BTS3900A/BTS3900/DBS3900
BTS RAN SHARING HARDWARE INSTALLATION ACCEPTANCE PROTOCOL
Q1 2019 741 Sites 3G & 4G New Infill
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Document Title: ATP for Scenario 1.1 U21L21 New Converage 741 Site Release status: release
A. SITE INFORMATION Site ID Site Name BSC / RNC Area BTS / Node B type Site Configuration Huawei Wireless Equipment Subcontractor Company Subcontractor Supervisor Installation started date Installation finished date Location and Coverage Type of BTS/NodeB Cabinet Type of Deployment Type of Power System
: : : : : : : : : : : : : :
163685WLN160 NEW TELIHAN ‐ B2S Samarinda DBS3900 S1/1/1 3G 4G PT.GCI Indonesia Bambang 2019‐02‐01 2019‐02‐09 Greenfield DBS3900 New TP48200A
B. EQUIPMENT BTS and NodeB Hardware on Main Rack Quantity
Serial Number
Source**
Remark
1. UMPTb9 1 210305570210K1000133 New Purchase 2103057715510K1004957 1 New Purchase 2. UBBPe4 New Purchase 2102310SFMLUJB032857 3. UPEUd 1 4. RRU… (2100 MHz) 3 00855 2102312CFD4MK1000020 21023 New Purchase 5. FANe 2102311CHK6TJC909266 1 New Purchase 6. BBU Box 1 210231WYG6TJC906299 New Purchase 3 18C0616151 4X18C0616445 4X18C06161 New Purchase 7. RF Antenna 2‐Port ** Fill with from “H3I Warehouse” (Re‐use) or “New Purchase” from Huawei License Hardware on Main Rack
Source**
Quantity
Remark
New Purchase 32 1. UL License (per 16 CE) New Purchase 24 2. DL License (per 16 CE) 3. HSDPA Code New Purchase 45 4. 16 QAM Modulation (per NodeB) 5. Other (………………….) ** Fill with from “Existing” (Re‐use) or “New Purchase” from Huawei
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C. HARDWARE INSTALLATION CHECK ITEMS 1. Installation of Equipment Check Content No The parts of the rack should not be distorted and not affecting the equipment 1 appearance, and Cabinet is fixed firmly.
YES / NO / N/A YES
2 The RF cable connector needs to be installed perfectly.
YES
3 The existing RF cable needs to be adjusted.
YES
Cables should be tiled with uniform spacing and moderate tightness. Cable ties should be tied in a tidy way. The board can be plugged and unplugged smoothly. Its panel screws should have 5 appropriate tightness if they exist. The jumpers are properly connected according to the sector and master/diversity 6 relation, and are routed in a neat way. The cross RF jumper between the RFU which are in the same sector should be installed 7 perfectly. 4
2. Installation of Antenna and Feeder Cable Check Content No Waterproof and sealed measures for all outdoor jumpers and feeder cables should be 1 correctly adopted according to specifications. The feeder cables should not have obvious bending and twisting and bare copper 2 appearance. 3 The connector of feeder cable is made in a standard way without any loose connection. The connection between antenna support and tower should be reliable and firm. The connection between antenna and its support should also be reliable and firm. The azimuth and tilt angle of the installed antenna must accord with design 5 specifications. 4
6 The antennas mechanical down tilt angles should be correct. When a feeder window is installed on the top of building to lead the feeder cable into the room, it must be sealed well. The jumpers are properly connected according to the sector and master/diversity 8 relation, and are routed in a neat way The labels of communication cables, feeder cables and jumper should be stuck and tied 9 according to specifications. The labels should be arranged in an orderly way with same The jumper of the antenna should be tied along the rail of the support to the steel frame 10 of the power.
The labels of the antenna system can be easily identified. The color rings are stuck correctly according to the requirements.
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YES YES
YES / NO / N/A YES YES YES YES YES
YES YES YES YES YES
11 Jumper cable must connect tightly with the connector of the board (RFU)
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YES
YES
7
12
YES
YES
Document Title: ATP for Scenario 1.1 U21L21 New Converage 741 Site Release status: release
3 Others No
YES / NO / N/A
Check Content
1 The installation tools accord with the antistatic requirements.
YES
2 Check that all installation and packing materials have been removed from the site
YES
3
The equipment room should be neatness and tidy. Discarded packing materials should be cleaned. Spare parts should be arranged in a tidy way after installation.
YES
D. ELECTRICAL CHECK Type of Deployment New Deployment Check Content YES / NO / N/A No YES 1 Make sure the power cable from the power distribution panel to power rack installed corr 3 V DC (‐40 to ‐60V DC) 2 Measures the DC voltage on base and extension racks available : E. ANTENNA AND FEEDERS INFORMATION 3G and 4G Antennas and Feeders Sector Antenna Type * 0 DX‐1710‐2200‐65‐19.5i‐M 1 DX‐1710‐2200‐65‐19.5i‐M 2 DX‐1710‐2200‐65‐19.5i‐M * put checkmark if applicable Feeder Type Feeder Length Indoor Jumper Cable Length (m) Outdoor Jumper Cable Length (m) *Fill if only site using Feeder
Height 28 28 28 Sector 0 0 0 0 3
Direction 70 190 350
Mech Tilt 2 2 2
Sector 1 0 0 0 3
Elect Tilt 2 2 2 Sector 2 0 0 0 3
F. VSWR MEASUREMENT VSWR 3G (<1.4 , With Combiner) Distance‐to‐Fault * Feeder Length (m) Measurement (<1.3, Without Combiner) VSWR Frequency VSWR Distance (m) Ant 0 0 0 0 0 0 Sector 0 0 0 0 0 0 Ant 1 0 0 Ant 0 0 0 0 Sector 1 Ant 1 0 0 0 0 0 Ant 0 0 0 0 0 0 Sector 2 0 0 0 0 Ant 1 0 *DTF is for troubleshoot purpose only, no threshold value *Fill above value based on Site Master measurement if site using feeder, if No Feeder only using U2000 Capture
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G. SITE CLEANING No
YES / NO / N/A
Check Content
1 All rubbish in area Installation cleaned.
YES
2 The rest of materials sent back to warehouse and inform person in charge.
YES
3 The site area/container keys should be available and secure.
YES
H. HANDOVER DOCUMENTS YES Is the equipment inventory at the site in hard and soft copy? (Attached with DN or PO) J. Photos of Site Include Photos of SIR (Site Installation Report) □ Front view of Site or Building □ Front view of Tower Label/Site Plate □ Front view of Cabinet (3G and 4G) ‐ door closed □ Front view of Cabinet (3G and 4G) ‐ door open □ Front view of BBU Box (View off all board that Installed at BBU Box) □ Feeder Cable/Optic Cable laying straight on the runway and labeled □ Feeder Jumper/Optic Cable installed properly and labeled □ RRU's Installed on Sector 0 □ RRU's Installed on Sector 1 □ RRU's Installed on Sector 2 □ Antenna Cable Jumper installed properly and sealed by rubber tape. □ Grounding Kit Installed Properly to Ground Bar □ Tower/ Pole structure □ Photo of SIR "Equipment Measurement" □ Photo of SIR "Panoramic Photo " J. CONCLUSION SUMMARY YES Does the inspection indicate that Commissioning can start?
K. FINAL DECISION Accepted APPROVER LOG Approver Info
:
L1:Suprianto WX543947;L2:Rahmad Hadi Negoro WX571551;L3:I Ketut AnggoroL4:indroL5:Mimit Firman Adi
Completion Time
:
2019‐02‐26 19:23:23
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Document Title: ATP for Scenario 1.1 U21L21 New Converage 741 Site Release status: release
PHOTO ATTACHMENT Front View of Site or Building
Front View of Cabinet (2G & 3G & 4G) – Door Closed
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Front View of Cabinet (2G & 3G & 4G) – Door Opened
Front view of BBU Box (View off all board that Installed at BBU Box )
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Feeder cable/Optic Cable laying straight on the runway and labeled
Feeder Jumper/Optic Cable Installed Properly and Labeled
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RRU's Installed on Sector 0
RRU's Installed on Sector 1
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RRU's Installed on Sector 2
Antenna Cable Jumper Installed Properly and Sealed by Rubber Tape
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Grounding Kit Installed Properly to Ground Bar
Tower / Pole Structure
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Capture VSWR Sec 0 (Main, Div)
Capture VSWR Sec 1 (Main, Div)
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Capture VSWR Sec 2 (Main, Div)
Photos of SIR "Equipment Measurement"
Sector 0 (3G&4G)
View RF
Label
Measurement RF
Azimuth
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Arm Brecket RF Up
Arm Brecket RF Down
Brecket RF Up
Brecket RF Down
Mechanical Tilt
Electrical Tilt
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Sector 1 (3G&4G)
View RF
Label
Measurement RF
Azimuth
Arm Brecket RF Up
Arm Brecket RF Down
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Brecket RF Up
Brecket RF Down
Mechanical Tilt
Electrical Tilt Sector 2 (3G&4G)
View RF
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Label
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Measurement RF
Azimuth
Arm Brecket RF Up
Arm Brecket RF Down
Brecket RF Up
Brecket RF Down
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Mechanical Tilt
Electrical Tilt
Photos of SIR "Panoramic Photo"
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0°
30°
60°
90°
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120°
150°
180°
210°
240°
270°
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300°
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330°
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UMTS Mobile Communication System BTS3900A/BTS3900/DBS3900A
H3I Project NodeB Acceptance Test Report
Q1 2019 741 Sites 3G & 4G New Infill
REMARKS: The attached signatures certificate that the eNodeB has been accepted according with the describe tests in this document.
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Document Title: ATP for Scenario 1.1 U21L21 New Converage 741 Site Release status: release
NodeB SITE INFORMATION Site ID Site Name Site Address RNC Area Configuration Subcontractor Company Subcontractor Supervisor Mobile Number Date of Integration Date of Acceptance Type of Site Type of ENodeB
: 163685WLN160 : NEW TELIHAN ‐ B2S : JL.Pontianak 7 Rt.26 Kel.Gunung Telihan Kec.Bontang Barat Kota Bontang, Kalimantan Timur : Samarinda : S1/1/1 : PT.GCI Indonesia : Bambang : 089690333670 : 2019‐02‐09 : 2019‐02‐09 : Green field (Macro / IBC) : DBS3900
1. DOCUMENT The documents of “NODEB BASIC FUNCTIONALITY TEST REPORT” that perform test call when swapping must attach with this Report.
YES
2. POWER TEST OF THE APM / BTS CABINET Objective Verify the output voltage. Prerequisites Put the AC breakers (rectifiers) and battery breakers in ON position. Procedure Put the breakers in ON position. Input Voltage: Normal value : 220VAC Average: VAC Permit range: From 181 VAC to 279 VAC Output Voltage: Normal Value: ‐48 to ‐56 V DC Average: VDC Permit Range: From ‐40VDC to ‐60VDC
Expected result The output voltage in every breaker is in the permitted range (181 VAC to 279 VAC)
The input voltage AC (‐40VDC to ‐60VDC)
Observations/ Remarks:
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3. HARDWARE STATUS CHECK Objective Verify the power‐on state of BBU and NodeB’s Boards. Verify the boards are running well through the visual check. Prerequisites Cabinet is power on. Expected result
Procedure
BBU is powered on and the RUN indicator works well. YES Boards are powered on and the RUN indicator works well. YES
1. Power on check of the BBU.
2. Power on check of Boards‐BTS3900/BTS3900A. (Check all the boards at BBU, FAN and WRFU) 3. Status check of Board. Query all the board status through DSP BRD: CN=MASTER;
All board status displayed in the returned result is “Enable”. YES
Observations/ Remarks:
4. DATABASE AND NODEB SOFTWARE To do the following tests the LMT software must be running with the username “admin” and password “NodeB”
LMT ACCESS LOGIN PASSWORD
admin hwbs@com
To get the NODE B software execute the next command of the LMT:
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LST VER;
SOFTWARE
VERSION
Software
V100R012C10SPC260
To get the software and hardware version execute the next command in the LMT: DSP BRDVER;
HARDWARE UMPT (SRN=0, SN=7) UBBP (SRN=0, SN=3) UBBP (SRN=0, SN=1) RRU 0 (SRN=4, SN=3) RRU 1 (SRN=4, SN=4) RRU 2 (SRN=4, SN=5)
VERSION SOFTWARE/HARDWARE V100R012C10SPC260 V100R012C10SPC260 V100R012C10SPC260 V100R012C10SPC260 V100R012C10SPC260 V100R012C10SPC260
5. COMMISSIONING AND CONFIGURATION TEST To do the following tests the LMT software must be running with the username “admin” and password “NodeB”
NODEB TEST 1. verify the Master Clock configuration execute the next command: DSP CLKSTAT:; 2. Verify all the optic modules of the CPRI interface in the NODE B, write the next command:
EXPECTED RESULT
MEASUREMENT
Verify the port state, it must OK be Normal Verify that the position of all interfaces are available (IN BBU POSITION) MODULE 0:
DSP OPINFO:CN=MASTER,SRN=<subrack‐ bbu>, SN=<slot_no>;
MODULE 1: MODULE 2:
DSP OPINFO:CN=MASTER,SRN=<subrack‐ rfu>, SN=<slot_no>; BBU 0 (SRN=0, SN=3) RRU 0 (SRN=23, SN=0) RRU 1 (SRN=24, SN=0) RRU 2 (SRN=25, SN=0)
RFU MODULE 0: MODULE 1: MODULE 2:
3. Verify the cells status. To do this, execute the next command. LST LOCELL; DSP LOCELL;
It must verify that all cells are available:
4. Verify FE link management.To RNC and M2000
The FE status is displayed at the NodeB.
Query FE link status through PING IP: SRN=0, SN=<slot_no>, SIPADDR="*.*.*.*", DESTIP="*.*.*.*", CONTPING=NO;;
The displayed FE link status OK displayed is “Normal”.
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OK OK OK
OK OK OK
OK
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5. Verify SCTP links and IP path. Query the current SCTP link and IP path throught LST SCTPLNK:; LST IPPATH:;
1. The SCTP link and IP path data is displayed. 2. The status of the SCTP link SCTP Link: YES and IP path data is dynamically displayed.
Query the SCTP link and IP path status through DSP SCTPLNK: SCTPNO=; DSP IPPATH: PATHID=<path_no>; TRACERT:; (to M2000 and RNC)
IP path:
YES TRACERT:;
YES
Capture DSP CLKSTAT
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Capture DSP OPINFO:CN=MASTER
Capture LST LOCELL
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Capture DSP LOCELL
Capture PING IP
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Capture LST SCTPLNK:;
Capture LST IPPATH:;
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Capture DSP SCTPLNK:
Capture DSP IPPATH:
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Capture TRACERT
7. NODEB LICENSE & CE Board Capacity To query the NodeB License configuration execute the following command: DSP LICENSE:; DSP BBPTC:;
Capture DSP License
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*License configuration should follow the SDB Capture DSP BBPTC
7. ALARM QUERY To do the following tests the LMT software must be running with the username “admin” and password “ENodeB” ALARM QUERY EXPECTED RESULT MEASUREMENT Query active alarms through related MML The returned result indicated the commands. system didn’t report any service o Query active NodeB alarms through affected alarms. o LST ALMAF: CNT=64;. Observations/ Remarks:
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8. Environmental alarms Physical port no. on USLP2 IN2 1 & 2 IN2 3 & 4 IN3 1 & 2 IN3 3 & 4 IN0 1 & 2 IN0 3 & 4 IN1 1 & 2 IN1 3 & 4
Alarm Name
Status
Mains Failure OBL Failure Arrester Failure Genset 1 Run / Hidrogen Run Genset 2 Run (if available) Fuel Empty / Hidrogen Low Fuel Hidrogen Faulty / Genset not RUN Not Occupied
OK NA OK NA NA NA NA NA
Remark
NOTE: ENVA Testing needs to be checked at NodeB, IF only the 2G Equipment is not Huawei and the rectifier is Agisson TP48200A
Integrated Alarm 1 2 3 4 5 6 7
Alarm Name
Status
Door Open Smoke Alarm Temperature Water Immersed Rectifier Mains Fail Rectifier Fail Battery Low Voltage
OK OK OK OK OK OK OK
Remark
Note:
1. For outdoor scenario, Door Open, Fire & Smoke, Temperature Monitoring, Water Immersed, these sensors already integrated in the APM30 cabinet. 2. In APM30, Rectifier Mains Fail (AC power‐off alarm), Rectifier Fail, Battery Low Voltage have already been integrated in internal monitoring system, connect to MON1 in UPEU.
3. The rest external alarms connect to USLP2 board In0/1/2/3.
9. VSWR CHECK VSWR VISUAL CHECK
EXPECTED RESULT
MEASUREMENT
No VSWR alarm is generated VSWR visual check from WRFU board
Check the VSWR LED on the board. Off (red) No VSWR alarm is generated. On (red) A VSWR alarm is generated.
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10. CELL INFORMATION Objective Query some Information of the cell. Prerequisites 1. The eNodeB works well after system commissioning. 2. Log in to the eNodeB LMT System. Procedure Query the some cell information about the eNodeB DSP CELL: MODE=ALLCELL; Cell 0 Cell ID 0 UL Frequency 9613 DL Frequency 10563 Primary Scrambling Code Max Transmission Power (0.1dBm) 460 Observations/ Remarks:
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Cell 1 1 9613 10563
Cell 2 2 9613 10563
460
460
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Cell 3 NA NA NA NA NA
Cell 4 NA NA NA NA NA
Cell 5 NA NA NA NA NA
Document Title: ATP for Scenario 1.1 U21L21 New Converage 741 Site Release status: release
11. IP INFORMATION Procedure Query the some OM IP information about the NodeB LST OMCH:; Local IP Address (NodeB OM IP) Local IP Mask Peer IP Address (M2000) Peer IP Mask Query the service IP of NodeB LST DEVIP:; IP Address (NodeB service IP) IP Mask Observations/ Remarks:
192.168.0.49 255.255.255.0 255.255.255.0
Capture LST DEVIP
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12. Service Verification Objective Test the service in each cell. Prerequisites 1. The eNodeB works well after system commissioning. 2. Log in to the eNodeB LMT System. Procedure Query the some cell information about the eNodeB DSP CELL: MODE=ALLCELL; Sector 0 CS Voice‐ Originated Call OK CS Voice‐ Terminated Call OK CS Video‐ Originated Call OK CS Video‐ Terminated Call OK PS Call OK SMS OK Observations/ Remarks:
Sector 1 OK OK OK OK OK OK
Sector 2 OK OK OK OK OK OK
Sector 1 ‐1.050
Sector 2 ‐1.054
13. RTWP Value* Carrier 1st Carrier Frequency
Sector 0 ‐1.054
*Threshold for Macro site is ‐100dBm and IBC is ‐95dBm; *If during ATP found that RTWP value more than ‐100dBm (Macro) or ‐95dBm (IBC), Unblock the cell to get the capture of 24 hours of Min RTWP from M2000, if normal during non‐busy Hour, ATP should be passed; *If found RTWP value abnormal due to external interference and if confirmed, ATP should be passed.
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Normal RTWP capture from LMT ‐ Sec 0
Normal RTWP capture from LMT ‐ Sec 1
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Normal RTWP capture from LMT ‐ Sec 2
M2000 capture 24‐hours for RTWP. RTWP Value normal during non‐busy hour
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14. SPEEDTEST CAPTURE
Sector 0
Sector 1
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Sector 2
15. G‐TRECK CAPTURE
Sector 0
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Sector 1
Sector 2
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LTE Mobile Communication System eNodeB BTS3900A/BTS3900/DBS3900
H3I Project eNodeB Acceptance Test Report Q1 2019 741 Sites 3G & 4G New Infill
REMARKS: The attached signatures certificate that the eNodeB has been accepted according with the describe tests in this document.
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A. eNodeB SITE INFORMATION Site ID Site Name Site Address
: 163685WLN160 : NEW TELIHAN ‐ B2S : JL.Pontianak 7 Rt.26 Kel.Gunung Telihan Kec.Bontang Barat Kota Bontang, Kalimantan Timur : Samarinda : S1/1/1 : PT.GCI Indonesia : Bambang : 089690333670 : 2019‐02‐09 : 2019‐02‐09 : Green field (Macro / IBC) : DBS3900
MME Name Configuration Subcontractor Company Subcontractor Supervisor Mobile Number Date of Integration Date of Acceptance Type of Site Type of ENodeB
B. Additional Equipment for eNodeB eNodeB Hardaware Qty
Serial Number
Source**
1. UMPT…. (4G)
1
210305570210K1000133
New purchase
2. UBBP…. (4G)
1
210305715510K1004957
New purchase
3. UPEU…. (4G)
1
2102310SFMLUJB032857
New Purchase
4. FAN….. (4G)
1
2102310SFMLUJC024985
New Purchase
5. Optical Transceiver (4G)
6
NA
New Purchase
Hardware on Main Rack
2102312CFD4MJC000855 2102312CFD4MK1000020 2102312CFD4MJC000872
5. RRU (4G)
3
6. SFP Cable (4G)
3
NA
New Purchase
5. PSU 50A
NA
NA
NA
6. PSU 30A
NA
NA
NA
7. Battery ……Ah
NA
NA
New Purchase
8. DCDU
NA
NA
NA
Remark
New Purchase
8. …………………. * Fill only equipment that installed for eNodeB MIMO Upgrade ** Fill with from “H3I Warehouse” (Re‐use) or “New Purchase” from Huawei
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License eNodeB Quantity
Item
Source**
Remark
250 New Purchase 1. RRC Connected User 3 New Purchase 2. Carrier License 3 New Purchase 3. LTE bandwidth license 8. …………………. ** Fill with from “Existing” (Re‐use) or “New Purchase” from Huawei
C. HARDWARE INSTALLATION CHECK ITEMS C1. Installation of Equipment Check Content No 1 Cables should be tiled with uniform spacing and moderate tightness. Cable ties should be tied in a tidy way 2
The board can be plugged and unplugged smoothly. Its panel screws should have appropriate tightness if they exist.
C.2. Others No
Check Content
YES / NO / N/A YES YES
YES / NO / N/A
1 The installation tools accord with the antistatic requirements.be tied in a tidy way
YES
2 Check that all installation and packing materials have been removed from the site
YES
3
The equipment room should be neatness and tidy. Discarded packing materials should be cleaned. Spare parts should be arranged in a tidy way after installation.
D. SITE CLEANING No
Check Content
YES
YES / NO / N/A
1 All rubbish in area Installation cleaned.
YES
2 The rest of materials sent back to warehouse and inform person in charge.
YES
3 The site area/container keys should be available and secure.
YES
E. HARDWARE STATUS CHECK E.1 Board Status Check Objective Verify the power‐on state of BBU and NodeB’s Boards. Verify the boards are running well through the visual check. Prerequisites Cabinet is power on. Procedure
Expected result BBU is powered on and the RUN indicator works well. OK
1. Power on check of the BBU.
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2. Power on check of Boards‐BTS3900/BTS3900A. (Check all the boards at BBU, FAN and MRFU or MRRU)
Boards are powered on and the RUN indicator works well.
3. Status check of Board. Query all the board status through DSP BRD: CN=MASTER;
OK
Observations/ Remarks:
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E.2 BBU Device Panel Capture BBU Device Panel After LTE Implementation*
F. DATABASE AND eNODEB SOFTWARE To do the following tests the LMT software must be running with the username “admin” and password “ENodeB” LMT ACCESS LOGIN PASSWORD
admin hwbs@com
To get the eNODE B software execute the next command of the LMT: LST VER; SOFTWARE Software
VERSION V100R012C10SPC260
To get the software and hardware version execute the next command in the LMT: DSP BRDVER; HARDWARE UMPT (SRN=0, SN=7) UBBP (SRN=0, SN=2)
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VERSION SOFTWARE/HARDWARE V100R012C10SPC260 V100R012C10SPC260
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G. COMMISSIONING AND CONFIGURATION TEST To do the following tests the LMT software must be running with the username “admin” and password “ENodeB” NODEB TEST EXPECTED RESULT MEASUREMENT 1. verify the Master Clock configuration execute Verify the port state, it must the next command: OK be Normal DSP CLKSTAT:; 2. Verify the cells status. To do this, execute the It must verify that all cells are available: next command. OK LST LOCELL; DSP LOCELL; 3. Verify FE link management.To RNC and M2000 Query FE link status through PING IP: SRN=0, SN=<slot_no>, SIPADDR="*.*.*.*", DESTIP="*.*.*.*", CONTPING=NO;;
4. Verify S1 links Query the SCTP link and IP path status through DSP S1:;
The FE status is displayed at the NodeB. The displayed FE link status OK displayed is “Normal”.
1. The S1 link data is displayed.
S1 Link: OK
Observations/ Remarks: Capture DSP CLKSTAT:;
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Capture LST LOCELL;
Capture DSP LOCELL;
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Capture PING IP
Capture DSP S1:;
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H. eNodeB LICENSE: To query the ENodeB License configuration execute the following command: DSP LICENSE:;
*License configuration should follow the SDB DSP BBPTC:;
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I. ALARM QUERY To do the following tests the LMT software must be running with the username “admin” and password “ENodeB” EXPECTED RESULT MEASUREMENT ALARM QUERY Query active alarms through related MML The returned result indicated the commands. system didn’t report any service YES o Query active NodeB alarms through affected alarms. o b. LST ALMAF: CNT=64;. Observations/ Remarks:
J. CELL INFORMATION Objective Query some Information of the cell. Prerequisites 1. The eNodeB works well after system commissioning. 2. Log in to the eNodeB LMT System. Procedure Query the some cell information about the eNodeB DSP CELL: MODE=ALLCELL; Cell 0 Cell 1 Cell ID 0 1 UL Frequency 18100 18100 DL Frequency 100 100 Root Sequence Index 336 576
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Cell 2 2 18100 100 464
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Cell 3 NA NA NA NA
Cell 4 NA NA NA NA
Cell 5 NA NA NA NA
Cell 6 NA NA NA NA
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Max Transmission Power (0.1dBm) Observations/ Remarks:
460
460
460
K. IP INFORMATION Procedure Query the some OM IP information about the ENodeB LST OMCH:; Local IP Address (MBTS OM IP) Local IP Mask Peer IP Address (M2000) Peer IP Mask Query the service IP of ENodeB LST DEVIP:; IP Address (eNodeB service IP) IP Mask Observations/ Remarks:
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NA
NA
NA
NA
10.192.215.105 255.255.255.224 10.13.111.163 255.255.255.0
0 0
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LST OMCH:;
LST DEVIP:;
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L. Service Verification Objective Test the service in each cell. Prerequisites 1. The eNodeB works well after system commissioning. 2. Log in to the eNodeB LMT System. Procedure Query the some cell information about the eNodeB DSP CELL: MODE=ALLCELL; Sector 0 CSFB Voice‐ Originated Call OK CSFB Voice‐ Terminated Call OK PS Call (Background and Interactive) OK SMS OK Observations/ Remarks:
Sector 1 OK OK OK OK
Sector 2 OK OK OK OK
M. SITE PHOTO CHECKLIST □ Front view of Site or Building □ Front view of Cabinet (2G, 3G, and 4G) ‐ door closed □ Front view of Cabinet (2G, 3G, and 4G) – Before and After ‐ door open □ Front view of BBU Box (View off all board that Installed at BBU Box)‐ Before and After □ Front view of RFC Cabinet (View of All Board that Installed at RF Cabinet)
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N. CONCLUSION SUMMARY YES Does the inspection indicate that Commissioning can start? O. FINAL DECISION Accepted P. APPROVER LOG Approver Info
:
L1:Suprianto WX543947;L2:Rahmad Hadi Negoro WX571551;L3:I Ketut AnggoroL4:indroL5:Mimit Firman Adi
Completion Time
:
2019‐02‐26 19:23:23
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PHOTO ATTACHMENT 1. Front View of Site or Building
2. Front View of Cabinet (2G & 3G & 4G) – Door Closed
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3. Front View of Cabinet (2G & 3G & 4G) – Door Opened
4. Front view of BBU Box (View off all board that Installed at BBU Box )
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5. Front view of RFC Cabinet (View of All Board that Installed at RF Cabinet)
6. Photo RRU Sector 0
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7. Photo RRU Sector 1
8. Photo RRU Sector 2
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9. Photo RRU Sector 3
NA 10. Photo RRU Sector 4
NA
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11. Photo RRU Sector 5
NA 12. Photo RRU Sector 6
NA
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