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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Website:
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I
ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Revision History Product Version V2.03.02
Document Version
Serial Number
R1.0
Reason for Revision First published
Author Date R1.0
Document Version 2014-2-24
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Prepared by Zhang Jinwu
Reviewed by Sun Zhibo
Approved by Guo Chaohong
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II
ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Intended audience: microwave site engineers, test engineers and maintenance engineers
Proposal: Before reading this document, you had better have the following knowledge and skills. SEQ
Knowledge and skills Be familiar with ZXMW NR8250/8120 equipment
1
Reference material User manuals
2 3
Follow-up document: After reading this document, you may need the following information. SEQ
Reference material
Information
1 2 3
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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About This Document Summary Chapter
Description
1 Commissioning Workflow
Describe the general commissioning workflow.
2 Commissioning Preparations
Describe tools, instruments and other preparations before commissioning.
3 Checkups before Power-on
Describe checkup items before equipment power-on.
4 Checkups after Power-on
Describe checkup items after equipment power-on.
5 ZXMW NR8250/8120 (V2.03.02) System Configuration
Describe the parameters configuration.
6 System Check
Describe the checkup items after the system commissioning.
7 Antenna Alignment
Describe detailed operations of antenna alignment.
AppA Abbreviations
Describe abbreviations used in this document.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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TABLE OF CONTENTS 1
Commissioning Workflow .............................................................................. 1
2
Commissioning Preparations ........................................................................ 3
3
Checkups before Power-on ........................................................................... 6
4
Checkups after Power-on............................................................................. 11
5 5.1 5.2 5.3 5.4
ZXMW NR8250/8120 (V2.03.02) System Configuration............................... 12 ZXMW NR8250/8120 (V2.03.02) IDU Front Panel and Ports Instruction......... 12 ZXMW NR8250/8120 ODU Appearance ......................................................... 25 Login to NR8000 Series WEB LMT ................................................................. 27 ZXMW NR8250/8120 (V2.03.02) Equipment Configuration Workflow ............. 33
6
System Check ............................................................................................... 36
7
Antenna Alignment ....................................................................................... 39
AppA
Abbreviations................................................................................................ 46
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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FIGURES Figure 1-1 ZXMW NR8250/8120 (V2.03.02) Equipment Commissioning Workflow .............. 1 Figure 2-1 Commissioning Preparations .............................................................................. 3 Figure 3-1 Checkups before Power-on ................................................................................. 6 Figure 5-1 NR8250 (V2.03.02) IDU Front Panel ................................................................. 12 Figure 5-2 NR8120 (V2.03.02) IDU Front Panel ................................................................. 12 Figure 5-3 RCUB Board Front Panel .................................................................................. 13 Figure 5-4 RMUC Board Front Panel ................................................................................. 13 Figure 5-5 RMUD Board Front Panel ................................................................................. 14 Figure 5-6 RMUE Board Front Panel.................................................................................. 14 Figure 5-7 RMUH Board Front Panel ................................................................................. 14 Figure 5-8 RTUA Board Front Panel .................................................................................. 15 Figure 5-9 RTUD Board Front Panel .................................................................................. 15 Figure 5-10 RTUC (Native 32E1) Board Front Panel.......................................................... 15 Figure 5-11 RTUB Board Front Panel ................................................................................ 16 Figure 5-12 RTUE Board Front Panel ................................................................................ 16 Figure 5-13 RTUNO Board Front Panel ............................................................................. 16 Figure 5-14 RTUNE Board Front Panel .............................................................................. 17 Figure 5-15 RTUHO Board Front Panel ............................................................................. 17 Figure 5-16 RTUHE Board Front Panel .............................................................................. 17 Figure 5-17 RTUNP Board Front Panel .............................................................................. 18 Figure 5-18 RSUA Board Front Panel ................................................................................ 18 Figure 5-19 PM Board Front Panel..................................................................................... 19 Figure 5-20 RPUA Board Front Panel ................................................................................ 19 Figure 5-21 RPUC Board Front Panel ................................................................................ 20 Figure 5-22 RFAB Board Front Panel................................................................................. 20 Figure 5-23 RCMUA Board Front Panel ............................................................................. 21 Figure 5-24 RCMUB Board Front Panel ............................................................................. 22 Figure 5-25 RMEA Board Front Panel ................................................................................ 23 Figure 5-26 RTEA Board Front Panel................................................................................. 23 Figure 5-27 RTEB Board Front Panel................................................................................. 23 Figure 5-28 RPUB Board Front Panel ................................................................................ 24 Figure 5-29 RFAD Board Front Panel ................................................................................ 24
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Figure 5-30 ODU SRU ....................................................................................................... 25 Figure 5-31 ODU A400 6 GHz-11 GH ................................................................................ 26 Figure 5-32 ODU A400 13GHz-38GHz .............................................................................. 26 Figure 5-33 Select Internet Protocol (TCP/IP) .................................................................... 28 Figure 5-34 PC IP Address Settings ................................................................................... 29 Figure 5-35 NR8250 (V2.03.02) IDU and Computer Connection ........................................ 30 Figure 5-36 NR8120 (V2.03.02) IDU and Computer Connection ........................................ 30 Figure 5-37 IDU and Computer IP Addresses Query.......................................................... 31 Figure 5-38 WEB LMT Login Window ................................................................................ 31 Figure 5-39 Homepage of WEB LMT ................................................................................. 32 Figure 5-40 NE Name and NE IP Address ......................................................................... 33 Figure 5-41 ZXMW NR8250/8120 (V2.03.02) Equipment Configuration Workflow ............. 34 Figure 6-1 Inventory Information ........................................................................................ 36 Figure 6-2 Export Inventory Information ............................................................................. 37 Figure 6-3 View Link Status ............................................................................................... 37 Figure 7-1 Disable ATPC and ACM .................................................................................... 39 Figure 7-2 Disable XPIC..................................................................................................... 39 Figure 7-3 Main Lobe and Side Lobe ................................................................................. 40 Figure 7-4 A400 ODU Voltage and RSL Curve .................................................................. 42 Figure 7-5 SRU ODU Voltage and RSL Curve ................................................................... 42 Figure 7-6 Check XPIC Performance ................................................................................. 44 Figure 7-7 Check XPI Value ............................................................................................... 44
TABLES Table 1-1 ZXMW NR8250/8120 (V2.03.02) Equipment Commissioning Workflow ............... 2 Table 2-1 Commissioning Preparations Checklist ................................................................ 4 Table 3-1 Checkups before Power-on .................................................................................. 9 Table 4-1 Checkups after Power-on ................................................................................... 11
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Commissioning Workflow Purpose Understand the commissioning workflow of ZXMW NR8250/8120 (V2.03.02) equipment.
Preparation Download the following documents for reference ZXMW NR8250 (V2.03.02) Configuration Guide ZXMW NR8120 (V2.03.02) Configuration Guide
Step Figure 1-1 shows the commissioning workflow of ZXMW NR8250/8120 (V2.03.02) equipment.
Figure 1-1
ZXMW NR8250/8120 (V2.03.02) Equipment Commissioning Workflow
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Table 1-1 describes the key steps of the commissioning workflow of ZXMW NR8250/8120 (V2.03.02) equipment.
Table 1-1 Step
ZXMW NR8250/8120 (V2.03.02) Equipment Commissioning Workflow Operation
Instruction
1
Commissioning preparations
Network planning, IP planning, capacity planning, preparations of installation and commissioning tools
2
Checkup before power-on
Outdoor devices and indoor devices
3
Checkup after power-on
IDU power supply check and fan running status check
4
Software commissioning
Equipment IP address settings Equipment basic information settings Radio link configuration Services configuration Version upgrade
5
Antenna alignment
Align microwave antennas and build up the radio link.
Result Understand the commissioning workflow of ZXMW NR8250/8120 (V2.03.02) and go to commissioning preparations.
Reference ZXMW NR8250/NR8120 (V2.03.01) Commissioning Guide
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Commissioning Preparations Purpose To ensure smooth microwave equipment commissioning, preparations must be done before commissioning.
Preparation Figure 2-1 shows preparations before commissioning.
Figure 2-1
Commissioning Preparations
1 Engineering design files
Commissioning preparations checklist
3 Engineering software version
2 Tools and instruments
Step 1.
Engineering design files Following engineering design files should be obtained before commissioning operation. i.
Site addresses and contact information
ii.
Define the responsibility matrix of sites installation and list the installation works that should be done by the customer.
iii.
Fixed link design files and detailed engineering solution design files
iv.
Goods shipping list and customs files
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
v. 2.
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Local logistic workflow and out-warehouse and in-warehouse lists
Tools and instruments Tools and instruments must be calibrated by authorized national institutes.
3.
i.
Tools: cross screwdriver, flat screwdriver, side cut pliers, sharp nose pliers, adjustable wrench, knife, Inner hexagon wrench, insulation tape, horizontal ruler, coaxial cable for loopback, wire stripper and wire crimper
ii.
Instruments: bit error analyzer, multimeter and compass
iii.
Others: laptop computer, straight through or crossover network cables, serial port cables and USB driver
Engineering software and version packages According to the actual performance and function requirements onsite, if the software upgrade is necessary, prepare corresponding software version to ensure microwave equipment commissioning realizes all the functions properly. Software onsite must be the officially published version.
Commissioning preparations should be recorded in the table as shown in Table 2-1.
Table 2-1
Commissioning Preparations Checklist
No
Items
Preparation results
Remark
Tools and Instruments 1
Multimeter
□ OK
□ NOK
2
Cross screwdriver
□ OK
□ NOK
3
Flat screwdriver
□ OK
□ NOK
4
Side cut pliers
□ OK
□ NOK
5
Sharp nose pliers
□ OK
□ NOK
6
Adjustable wrench
□ OK
□ NOK
7
Knife
□ OK
□ NOK
8
Inner hexagon wrench
□ OK
□ NOK
9
Insulation tape
□ OK
□ NOK
10
Horizontal ruler
□ OK
□ NOK
11
Wire stripper
□ OK
□ NOK
12
Wire crimper
□ OK
□ NOK
13
Laptop computer
□ OK
□ NOK
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
14
Straight through or crossover network cables
□ OK
□ NOK
15
Bit error analyzer
□ OK
□ NOK
16
Compass
□ OK
□ NOK
Internal Use Only▲
Engineering Design Files 1
Site information list
□ OK
□ NOK
2
Link design files
□ OK
□ NOK
3
Detailed engineering technical solution
□ OK
□ NOK
4
Packing list
□ OK
□ NOK
5
Local logistics preparations
□ OK
□ NOK
Engineering Software 1
IIDU version package (optional)
□ OK
□ NOK
2
License Key
□ OK
□ NOK
Result Commissioning preparations are complete.
Reference ZXMW NR8250/NR8120 (V2.03.01) Commissioning Guide
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Checkups before Power-on Purpose After installation, microwave equipment must be checked again (after installation acceptance) before power-on.
Preparation Commissioning preparations are complete.
Step Figure 3-1 shows the checks before power-on.
Figure 3-1
1. i.
Checkups before Power-on
Power supply check Before the measurement, ensure that switches of the power module and the fan module are all OFF.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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ii.
Measure input polarity of power supply to ensure that there is no short circuit. Marks of the power terminals should be proper without mistake. Protective grounding should be connected properly. Switch on the power supply after all checks above are passed.
iii.
Measure voltage of power supply, check polarity correct and power supply located in the permitted range or not (DC nominal voltage is -48V, and the permitted range is located in -40V - -58V).
During the test process above, in case of any abnormity, cut off the power supply immediately and find out the fault causes.
Note: All operations that related equipment must be perform with antistatic wrist strap. Grounding should be well done. When inspect all kinds of power supply, pay attention to the on-off status of every switch and circuit breaker to avoid electric shock. 2.
Hardware installation check i.
Rack installation check
−
Check whether installation of rack and modules looks good and neat.
−
Check whether all screw of every modules are tightened.
−
Check whether cables are lined following the specifications.
−
Check whether labels are unified and clear, and are easily identified.
ii.
IDU and boards installation check
−
IDU installation check Check whether IDUs are installed in the correct positions and whether screws are tightened.
−
Boards installation check Usually, boards of ZXMW NR8250 (V2.03.02) IDU have been installed and debugged before delivery, so there is no need to operate on site. During field commissioning, check boards category, quantity and position in the IDU.
iii.
Antenna and feeder installation check Check whether antennas and feeders are matched. Ensure the installation is proper and antennas work correctly.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
−
Installation of antennas and feeder cables are complete.
−
Check antenna and feeder connection.
Internal Use Only▲
Check whether feeder cables and connecters are damaged. Check the connecters. Check antennas direction. Check connection between antenna and feeder cables. −
Test procedure should be arranged compactly to avoid repeated connection and disconnection of connectors and other sealed parts. Sealing tape should not be used on connectors until test is completely finished. As electromagnetic emission exists in running equipment, do not stand close to the running antenna. Equipment can be only installed and maintained by specially trained personnel.
Warning: When operating on equipment with high-intensity RF (radiated frequency) signals, pay attention to the high-intensity microwave impact on human body. 3.
Cables installation check Cables include power supply cables, grounding cables, E1 cables, IF (intermediate frequency) cables and low loss cables. Each cable’s checkup should follow the requirements below: i.
Power supply cables Check whether power supply cables are connected stably with correct polarity.
ii.
IF cables
−
Check if there is open or short circuit in IF cables.
−
Check if IF connecters are made properly.
−
Check if the IF cable is properly connected to ODUs and IDUs.
−
Check if the outdoor IF cable connectors are well waterproofed.
iii.
Grounding cables
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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−
Check whether racks grounding cables are installed correctly.
−
Check whether IDUs grounding cables are installed correctly.
−
Check whether ODUs grounding cables are installed correctly.
−
Check whether IF cables grounding cables are installed correctly.
iv.
Services cables
−
Check whether services cables are connected to the correct ports according to the engineering design.
−
Check whether services cables are lined correctly according to installation specifications.
−
Check whether labels on services cables are correct.
Check list before power-on Check results should be recorded into the table as shown in Table 3-1.
Table 3-1
Checkups before Power-on Data record
No
Items
Results
Voltage/SN/Dialing quantity and position/Jumper
Remark
Power supply
1
Power voltage
□ OK
□ NOK Hardware
1
Rack
□ OK
□ NOK
2
IDU and boards
□ OK
□ NOK
3
Antennas and feeders
□ OK
□ NOK Cables
1
Power cables
□ OK
□ NOK
2
Services cables
□ OK
□ NOK
3
IF cables
□ OK
□ NOK
4
Grounding cables
□ OK
□ NOK
Result Checkups before power-on are complete.
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Reference ZXMW NR8250/NR8120 (V2.03.01) Commissioning Guide
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Checkups after Power-on Purpose After checkups before power on, follow the correct order to power on microwave equipment. In this step, parameters and settings are not configured. Therefore, checkups after power-on mainly focus on power supply status of IDU and the fan unit operation.
Preparation Power-on sequence of ZXMW NR8250 (V2.03.02) equipment: 1.
heck and ensure power switches of all modules are on the OFF position.
2.
Turn on the power switch of the power cabinet.
3.
Plug the power cables in to the power ports of the IDU.
Step After equipment power-on, check power supply status of the IDU. RUN LED of IDU boards should blink slowly. Check results should be recorded into the table as shown in Table 4-1.
Table 4-1
Checkups after Power-on
No
Item
Results
1
Equipment power-on sequence
□ OK
□ NOK
2
IDU power supply status
□ OK
□ NOK
Data record
Remark
Result Equipment and boards running status check after power-on are complete.
Reference ZXMW NR8250/NR8120 (V2.03.01) Commissioning Guide
Example None
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ZXMW NR8250/8120 (V2.03.02) System Configuration
5.1
ZXMW NR8250/8120 (V2.03.02) IDU Front Panel and Ports Instruction Purpose Know appearance and ports instructions of ZXMW NR8250/8120 (V2.03.02) IDU.
Preparation Understand system composition and functional modules of the microwave transmission system. Understand ports characteristics of mainstream transmission products.
Step 1.
IDU front panel Figure 5-1 shows ZXMW NR8250 (V2.03.02) IDU front panel.
Figure 5-1
NR8250 (V2.03.02) IDU Front Panel
Figure 5-2 shows the front panel of ZXMW NR8120 (V2.03.02) IDU.
Figure 5-2
2.
NR8120 (V2.03.02) IDU Front Panel
NR8250 (V2.03.02) IDU boards instruction i.
RCUB board Figure 5-3 shows the RCUB board.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-3
Internal Use Only▲
RCUB Board Front Panel
Name
Type
Description
NMS
RJ45
NMS services port (1000BaseT)
GbE
RJ45
Ethernet services GbE port (1000Mbps). It can also works as NMS services port.
TDMEXT
RJ45
TDM services cascade port
LMT
RJ45
Local debugging and maintenance port (1000BaseT)
RJ45
The clock input interface supports the input of 2 MHz/2 Mbps BITS clock and 1PPS+TOD clock. Connects the environment monitoring unit of the outdoor cabinet.
CLK OUT/MON2
RJ45
The clock input interface supports the output of 2 MHz/2 Mbps BITS clock and 1PPS+TOD clock. Connects the environment monitoring unit of the outdoor cabinet.
M/S
Button
Master and standby switchover
RST
Button
Reset the board.
CLK IN/MON1
ii.
RMUC board Figure 5-4 shows the RMU board.
Figure 5-4
RMUC Board Front Panel
Name
Type
Description
OPWR
Power switch
ODU power switch
IF
TNC female
IF signal port
X_OUT/X_IN
SMB
XPIC signal output/input port
RST
Button
Reset the board.
iii.
RMUD board Figure 5-5 shows the RMUD board.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-5
RMUD Board Front Panel
Name
Type
Description
OPWR
Power switch
ODU power switch
IF
TNC connecter
IF signal
RST
Button
Reset the board.
iv.
Internal Use Only▲
RMUE Board Figure 5-6 shows the RMUE board
Figure 5-6
RMUE Board Front Panel
Interface
Type
Description
OPWR
Power switch
ODU power switch
IF
Female TNC connector
Input /output interface of IF signals
RST
Button
Reset button for RMUE
v.
RMUH Board Front Panel Figure 5-7 shows the RMUH board
Figure 5-7
RMUH Board Front Panel
Interface
Type
Description
OPWR
Power switch
ODU power switch
IF
Female TNC connector
Input /output interface of IF signals
X_OUT/X_IN
SMA connector
Input and output interface of the Cross Polarization Interference Cancellation signals
RST
Button
Reset button for RMUH
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
vi.
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RTUA (Native 16E1) board Figure 5-8 shows the RTUA (Native 16E1) board.
Figure 5-8
RTUA Board Front Panel
Name
Type
E1 (CH1-CH16) vii.
Description
DB68
16-channel E1 interface
RTUD (CES 16E1) board Figure 5-9 shows the RTUD (CES 16E1) board.
Figure 5-9
RTUD Board Front Panel
Name
Type
Description
E1 (CH1-CH16)
DB68
16-channel E1 interface
RST
Button
Reset the board.
viii. RTUC (Native 32E1) board Figure 5-10 shows the RTUC (Native 32E1) board.
Figure 5-10
RTUC (Native 32E1) Board Front Panel
Name
Type
E1_A (CH1-CH16) E1_B (CH17-CH32)
D type SCSI 64
32-channel E1 interface
RST
Button
Reset the board
ix.
Description
RTUB (native 1×STM-1 + 1×STM-1/4 + 8×E1) board
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Figure 5-11 shows the RTUB (native 1×STM-1 + 1×STM-1/4 + 8×E1) board.
Figure 5-11
RTUB Board Front Panel
Name
Type
Description
E1 (CH1-CH8)
DB36
8-channel E1 interface
STM-1 Tx1 / Rx1
SFP LC
STM-1 optical port
STM-1/4 Tx2 / Rx2
SFP LC
1×STM-1 or 1×STM-4 optical port
RST
Button
Reset the board
x.
RTUE (CES 2*STM-1) board Figure 5-12 shows the RTUE (CES 2*STM-1) board.
Figure 5-12
RTUE Board Front Panel
Name
Type
Description
STM-1 Tx1 / Rx1
SFP LC
1×STM-1 optical port
STM-1 Tx2 / Rx2
SFP LC
1×STM-1 optical port
RST
Button
Reset the board.
xi.
RTUNO (2×GbE(O) + 2×GbE(O/E)) board Figure 5-13 shows the RTUNO (2×GbE(O) + 2×GbE(O/E)) board.
Figure 5-13
RTUNO Board Front Panel
Name
Type
Description
GbE (O)
SFP LC
Ethernet services GbE optical port (1000 Base-LX/1000 Base-SX)
GbE (E)
RJ-45
Ethernet services GbE electrical port (1000 BaseT)
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
RST
Button
xii.
Internal Use Only▲
Reset the board
RTUNE (2×GbE(E) + 2×GbE(E/O)) board Figure 5-14 shows the RTUNE (2×GbE(E) + 2×GbE(E/O)) board.
Figure 5-14
RTUNE Board Front Panel
Description
GbE (O)
SFP LC
Ethernet services GbE optical port (1000 Base-LX/1000 Base-SX)
GbE (E)
RJ-45
Ethernet services GbE electrical port (1000 BaseT)
RST
Button
Reset the board
xiii. RTUHO (native 3×GbE(O) + 8×E1) board Figure 5-15 shows the RTUHO (native 3×GbE(O) + 8×E1) board.
Figure 5-15
RTUHO Board Front Panel
Name
Type
Description
GbE (O)
SFP LC
Ethernet services GbE optical port (1000 Base-LX/1000 Base-SX)
E1 (CH1-CH8)
DB36
8-channel E1 interface (native)
RST
Button
Reset the board
xiv. RTUHE (3×GbE(E) + 8×E1(native)) board Figure 5-16 shows the RTUHE (3×GbE(E) + 8×E1(native)) board.
Figure 5-16
RTUHE Board Front Panel
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RUN
RTUNE
Type
ALM
Name
ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Name
Type
Internal Use Only▲
Description
GbE (E)
RJ-45
Ethernet services GbE electrical port (1000 BaseT)
E1 (CH1-CH8)
DB36
8-channel E1 interface (native)
RST
Button
Reset the board
xv.
RTUNP Board
Figure 5-17 shows the RTUNP board
Figure 5-17
RTUNP Board Front Panel
Interface
Type
Description
GbE (E)
RJ-45
1000 BaseT electrical interface (support PoE)
RST
Button
Reset button for RTUNP
xvi. RSUA board Figure 5-18 shows the RSUA board.
Figure 5-18
RSUA Board Front Panel
EOW
SC1
Name
SC2
Type
RST RUN
CALL
ALM
R S UA
DB36 DB25 EDI
Description
EDI
DB25
External alarms input/output port (8-channel input and 2-channel output)
EOW
3.5 mm headphone port
EOW port
SC1
RJ45
User data channel. Support V.11 synchronous/asynchronous signal (RJ45)
SC2
RJ45
User data channel. Support V.28 asynchronous signal (RJ45)
CALL
Button
EOW calling button.
RST
Button
Reset the board
xvii. PM board Figure 5-19 shows the PM board.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-19
Internal Use Only▲
PM Board Front Panel
Name
Type
Description
-48V RTN
Hybrid type connector
-48 V DC power input
OFF/ON
Switch
PM power switch
MON
Mini-USB
Reserved for engineering debugging
xviii. RPUA board Figure 5-20 shows the RPUA board.
Figure 5-20
RPUA Board Front Panel
Name
Type
Description
PS1
2-core -48 V power connecter
-48 V DC power input
PS2
2-core -48 V power connecter
-48 V DC power input
xix. RPUC board Figure 5-21 shows the RPUC board.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-21
Internal Use Only▲
RPUC Board Front Panel
Name
Type
Description
PS1
2-core -48 V power connecter
-48 V DC power input
PS2
2-core -48 V power connecter
-48 V DC power input
xx. RFAB board Figure 5-22 shows the RFAB board.
Figure 5-22
3.
RFAB Board Front Panel
NR8120 (V2.03.02) boards instruction i.
RCMUA board Figure 5-23 shows the RCMUA board.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-23
Internal Use Only▲
RCMUA Board Front Panel
Name
Type
Description
NMS
RJ45
NMS services port
GbE
RJ45
RCMUA provides 8 GbE ports (4 optical and 4 electrical). Up to 4 ports can be enabled simultaneously.
IF
TNC female
IF signal input/output port
LMT
RJ45
Local debugging and maintenance port
RJ45
The clock input interface supports the input of 2 MHz/2 Mbps BITS clock and 1PPS+TOD clock. Connects the environment monitoring unit of the outdoor cabinet.
CLK OUT/MON2
RJ45
The clock input interface supports the output of 2 MHz/2 Mbps BITS clock and 1PPS+TOD clock. Connects the environment monitoring unit of the outdoor cabinet.
EOW
3.5 mm earphone plug
EOW voice conversation port
SC1
RJ45
User data channel. Support V.11 synchronous/asynchronous signal (RJ45)
SC2
RJ45
User data channel. Support V.28 asynchronous signal (RJ45)
CALL
Button
EOW calling button
EDI1
RJ-45
External alarms input port, provides 4-channel alarm input.
EDI2
RJ-45
External alarms output port, provides 2-channel alarm output.
OPWR
Power switch
ODU power switch
CLK IN/MON1
ii.
RCMUB Board Figure 5-24 shows the RCMUB Board Front Panel
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-24 SC2
LMT
Internal Use Only▲
RCMUB Board Front Panel EDI1 EDI2 2×GbE(O) EOW
SC1
NMS
CLKIN/MON1 CLKOUT/MON2
Interface NMS
Type
4×GbE(E)
OPWR
Call Button
IF Interface
Description
RJ45
NMS service interface
GbE
RJ45
RCMUB provides 6 Gigabit Ethernet service interface: optical and electrical optional, maximum 4 interfaces can be used at the same time
IF
Female TNC
IF signals input/output interface(modem IF interface)
LMT
RJ45
Local maintenance and debugging interface
RJ45
Clock input and monitoring access multiplex interface (software switchable), supports 2 MHz / 2 Mbps BITS input when be used as CLK IN interface; receives RS485 data coming from cabinet’s monitor interface when be used as MON1 interface
CLK OUT/MON2
RJ45
Clock output and monitoring access multiplex interface (software switchable), supports 2 MHz / 2 Mbps BITS or 1PPS+TOD output when be used as CLK IN interface; receives RS485 data coming from cabinet’s monitor interface when be used as MON2 interface
EOW
3.5 mm female audio socket
The order wire is used for audio transmission for test or maintenance purposes. It should be used together with call button
CALL
Button
Call button is used to call remote EOW phone
SC1
RJ-45
Service channel delivers user’s special traffic through an RJ-45 connector, supports V.11 synchronization and asynchronization signal
SC2
RJ-45
Service channel delivers user’s special traffic through an RJ-45 connector, support V.28 asynchronous signal
EDI1
RJ-45
External alarm interface, offers 4 alarms input
EDI2
RJ-45
External alarm interface, offers 2 alarms output
OPWR
Power switch
Turn on / off ODU’s power supply
CLK IN/MON1
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
iii.
Internal Use Only▲
RMEA board Figure 5-25 shows the RMEA board.
Figure 5-25
RMEA Board Front Panel
Name
Type
Description
OPWR
Power switch
ODU power switch
IF
TNC female
IF signal input/output port
iv.
RTEA (Native 16E1) board Figure 5-26 shows the RTEA (Native 16E1) board.
Figure 5-26
RTEA Board Front Panel
Name
Type
E1 (CH1-CH16) v.
DB68
Description 16-channel E1 interface
RTEB (CES 16E1) board Figure 5-27 shows the RTEB (CES 16E1) board.
Figure 5-27
RTEB Board Front Panel
Name E1 (CH1-CH16) vi.
Type DB68
Description 16-channel E1 interface
RPUB board Figure 5-28 shows the RPUB board.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-28
RPUB Board Front Panel
Name
Type
PS
2-core -48 V power connecter vii.
Internal Use Only▲
Description -48 V DC power input
RFAD board Figure 5-29 shows the RFAD board.
Figure 5-29
RFAD Board Front Panel
Result Know the appearance of ZXMW NR8250/8120 (V2.03.02) IDU and boards. Know the ports functions.
Reference ZXMW NR8250 (V2.03.02) Digital Microwave Transmission System Hardware Description ZXMW NR8120 (V2.03.02) Digital Microwave Transmission System Hardware Description
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
5.2
Internal Use Only▲
ZXMW NR8250/8120 ODU Appearance Purpose Know the appearance of ZXMW NR8250/8120 (V2.03.02) ODU.
Preparation Understand system composition and functional modules of the microwave transmission system. Understand ports characteristics of mainstream transmission products.
Step 1.
ODU SRU Figure 5-30 shows the ODU SRU.
Figure 5-30
2.
ODU SRU
ODU A400 i.
ODU A400 6 GHz-11 GH Figure 5-31 shows the ODU A400 6 GHz-11GHz.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-31
ii.
Internal Use Only▲
ODU A400 6 GHz-11 GH
ODU A400 13 GHz-38 GHz Figure 5-32 shows the ODU A400 13 GHz-38 GHz.
Figure 5-32
ODU A400 13GHz-38GHz
Result Know the appearance of ZXMW NR8250/8120 (V2.03.02) ODU.
Reference ZXMW NR8250 (V2.03.02) Digital Microwave Transmission System Hardware Description ZXMW NR8120 (V2.03.02) Digital Microwave Transmission System Hardware Description
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Internal Use Only▲
Example None
5.3
Login to NR8000 Series WEB LMT There are two methods to log in to NR8000 Series WEB LMT. 1.
Log in through the LMT port of RCUB board.
2.
Log in through the NMS port of RCUB board. IP address of this port is the IP address of the equipment and can be modified according to the network IP planning. Through the NMS port login to the far end is also available. Steps are as follows. i.
Log in through the LMT port of the RCUB board.
ii.
Modify the IP address of the NE. This IP address should be unique in the whole network.
iii.
Activate NMS port. (This step is optional).
iv.
Log in through the NMS port of the RCUB board and start system configuration.
Purpose Know how to complete PC settings and ports connection and to log in to NR8000 Series WEB LMT correctly.
Preparation Boards of ZXMW NR8250/8120 (V2.03.02) equipment run correctly. A PC with Microsoft Internet Explorer 6.0/7.0/8.0/9.0 correctly installed.
Step 1.
PC network settings i.
Right-click My Network Places on the Windows desktop, select Properties in the menu and the Network Connections window is displayed.
ii.
Right-click Local Area Connection and select Properties.
iii.
Figure 5-33 shows the Local Area Connection Properties window. Double-click Internet Protocol (TCP/IP) or select it and click Properties.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-33
iv.
Internal Use Only▲
Select Internet Protocol (TCP/IP)
Select Obtain an IP address automatically. See Figure 5-34. LMT port of ZXMW NR8250/8120 (V2.03.02) equipment has DHCP function.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-34
2.
Internal Use Only▲
PC IP Address Settings
v.
Click OK to complete settings.
vi.
Click Start > Run. Enter command CMD and go to the command line window.
Log in to WEB LMT. i.
Use an Ethernet cable (straight through or crossover) to connect NR8250/8120 (V2.03.02) IDU and the PC. See Figure 5-35 and Figure 5-36.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-35
NR8250 (V2.03.02) IDU and Computer Connection
Figure 5-36
NR8120 (V2.03.02) IDU and Computer Connection
ii.
Internal Use Only▲
When connection between the IDU and the PC is built up, click Start > Run. Enter command CMD and go to the command line window. Enter command ipconfig/all to query IP addresses of the DHCP server (the IDU) and of the PC. See Figure 5-37.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-37
iii.
Internal Use Only▲
IDU and Computer IP Addresses Query
Double-click IE Explorer on the desktop of the PC. Enter the IP address of IDU LMT port (192.168.1.16) and press Enter. WEB LMT login window appears as shown in Figure 5-38.
Figure 5-38 WEB LMT Login Window
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
iv.
Enter admin in User Name.
v.
Enter admin in Password
vi.
Click LOGIN to log in to WEB LMT.
Figure 5-39
3.
Internal Use Only▲
Homepage of WEB LMT
Initial settings Select Setup > System > Parameter. Configure NE Name and NE IP address. See Figure 5-40.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 5-40
Internal Use Only▲
NE Name and NE IP Address
Result 1.
Complete network settings of the computer and connect the microwave equipment.
2.
Log in to NR8000 Series WEB LMT.
3.
NE name and IP address are set.
Reference ZXMW NR8250 (V2.03.02) Configuration Guide
Example None
5.4
ZXMW NR8250/8120 (V2.03.02) Equipment Configuration Workflow Purpose Complete system configurations according to ZXMW NR8250 (V2.03.02) Configuration Guide and ZXMW NR8120 (V2.03.02) Configuration Guide.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Internal Use Only▲
Preparation 1.
Login to NR8000 WEB LMT is correct and operations in WEB LMT are correct.
2.
Complete project engineering data design files
Step After login to NR8000 Series WEB LMT, configure system parameters according to engineering design and planning files.
Figure 5-41
ZXMW NR8250/8120 (V2.03.02) Equipment Configuration Workflow
Refer to the following documents for services configuration operations. ZXMW NR8250 (V2.03.02) Configuration Guide ZXMW NR8120 (V2.03.02) Configuration Guide
Result 1.
NE basic data settings are completed.
2.
Radio link settings are completed.
3.
TDM services settings are completed.
4.
Ethernet services settings are completed.
5.
Clock settings are completed.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Reference ZXMW NR8250 (V2.03.02) Configuration Guide ZXMW NR8120 (V2.03.02) Configuration Guide
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
6
Internal Use Only▲
System Check Purpose Check inventory and radio link information.
Preparation 1.
Login to NR8000 WEB LMT is correct and operations in WEB LMT are correct.
2.
Complete project engineering data design files
Step 1.
Check inventory information. i.
Select Inventory > Inventory and go to the equipment inventory data windows as shown in Figure 6-1. Drag the scroll bar to view all the information.
Figure 6-1
ii.
Inventory Information
Export and back up the inventory information for future maintenance. See Figure 6-2.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 6-2
2.
Internal Use Only▲
Export Inventory Information
Check link status. Select Radio Link > Basic Configuration and go to the radio link configuration page. View radio link parameters such as Current RSL(dBm), Current Tx Power(dBm) and ODU Parameter in RF Parameter Configuration area as shown in Figure 6-3.
Figure 6-3
View Link Status
Result 1.
Complete inventory information query and backup.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
2.
Internal Use Only▲
Complete radio link parameters configuration and query.
Reference None
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
7
Internal Use Only▲
Antenna Alignment Purpose Complete antenna alignment according to the alignment method. RSL reach the design value +/-2dB.
Preparation 1.
Equipment commissioning has been completed for both local and remote ends of the link.
2.
Weather is good without rain, snow or frog.
3.
Actual field conditions and working staff shall be suitable for aerial work.
4.
Disable ATPC, ACM and XPIC. See Figure 7-1 and Figure 7-2.
Figure 7-1
Disable ATPC and ACM
Figure 7-2
Disable XPIC
5.
Following tools and instruments shall be prepared. −
Adjustable wrench
−
Telescope
−
Interphone
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
−
Allen wrench
−
Multimeter
−
Compass
Internal Use Only▲
Step Main lobe of microwave antenna is rather narrow. It is normally from 0.6 degree to 3.7 degree. For example a 1.2 m diameter 23 GHz microwave antenna, there is only 0.9 degree from signal peak to zero. During antenna adjustment, we need only to adjust slightly when signal is found. Main lobe and side lobe are shown as in Figure 7-3. We can decide whether main lobes of antennas are aligned properly by comparing the RSL peak value. Normally RSL peak value of the main lobe is 20 dB - 25 dB higher than that of the 1st side lobe. If main lobes of both ends are captured by the opposite end simultaneously, an error within 2 dB is acceptable.
Figure 7-3
Main Lobe and Side Lobe
If 1+1 HSB / FD protection and one antenna are adopted, shut down standby ODUs of both ends first and power on them after antenna adjustment is done. If 1+1 SD protection is adopted, antennas shall be adjusted as following steps.
1.
−
Power on master ODUs of both ends and keep them active through the adjustment process.
−
Shut down standby ODUs of both ends and adjust master antennas.
−
Power on local standby ODU, keep the remote master antenna fixed and adjust local diversity antenna.
−
Power on remote standby ODU, keep the local master antenna fixed and adjust remote diversity antenna.
Adjust single polarization antenna
Knowledge: :
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Horizontal and vertical adjustment components of antennas can be nuts or screws. Refer to antenna installation guide for details. i.
Decide antenna azimuth roughly according to antenna height and installation position, and adjust pitch angle to zero.
ii.
Connect multimeter to RSSI port of local ODU and measure the voltage.
iii.
Preliminary azimuth and pitch angle adjustment
−
Keep remote antenna fixed
−
Move local antenna horizontally in a large range and keep watching the voltage on the multimeter.
−
Adjust local antenna slightly in the horizontal and vertical direction till the voltage reaches the highest value.
−
Fix local antenna when voltage reaches the highest value.
iv.
According to Step 2 and Step 3, adjust remote antenna till the voltage of remote ODU reaches the highest value.
v.
Repeat operations mentioned in Step 2 to Step 4 for two to four times. Fix antennas of both ends when ODU voltage of both local and remote ends reach the highest value.
vi.
Measure ODUs voltage with the multimeter. Calculate the current RSL according to RSL and ODU voltage curve is shown as in Figure 7-4. This figure is for A400 ODU, and different ODU maybe with different curve, please refer to the product description of the actual installed ODU.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Figure 7-4
A400 ODU Voltage and RSL Curve
Figure 7-5
SRU ODU Voltage and RSL Curve
vii. 2.
Internal Use Only▲
Fasten all bolts of antennas.
Adjust dual-polarization antenna For dual-polarization antennas, besides azimuth and pitch angle adjustment, we need to adjust feeder of antennas to make Cross Polarization Discrimination (XPI) value reach standard. i.
Shut down V polarization ODUs and power on H polarization ODUs of both ends. Antennas transmit only H polarization signal currently.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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ii.
Adjust azimuth hand pitch angle following the steps above and make H polarization main lobe aligned correctly.
iii.
Calculate RSL of local H polarization and record as P1.
−
Measure the local H polarization ODU voltage with a multimeter.
−
Calculate H polarization RSL according to ODU voltage and RSL curve as shown in Figure 7-4.
iv.
Adjust the feeder of local antenna and make V polarization RSL to the minimum value P2.
−
Power on local V polarization ODU.
−
Measure the local V polarization ODU voltage with a multimeter
−
Loosen antenna feeder slightly and move the feeder in a small range. Keep measuring the ODU voltage till it reaches the minimum.
−
Calculate V polarization RSL according to ODU voltage and RSL curve as shown in Figure 7-3.
−
Current XPI1 (XPI1=P1-P2) shall be no less than 25 dB.
v.
Record the current feeder angle as D1.
vi.
Shut down H polarization ODUs and power on V polarization ODUs of both ends. Antennas transmit only V polarization signal currently.
vii.
According to operation in Step iii, calculate vertical polarization RSL value of local antenna and record as P3.
viii. Power on local H polarization ODU and calculate minimum H polarization RSL value of local antenna according to Step 4. Record this value as P4. Current XPI2 (XPI2=P3-P4) shall be no less than 25 dB. ix.
Record current feeder angle as D2.
x.
According to Step iii to Step ix, adjust feeder slightly within the range from D1 to D2 and find a proper angle which makes XPI1 and XPI2 no less than 30 dB.
xi.
Fasten all antenna bolts of both ends.
Note: In the actual operation, we can also adjust antennas on the basis of V polarization signal.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
xii.
Internal Use Only▲
Check XPI value in WEB LMT XPI value can also be viewed by selecting XPIC performance page as shown in Figure 7-6.
Figure 7-6
Check XPIC Performance
−
Click Slot NO. to select board.
−
Click Clear to clear history data.
−
Click Query to check XPI value of the board. See Figure 7-7.
Figure 7-7
Check XPI Value
Note: After adjustment is done, if the link adopts XPIC configuration, we need to enable XPIC and set Restore Time to Auto in XPIC Mode Configure. If the link doesn’t adopt XPIC configuration, keep XPIC disabled.
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
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Result 1.
Align microwave antennas. RSL should be 2 dB more or less than the design value.
2.
Adjust XPI value of the dual-polarization antenna. The XPI value should be more than 30 dB.
3.
Enable XPIC function.
Reference None
Example None
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ZXMW NR8250&8120 (V2.03.02) Commissioning Guide
Internal Use Only▲
AppA Abbreviations Abbreviations
Explanations
IDU
Indoor Unit
ODU
Outdoor Unit
TPC
Transmit Power Control
TDM
Time Division Multiplexing
ACM
Adaptive Code and Modulation
SNCP
Sub Network Connection Protection
VLAN
Virtual Local Area Network
LACP
Link Aggregation Control Protocol
QOS
Quality of Service
STP
Spanning Tree Protocol
RSTP
Rapid Spanning Tree Protocol
DSCP
Differentiated Services Code Point
DWRR
Dynamic Weighted Round-Robin
LAG
Link Aggregation Group
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