINK Status Display Command
4.4.4.5. TS Network LINK Status Display Command
Function to display the Status of TS Network Link of VLIA.
Command : DIS-TS-STS:BSC=a,VMP=b,VLIA=c,E1=d;
a : BSC Number(00~11)
b : VMP Number(00~07)
c : VLIA Number(00~15)
d : E1 Number(00~15)
Input : DIS-TS-STS:BSC=0,VMP=0,VLIA=0,E1=0;
Fig. 4.4-22 Result of TS Network LINK Status Display Command
4.4.4.6. VCE(Vocoder Channel Element) Status Display Command
Table 4.4-4 Vocoder Channel Element Status LIST
Status Types
Definition
Description
IDLE
Idle
Normal status without a Call
8K_Qcelp
8k Qcelp Call
8k QCELP Call Seized Status
8K_EVRC
8k EVRC Call
8k EVRC Call Seized Status
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13K_Qcelp
13k Qcelp Call
13k QCELP Call Seized Status
13K_EVRC
13k EVRC Call
13k EVRC Call Seized Status
ABN_M
Abnormal MMC Block
Blocked Status by user’s MMC
UNDEF
Undefined Status
Status with Input of undefined Status
Function to display the Channel Element Status of VCE.
Command : DIS-VCE-STS:BSC=a,VMP=b,[VCPA=c];
a : BSC Number(00~11)
b : VMP Number(00~07)
c: VCPA Number(00~15)
Input : DIS-VCE-STS:BSC=0,VMP=0,VCPA=0;
Fig. 4.4-23 Result of VCE(Vocoder Channel Element) Status Display Command
4.4.4.7. SLPA BLOCK Command
Function to block SLPA.
Command : BLK-SLPA:BSC=a,SMP=b,SLPA=c,[SLV=d];
a : BSC Number(00~11)
b : SMP Number(00~04)
c : SLPA Number(00~17)
d : SLV Number(00~03)
Input : BLK-SLPA:BSC=0,SMP=0,SLPA=0,SLV=0;
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Fig. 4.4-24 Result of SLPA BLOCK Command
4.4.4.8. SLPA UNBLOCK Command
Function to unblock SLPA.
Command : UBLK-SLPA:BSC=a,SMP=b,SLPA=c,[SLV=d];
a : BSC Number(00~11)
b : SMP Number(00~04)
c : SLPA Number(00~17)
d : SLV Number(00~03)
Input : UBLK-SLPA:BSC=0,SMP=0,SLPA=0,SLV=0;
Fig. 4.4-25 Result of SLPA UNBLOCK Command
4.4.4.9. VCPA BLOCK Command
Function to block VCPA.
Command : BLK-VCPA:BSC=a,VMP=b,VCPA=c,[SLV=d],[DSP=e];
a : BSC Number(00~11)
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