L7/L18 commissioning and integration with FXED
7/25/2016 – Work instruction 1 / 55
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© Nokia 2016
Contents 1
Purpose ........................................................................................................................4
2
Prerequisites ................................................................................................................5
2.1
HW ................................................................................................................................5
2.1.1
HW for site build configurations ..................................................................................5
2.1.2
Additional HW for 3CC CA configuration .....................................................................8
2.2
SW ................................................................................................................................9
2.3
L7/L18 frequency allocation .......................................................................................10
2.4
XML Commissioning Files.............................................................................................10
3
L7/L18 connectivity diagram ......................................................................................11
4
L18 RF tails connections for distributed 2T4R configuration.....................................17
4.1
RF tails connections for distributed 2T4R L18 with 2 x FXED ....................................18
4.2
RF tails connections for distributed 2T4R L18 with 1 x FXED per sector ..................19
5
RF tails connections for 2T2R L7 configuration ..........................................................20
6
RF tails connections for 2T4R L7 configuration with 2xFRPA .....................................21
7
3CC CA FSMFs Interconnection Cable Installation ......................................................22
7.1
SRIO Cable Installation.................................................................................................22
7.2
HDMI Synchronisation Cable Installation.....................................................................23
8
Commissioning.............................................................................................................24
8.1
Power on FSMF and all RF modules .............................................................................24
8.2
Connect to site with BTS Site Manager .......................................................................24
8.3
SW upgrade from RL40 1.2 to RL60 1.1 (LN6.0_ENB_1311_764_08) ........................26
8.4
SW upgrade from RL60 1.1 to RL70 2.3.1 (LN7.0_ENB_1407_586_18) .....................27
8.5
Commissioning TRS only ..............................................................................................28
8.6
RF units detection........................................................................................................29
8.7
BTS Site commissioning steps.....................................................................................30
8.7.1
Introduction .................................................................................................................30
8.7.2
L18 MHA commissioning .............................................................................................32
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8.7.3
L7 MHA commissioning................................................................................................32
8.7.3.1 L7 Antenna Line Management.....................................................................................33 8.7.3.2 L7 AISG MHA settings ..................................................................................................36 8.7.3.3 L7 AISG MHA settings ..................................................................................................39 8.7.4
Send Parameters .........................................................................................................44
8.7.5
Additional Site Settings................................................................................................44
8.7.6
Site Testing ..................................................................................................................45
8.7.7
Commissioning Report ................................................................................................47
8.8
Retrieve certificate ......................................................................................................48
8.9
Commissioning completed ..........................................................................................50
9
Check L7 & L18 Cell RSSI level .....................................................................................51
10
Test call ........................................................................................................................52
10.1
L18 testing ...................................................................................................................52
10.2
L7 testing .....................................................................................................................53
11
References ...................................................................................................................54
11.1
4G LTE bands ...............................................................................................................54
11.2
SFP modules used in L7/L18/L23/L26 eNB ...............................................................54
11.3
FSMF LMP connector pin map .....................................................................................55
7/25/2016 – Work instruction 3 / 55
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1 Purpose This document describes the work instructions of commissioning and integration of Nokia LTE FDD LTE700/LTE1800 eNB with FXED. Following configurations are covered:
Baseband: 1xFSMF + 1xFBBA + 1xFBBC or 1xFSMF + 1xFBBC + 1xFBBC Radio: - 3xFXED+1xFRPA L18 distributed 2T4R+L7 stacked 2T2R - 3xFXED+3xFRPA Fully Distributed, L7 and L18 2T4R - 2xFXED+1xFRPA L18 stacked 2T4R+L7 stacked 2T2R - 1xFXED+1xFRPA L18 stacked 2T2R+L7 stacked 2T2R - 1xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R - 2xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R - 3xFXED+2xFRPA L18 distributed 2T2R/2T4R+L7 stacked 2T4R L7 1+1+1 @ 40W 10MHz bandwidth L18 1+1+1 @ 60W 15MHz bandwidth eNB software RL70 2.3.1
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2 Prerequisites 2.1
Ensure that health and safety regulations are observed at any given time during the site build. The weight of the RF unit is close to 25 kg. As such two man lift is recommended. HW HW requirement includes two parts. -
HW for site build configurations Additional HW for 3CC CA configuration
2.1.1 HW for site build configurations The following main HW components are required for the different configurations.
All L7/L18 dual sites require 2xFBBC or 1xFBBA+1xFBBC, and the second BB extension card has to be FBBC. It is highly recommended to use only FSMF with 2xFBBC cards in greenfield deployment. Please ensure FRPA 1/2/3 are connected to ports RF1/2/4 respectively on the second FBBC. 1. 3xFXED+1xFRPA L18 distributed 2T4R+L7 stacked 2T2R
HW component FSMF FBBC* FPFD** FRPA FXED
Quantity 1 2 1 1 3
FOSI*** FOSH**** Single mode Optic Fibre***** Multi-mode Optic Fibre****** 1000Base-T Ethernet Cat6 cable
6 (FXED – FSMF) 2 (FRPA – FSMF)
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3 (FXED – FSMF) 1 (FRPA – FSMF) 1
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2. 3xFXED+3xFRPA Fully Distributed, L7 and L18 2T4R
HW component FSMF FBBC* FPFD** FRPA FXED FOSI*** FOSH**** Single mode Optic Fibre***** Multi-mode Optic Fibre****** 1000Base-T Ethernet Cat6 cable
Quantity 1 2 1 3 3 6 (FXED – FSMF) 6 (FRPA – FSMF) 3 (FXED – FSMF) 3 (FRPA – FSMF) 1
3. 2xFXED+1xFRPA L18 stacked 2T4R+L7 stacked 2T2R
HW component FSMF FBBC* FPFD** FRPA FXED
Quantity 1 2 1 1 2
FOSI*** FOSH**** Single mode Optic Fibre***** Multi-mode Optic Fibre****** 1000Base-T Ethernet Cat6 cable
8 (FXED – FSMF) 2 (FRPA – FSMF) 4 (FXED – FSMF) 1 (FRPA – FSMF) 1
4. 1xFXED+1xFRPA L18 stacked 2T2R+L7 stacked 2T2R Note: this configuration should only be considered if antenna line does not support 4 way Rx diversity on L18. HW component FSMF FBBC* 7/25/2016 – Work instruction 6 / 55
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FPFD** FRPA FXED FOSI*** FOSH**** Single mode Optic Fibre***** Multi-mode Optic Fibre****** 1000Base-T Ethernet Cat6 cable
1 1 1 4 (FXED – FSMF) 2 (FRPA – FSMF) 2 (FXED – FSMF) 1 (FRPA – FSMF) 1
5. 1xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R HW component FSMF FBBC* FPFD** FRPA FXED
Quantity 1 2 1 2 1
FOSH*** Multi-mode Optic Fibre*** 1000Base-T Ethernet Cat6 cable
8 4 1
6. 2xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R HW component FSMF FBBC* FPFD** FRPA FXED FOSH*** Multi-mode Optic Fibre***** 1000Base-T Ethernet Cat6 cable
Quantity 1 2 1 2 4 12 (RF units to FSMF/FBBx) 6 (RF units to FSMF/FBBx) 1
7. 3xFXED+2xFRPA L18 distributed 2T2R/2T4R+L7 stacked 2T4R HW component 7/25/2016 – Work instruction 7 / 55
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FSMF FBBC* FPFD** FRPA FXED
1 2 1 2 3
FOSI*** FOSH**** Single mode Optic Fibre***** Multi-mode Optic Fibre****** 1000Base-T Ethernet Cat6 cable
6 (FXED – FSMF) 4 (FRPA – FSMF) 3 (FXED – FSMF) 2 (FRPA – FSMF) 1
* Optional use of FBBA+FBBC
is allowed.
** FPFD
is a preferred piece of equipment. If not available DC power for RF units needs to be prepared independently. In partially stacked (L7) and partially distributed (L18) build FPFD would provide power only to stacked L7 RF modules. *** Note: The
preferred build should be based on FOSI SFPs. If a FOSA or FOSG is already installed and alternation to the existing L18 build is not possible Optus Project Manager needs to approve build with SFPs other than FOSI. Note fibre check needs to also be run to match the SFP type with the single mode or multi-mode fibre used on site. **** Note: FOSI
and SM links are also possible. FOSI (or FOSA) are used SM fibre is required. If FOSG are used MM fibre is needed ****** Note: MM fibre is preferred with FOSH. SM with FOSI is also possible ***** Note: If
2.1.2 Additional HW for 3CC CA configuration Below two cables need to be installed between collocated LTE FDD and LTE TDD sites in order to enable Downlink Carrier Aggregation 3CC.
SRIO Link between collocated modules of paired FDD and TDD sites HDMI cable between TDD Sync Out and FDD Sync In ports
Module / Item Name FBBC
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Description Nokia Flexi Baseband Extension Module
For internal use
Qty 1
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FOSH
Optical SFP H 850nm 6GBps 300m Multi Mode
2
Multimode Fibre Cable
Note: Only one fibre cable required per site to be installed. Below is the Nokia SRIO cable length option:
1
FSFO
Flexi System Fibre HF 2m, MM
See above note
FSFD
Flexi System Fibre D 4m, MM
See above note
FSFF
Flexi System Fibre F 10m, MM
See above note
FSFG
Flexi System Fibre G 20m, MM
See above note
HDMI Sync Cable
Note: only one HDMI Sync cable required to be installed between 1800 FSMF and 2300 FSMF. Below is the Nokia HDMI cable length option
1
FTSF
Sync Cable F, 2m HDMI to HDMI both with IP boot protection
See above note
FTSP
Sync Cable F, 5m HDMI to HDMI both with IP boot protection
See above note
FTSQ
Sync Cable F, 10m HDMI to HDMI both See above note with IP boot protection
FTQR
Sync Cable F, 15m HDMI to HDMI both See above note with IP boot protection
FTSO
Sync Cable O, 25m HDMI to HDMI both with IP boot protection
See above note
Please refer to Chapter 7 for 3CC Cabling. 2.2
SW The final software RL70 2.3.1 will be used in L7/L18 dual band site with FXED. New FSMF is delivered with preinstalled LN4.0 1.2 (LN4.0 ENB 1202_781_57) SW or FDSW 1.0 (boot-loader). Upgrade paths: RL40 1.2 (LN4.0_ENB_1202_781_57) RL60 1.1 (LN6.0_ENB_1311_764_08) RL70 2.3.1 (LN7.0_ENB_1407_586_18) FDSW1.0_RP_FD1405_284_00 RL70 2.3.1 (LN7.0_ENB_1407_586_18) Ensure all Software listed is available prior to Installation and Commissioning.
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RL70 2.3.1 Software Nokia FDD LTE BTS Software Nokia FDD LTE BTS Element Manager
Software Version LN7.0_ENB_1407_586_18 LN7.0_BTSSM_1407_121_00
RL60 1.1 Software Nokia FDD LTE BTS Software Nokia FDD LTE BTS Element Manager
2.3
Software Version LN6.0_ENB_1311_764_08 LN6.0_BTSSM_1311_097_00
L7/L18 frequency allocation Below table shows frequency allocation for Optus L7 and L18.
2.4
L7 Downlink Uplink
EARFCN 9260 27260
Frequency 763.0 MHz 708.0 MHz
Bandwidth
L18 Downlink Uplink
EARFCN 1725 19725
Frequency 1857.5 MHz 1762.5 MHz
Bandwidth
10 MHz
15 MHz
XML Commissioning Files L7+L18 XML site commissioning template file will be distributed by Nokia RIC.
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3 L7/L18 connectivity diagram Please follow the below diagrams to connect optical fibres between RF modules and system module according to site configuration. 1. Standard cabling for 3xFXED+1xFRPA L18 distributed 2T4R+L7 stacked 2T2R Connect Connect Connect Connect
RF/EXT1 RF/EXT2 RF/EXT3 RF1 port
port on FSMF to Opt 1 port on FXED1 (Single Mode OBSAI link with FOSI SFPs) port on FSMF to Opt 1 port on FXED2 (Single Mode OBSAI link with FOSI SFPs) port on FSMF to Opt 1 port on FXED3 (Single Mode OBSAI link with FOSI SFPs) on FBBC2 to Opt 1 port on FRPA (Multi Mode OBSAI link with FOSH SFPs)
Note: FRPA unit needs to be connected to the second FBBC.
Picture 1 - 3xFXED+1xFRPA L18 distributed 2T4R+L7 stacked 2T2R 2. Standard cabling for 3xFXED+3xFRPA Fully Distributed, L7 and L18 2T4R Connect RF/EXT1 port on FSMF to Opt 1 port on FXED1 (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT2 port on FSMF to Opt 1 port on FXED2 (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT3 port on FSMF to Opt 1 port on FXED3 (Single Mode OBSAI link with FOSI SFPs) 7/25/2016 – Work instruction 11 / 55
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Connect RF1 port on FBBC2 to Opt 1 port on FRPA1 (Multi Mode OBSAI link with FOSH SFPs) Connect RF2 port on FBBC2 to Opt 1 port on FRPA2 (Multi Mode OBSAI link with FOSH SFPs) Connect RF4 port on FBBC2 to Opt 1 port on FRPA3 (Multi Mode OBSAI link with FOSH SFPs) Note: FRPA unit needs to be connected to the second FBBC. Note: FBBC2 port3 should not be used to connect RRUs.
Picture 2 - 3xFXED+3xFRPA Fully Distributed, L7 and L18 2T4R 3. Standard cabling for 2xFXED+1xFRPA L18 stacked 2T4R+L7 stacked 2T2R Connect RF/EXT1 port on FSMF to Opt 1 port on FXED1 (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT2 port on FSMF to Opt 2 port on FXED1 (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT3 port on FSMF to Opt 1 port on FXED2 (Single Mode OBSAI link with FOSI SFPs) Connect RF3 port on FBBC1 to Opt 2 port on FXED2 (Single Mode OBSAI link with FOSI SFPs) If FBBA is used instead of FBBC1: Connect RF port on FBBA to Opt 2 port on FXED2 (Single Mode OBSAI link with FOSI SFPs) Connect RF1 port on FBBC2 to Opt 1 port on FRPA (Multi Mode OBSAI link with FOSH SFPs) Note: FRPA units need to be connected to the second FBBC.
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Picture 3 - 2xFXED+1xFRPA L18 stacked 2T4R+L7 stacked 2T2R
4. Standard cabling for 1xFXED+1xFRPA L18 stacked 2T2R+L7 stacked 2T2R Connect RF/EXT1 port on FSMF to Opt 1 port on FXED (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT2 port on FSMF to Opt 2 port on FXED (Single Mode OBSAI link with FOSI SFPs) Connect RF1 port on FBBC2 to Opt 1 port on FRPA (Multi Mode OBSAI link with FOSH SFPs) Note: FRPA unit needs to be connected to the second FBBC.
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Picture 4 - 1xFXED+1xFRPA L18 stacked 2T2R+L7 stacked 2T2R 5. 1xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R Connect RF/EXT1 port on FSMF to Opt 1 port on FXED (Multi Mode OBSAI link with FOSH SFPs) Connect RF/EXT2 port on FSMF to Opt 2 port on FXED (Mutli Mode OBSAI link with FOSH SFPs) Connect RF1 port on FBBC2 to Opt 1 port on FRPA1 (Multi Mode OBSAI link with FOSH SFPs) Connect RF2 port on FBBC2 to Opt 1 port on FRPA1 (Multi Mode OBSAI link with FOSH SFPs) Note: FRPA unit needs to be connected to the second FBBC.
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Picture 5 - 1xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R 6. 2xFXED+2xFRPA L18 stacked 2T2R+L7 stacked 2T4R Connect RF/EXT1 port on FSMF to Opt 1 port on FXED1 (Multi Mode OBSAI link with FOSH SFPs) Connect RF/EXT2 port on FSMF to Opt 2 port on FXED1 (Multi Mode OBSAI link with FOSH SFPs) Connect RF/EXT3 port on FSMF to Opt 1 port on FXED2 (Multi Mode OBSAI link with FOSH SFPs) Connect RF3 port on FBBC1 to Opt 2 port on FXED2 (Multi Mode OBSAI link with FOSH SFPs) If instead of FBBC1 and FBBA is used: Connect RF1 of FBBA to OPT2 port on FXED2 (Multi M ode OBSAI link with FOSH SFPs) Connect RF1 port on FBBC2 to Opt 1 port on FRPA1 (Multi Mode OBSAI link with FOSH SFPs) Connect RF2 port on FBBC2 to Opt 1 port on FRPA2 (Multi Mode OBSAI link with FOSH SFPs) Note: FRPA unit needs to be connected to the second FBBC.
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Picture 6 - 2xFXED+2xFRPA L18 stacked 2T4R+L7 stacked 2T4R 7. 3xFXED+2xFRPA L18 distributed 2T2R/2T4R+L7 stacked 2T4R Connect RF/EXT1 port on FSMF to Opt 1 port on FXED1 (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT2 port on FSMF to Opt 1 port on FXED2 (Single Mode OBSAI link with FOSI SFPs) Connect RF/EXT3 port on FSMF to Opt 1 port on FXED3 (Single Mode OBSAI link with FOSI SFPs) Connect RF1 port on FBBC2 to Opt 1 port on FRPA1 (Multi Mode OBSAI link with FOSH SFPs) Connect RF2 port on FBBC2 to Opt 1 port on FRPA2 (Multi Mode OBSAI link with FOSH SFPs) Note: FRPA unit needs to be connected to the second FBBC.
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Picture 7 - 3xFXED+2xFRPA L18 distributed 2T2R/2T4R+L7 stacked 2T4R
4 L18 RF tails connections for distributed 2T4R configuration Some plumbing diagrams show 4R requirement for L18. In this scenario, 4 x RF tails are needed. Please follow below instructions to connect 4 RF tails between FXEDs and Quad-band combiners. For example:
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4.1
RF tails connections for distributed 2T4R L18 with 2 x FXED The below diagram illustrates tails connections for stacked L18 at Sector 1. Sector 2 and Sector 3 will follow same pattern to get tails connected. Tails connections for distributed L18 with 2 x FXED: FXED 1.1.1 Ant1 –> 1800/2100/2300/2600 combiner A -> TX/RX Antenna High Band 1 H+ (+45) FXED 1.1.1 Ant2 – > 1800/2100/2300/2600 combiner C -> RX Antenna High Band 2 H+ (+45) FXED 1.3.1 Ant1 –> 1800/2100/2300/2600 combiner B -> TX/RX Antenna High Band 1 H- (-45) FXED 1.3.1 Ant2 – > 1800/2100/2300/2600 combiner D -> RX Antenna High Band 2 H- (-45) Please note that Antenna High Band 3 and 4 may be allocated to Optus L18 at VHA lead site in actual plumbing diagram.
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4.2
RF tails connections for distributed 2T4R L18 with 1 x FXED per sector The below diagram illustrates tails connections for distributed L18 at Sector 1. Sector 2 and Sector 3 will follow same pattern to get tails connected. Tails connections for distributed L18: FXED Ant1 –> 1800/2100/2300/2600 combiner A -> TX/RX Antenna High Band 1 H+ (+45) FXED Ant2 – > 1800/2100/2300/2600 combiner C -> RX Antenna High Band 2 H+ (+45) FXED Ant3 –> 1800/2100/2300/2600 combiner B -> TX/RX Antenna High Band 1 H- (-45) FXED Ant4 – > 1800/2100/2300/2600 combiner D -> RX Antenna High Band 2 H- (-45) Please note that Antenna High Band 3 and 4 may be allocated to Optus L18 at VHA lead site in actual plumbing diagram.
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5 RF tails connections for 2T2R L7 configuration Stacked L7 (FRPA in shelter)
Please follow below instruction to connect RF tails when FRPA is in shelter.
Sector 1: A feed is connected to FRPA Ant 1, and B feed is connected to FRPA Ant 2. Sector 2: A feed is connected to FRPA Ant 3, and B feed is connected to FRPA Ant 4. Sector 3: A feed is connected to FRPA Ant 5, and B feed is connected to FRPA Ant 6.
Distributed L7 (3xFRPA on monopole)
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Please follow below instruction to connect tails when FRPAs are on monopole / roof.
Each L7 sector has its own FRPA.
A feed is connected to FRPA Ant 1, and B feed is connected to FRPA Ant 3 at all 3 sectors.
Note: L7 FRPA has no internal Bias-T at Antenna port 2, 4 and 6. Those ports are DC short. DC / AISG bus will be pulled down together with connected antenna line devices, if L7 FRPA port 2, 4 or 6 combines with any feed from other technologies as current master of MHA / RET.
Recommendation is to separate A and B feeds, combining A feeds within one antenna line; B feeds following a separate antenna line (feeders, combiners and ALD). DC should be then provided to MHA via A feeds to avoid DC short.
Ensure that L7 A feed is going to same combiner with A feeds from other technologies, L7 B feed is going to same combiner with B feeds from other technologies.
6 RF tails connections for 2T4R L7 configuration with 2xFRPA The below diagram illustrates tails connections for 2T4R L7 at Sector 1. Sector 2 and Sector 3 will follow same pattern to get tails connected. Tails connections for 2T4R L7 with 2 x FRPA: FRPA 1 Ant1 –> 700 MHA A port -> TX/RX Antenna Low Band 1 H+ (+45) FRPA 1 Ant2 – > 700/850/900 combiner A -> RX Antenna Low Band 2 H+ (+45) FRPA 2 Ant1 –> 700 MHA B port -> TX/RX Antenna Low Band 1 H- (-45) FRPA 2 Ant2 – > 700/850/900 combiner B -> RX Antenna Low Band 2 H- (-45) Note: 7/25/2016 – Work instruction 21 / 55
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DC stop may be required on FRPA 1 ANT 2 if 700/900 dual band or 700/850/900 tri -band MHA is in use.
7 3CC CA FSMFs Interconnection Cable Installation 7.1
SRIO Cable Installation Connect the multimode LC to LC optical cable to the both FSMF main SRIO ports as per shown connection diagram below.
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7.2
HDMI Synchronisation Cable Installation Connect the HDMI cable from Sync Out port of the 2300 LTE TDD FSMF to the Sync IN port of the 1800 LTE FDD FSMF. IMPORTANT: Ensure that the exact cable length and Nokia product code for the cable is recorded and tracked with the site build documentation.
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8 Commissioning 8.1
Power on FSMF and all RF modules
8.2
Connect to site with BTS Site Manager 1. Launch BTS Site Manager
2. Select “Disable”, then “Close”
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3. New FSMF is delivered with preinstalled LN4.0 1.2 (LN4.0 ENB 1202_781_57) SW
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8.3
SW upgrade from RL40 1.2 to RL60 1.1 (LN6.0_ENB_1311_764_08) Upgrade SW by selecting “Software” and “Update SW to BTS Site…”
Select “Browse” Select LN6.0_ENB_1311_764_08_release_BTSSM_downloadable.zip Select “Open”
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Tick “Activate SW after update” box Select “Update” 8.4
SW upgrade from RL60 1.1 to RL70 2.3.1 (LN7.0_ENB_1407_586_18) Upgrade SW by selecting “Software” and “Update SW to BTS Site…” Select “Browse” Select LN7.0_ENB_1407_586_18_release_BTSSM_downloadable.zip Select “Open”
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Tick “Activate SW after update” box Select “Update”
8.5
Commissioning TRS only If FRPA is connected to FSMF EIF2/RF/EXT 6, FSMF can’t detect FRPA until TRS is commissioned with “Enable FSM EIF2 as RP3-01 interface” ticked.
Choose Target - TRS only Commissioning type - Planned Select Commissioning file
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Click “Next” Continue with Send Parameters
8.6
RF units detection
Switch on RF units power and wait until RF modules are detected by system module. The FRPA will show up as not commissioned.
If incompatible SW is detected, then perform a SW upgrade (reload the SW).
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The same SW should be used as already running (LN7.0_ENB_1407_586_18).
Go to Software -> Update SW to BTS Site, choose LN7.0_ENB_1407_586_18_release_BTSSM_downloadable.zip -> Update
8.7
BTS Site commissioning steps
8.7.1 Introduction After the FRPA is detected start BTS Commissioning Select BTS site (check both, BTS and TRS) Select Template Select Commissioning file and browse for the new L18+L7 xml commissioning file as received from RIC
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Continue with Next
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8.7.2 L18 MHA commissioning
Please ensure MHAs are set properly according to plumbing diagram. Please call RIC to verify MHA settings after commissioning.
It is mandatory to fill in correct MHA product code and serial number as per physical MHA in case “MHA in use” option is configured. Cells may stay disabled if MHA product code / serial number are left blank or filled in with incorrect information.
Please follow attached document to find out MHA product code and serial number. Same steps are applied to L18.
Steps to find MHA Serial number and Product code.docx
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The following procedure is for L7 MHA commissioning.
Please call RIC to verify MHA settings after commissioning.
It is mandatory to fill in correct MHA product code and serial number as per physical MHA in case “MHA in use” option is configured. Cells may stay disabled if MHA product code / serial number are left blank or filled in with incorrect information.L7 Antenna Line Management 8.7.3.1 L7 Antenna Line Management L18 Antenna Line Management settings remain unchanged. Therefore ensure the L1800 settings are the same as prior the L700 FRPA radio module installation.
L7 Antenna Line Management should be set according to plumbing diagram.
Scenario 1:
-
L700 tails are connected to triplexer in shelter. L700 is sharing same antenna line as U9 / VHA 850. 700/900 dual band or 700/850/900 Tri band MHA is controlled by U9 / VHA 850.
Please refer to BALLAJURA plumbing diagram.
BALLAJURA.pdf
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Enable DC voltage on FRPA Ant 1&3&5 and disable AISG on all FRPA Antenna ports
Scenario 2:
-
L700 feeders are connected to 700 single band MHA.
Please refer to MIRRABOOKA plumbing diagram.
Enable DC voltage and enable AISG on FRPA Ant 1&3&5
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Scenario 3:
-
L700 FPRAs are installed on monopole / roof.
Please refer to Buranda North plumbing diagram.
B0178.pdf
Disable DC voltage and AISG on all FRPA Antenna ports
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Continue with Next 8.7.3.2 L7 AISG MHA settings L18 AISG MHA settings remain unchanged. Therefore ensure the L1800 settings are the same as prior the L700 FRPA radio module installation. Follow the below instructions for L7 AISG MHA settings.
Scenario 1: -
L700 tails are connected to triplexer in shelter. L700 is sharing same antenna line as U9 / VHA 850. 700/900 dual band or 700/850/900 Tri band MHA is controlled by U9 / VHA 850.
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AISG MHA Settings are not required.
Scenario 2: -
L700 feeders are connected to 700 single band MHA.
Select “This BTS” option and choose Antenna port accordingly
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Scenario 3: - L700 FPRAs are installed on monopole / roof. AISG MHA Settings are not required.
Continue with Next
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8.7.3.3 L7 AISG MHA settings L18 Antenna Line Settings remain unchanged. Therefore ensure the L1800 settings are the same as prior the L700 FRPA radio module installation. Follow the below instructions for L7 Antenna Line Settings. Scenario 1: -
L700 tails are connected to triplexer in shelter. L700 is sharing same antenna line as U9 / VHA 850. 700/900 dual band or 700/850/900 Tri band MHA is controlled by U9 / VHA 850.
Settings: Choose MHA in use and set MHA gain 13dB in all FRPA legs MHA type is set to “other” Please contact RIC to find out MHA serial number and product code for each sector.
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Scenario 2: -
L700 feeders are connected to 700 single band MHA.
Change of Antenna Line Settings is not required
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Scenario 3: -
L700 FPRAs are installed on monopole / roof with no MHA.
Keep default Antenna Line Settings for all FRPA legs Change of Antenna Line Settings is not required
Continue with Next
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8.7.4 Send Parameters
Continue with Send Parameters
8.7.5 Additional Site Settings No need to change
Continue with Next
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8.7.6 Site Testing Site tests -> press Test,
Then select Normal and Start.
Wait around 12 sec until all tests are completed. 7/25/2016 – Work instruction 45 / 55
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Check test results and if all are ‘Pass’, then continue with Next
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8.7.7 Commissioning Report Save the BTS Commissioning Report
Select the desired location and change the File name if required. Continue with Save, then with Finish
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8.8
Retrieve certificate 1. Select IP -> Navigate to tab Application Addresses Make sure to take a note of the original Management plane IP address before changing it. Select VLAN interface IP as Management plane
Click Send
2. Then perform site reset manually
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3. Check if certificate has been successfully retrieved Select Configuration -> Certificate Management
Make sure BTS certificate appear in tab BTS Certificates
4. Change Management plane IP back to the original and click Send
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5. Perform site reset manually 8.9
Commissioning completed After successful BTS commissioning the site status should be”
OAM connected On air TRS commissioned
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9 Check L7 & L18 Cell RSSI level BTS PM will be available in 15 minutes after cell is unlocked. RSSI_PUCCH_AVG and RSSI_PUSCH_AVG need to be checked from BTS Site Manager. RSSI_PUCCH_AVG RSSI_PUCCH_AVG should be between -108 dBm and -102 dBm. If RSSI_PUCCH_AVG is out of the range, please contact RIC for troubleshooting. e.g. Local cell 49
RSSI_PUSCH_AVG
RSSI_PUSCH_AVG should be between -115 dBm and -102 dBm. If RSSI_PUSCH_AVG is out of the range, please contact RIC for troubleshooting. e.g. Local cell 49
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10 Test call 10.1 L18 testing Lock UE (Samsung) to LTE network Type: *#2263# Select “[4] LTE Band Preference” Select “[5] LTE B3” in L1800 case Type: *#0011# to check EARFCN & PCI value Start call tests. Unlock one sector at a time and record the downlink and uplink throughput. Als o make a note of the Round trip time. Each LTE1800 Sector should offer up to 100Mbit/s downlink and 30Mbit/s uplink speeds.
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10.2 L7 testing The L7 testing is required after L700 integration.
Please follow attached testing instruction and fill in test result form.
L700-Testing document.docx
SNR 30
RSRP -59
Att. 1 71.34 20.54 22.7
Sector 1 PCI 346 Att. 2 71 20 21.2
Att. 3 69.87 20.31 20.1
Att. 1 70.23 19.51 19.9
Att. 2 70.48 20.09 20.8
Att. 3 70.04 19.41 25
Att. 1 69.25 19.99 21.1
Att. 2 70.17 19.23 26.7
Att. 3 69.98 19.48 17.9
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK OK OK OK
OK
OK
OK
OK
OK
OK
OK
OK
OK
RSRP -61 Test Items DL TP (Mbps) UL TP (Mbps) Latency (ping, ms) FD-LTE 4G to FD-LTE 4G- Call FD-LTE 4G to 3G- Call SMS MMS
HTTP: Open www.smh.com.au
Sector 2 PCI SNR 347 30
RSRP -62
Sector 3 PCI SNR 345 30
Please ensure UE camps on L7 cell before making test call.
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11 References 11.1 4G LTE bands 4G LTE bands B1 (2100) B2 (1900) B3 (1800) B5 (850) B7 (2600) B8 (900) B28 (700) B40 (2300) 11.2 SFP modules used in L7/L18/L23/L26 eNB SFP modules for 3 Gbps RP3-01 link speed
SFP modules for RP3-01 6 Gbps link speed
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11.3 FSMF LMP connector pin map
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