optix osn 3500ii v100r009c04spc020 release notes (for product)

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Release Notes OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020 Issue 01 Date 2009-12-02 HUAWEI TECHNOLOGIES CO., LTD.

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Page 1: OptiX OSN 3500II V100R009C04SPC020 Release Notes (for Product)

Release Notes

OptiX OSN 3500II Intelligent Optical Transmission SystemV100R009C04SPC020

Issue 01

Date 2009-12-02

HUAWEI TECHNOLOGIES CO., LTD.

Page 2: OptiX OSN 3500II V100R009C04SPC020 Release Notes (for Product)

Huawei Technologies Co., Ltd. provides customers with comprehensive technical support and service. Please feel free to contact our local office or company headquarters.

Huawei Technologies Co., Ltd.

Address: Administration Building, Huawei Technologies Co., Ltd.,Bantian, Longgang District, Shenzhen, 518129, People’s Republic of China

Website: http://www.huawei.com

Email: [email protected]

Copyright © Huawei Technologies Co., Ltd. 2009. All rights reserved.No part of this document may be reproduced or transmitted in any form or by any means without prior written consent of Huawei Technologies Co., Ltd.

Trademarks and Permissions

and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd.All other trademarks and trade names mentioned in this document are the property of their respective holders.

NoticeThe information in this document is subject to change without notice. Every effort has been made in the preparation of this document to ensure accuracy of the contents, but all statements, information, and recommendations in this document do not constitute the warranty of any kind, express or implied.

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

Contents

1 Version Mapping............................................................................61.1 Version Information of the Product....................................................................................................................61.2 Software Information.........................................................................................................................................61.3 Board Software Information..............................................................................................................................7

2 Compatibility Notes.......................................................................93 New Features..............................................................................10

3.1 New Features for V100R009C04SPC020.......................................................................................................103.1.1 New Features of Software......................................................................................................................103.1.2 New Features of Hardware.....................................................................................................................103.1.3 Changes in Alarms..................................................................................................................................10

3.2 New Features for V100R009C02SPC010........................................................................................................113.2.1 New Features of Software......................................................................................................................113.2.2 New Features of Hardware.....................................................................................................................113.2.3 Changes in Alarms..................................................................................................................................11

3.3 New Features for V100R009C02.....................................................................................................................123.3.1 New Features of Software......................................................................................................................123.3.2 New Features of Hardware.....................................................................................................................133.3.3 Changes in Alarms..................................................................................................................................19

4 Features for the V100R008C02.....................................................204.1 New Features for V100R008C02B01K...........................................................................................................20

4.1.1 New Features of Software......................................................................................................................204.1.2 New Features of Hardware.....................................................................................................................214.1.3 Optimized Features.................................................................................................................................234.1.4 Deleted Features.....................................................................................................................................234.1.5 Changes in Command Line....................................................................................................................23

5 Bugs Fixed and Known Anomalies.................................................245.1 Bugs Fixed.......................................................................................................................................................24

5.1.1 V100R009C04SPC020...........................................................................................................................245.1.2 V100R009C02SPC010...........................................................................................................................245.1.3 V100R009C02........................................................................................................................................24

5.2 Known Anomalies............................................................................................................................................27

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

6 Notes and Cautions......................................................................286.1 Software...........................................................................................................................................................286.2 Hardware..........................................................................................................................................................28

7 Upgrade Impacts..........................................................................307.1 Impacts on the Current System During Upgrading.........................................................................................30

7.1.1 Impact on the Service.............................................................................................................................307.1.2 Impact on the Network Communication................................................................................................307.1.3 Impact on Reporting Alarms...................................................................................................................30

7.2 Impacts of the Upgrade on the Current System...............................................................................................30

8 Related Documentation................................................................328.1 Related Documents for the V100R009C04SPC020 Version...........................................................................328.2 Obtaining Documentation................................................................................................................................33

8.2.1 Website...................................................................................................................................................338.2.2 CD-ROM................................................................................................................................................348.2.3 Ordering Documents...............................................................................................................................34

A Acronyms and Abbreviations..........................................................................35

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

Tables

Table 1-1 Software version configuration information...........................................................................................6

Table 1-2 Board version configuration information................................................................................................7

Table 8-1 List of documents for V100R009C04SPC020......................................................................................32

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

1 Version Mapping

This chapter describes the version mapping between the OptiX OSN 3500II V100R009C04SPC020, element management system (EMS), ASON software.

1.1 Version Information of the ProductProduct Name OptiX OSN 3500II

Product Type OptiX OSN 3500II

Product Version V100R009C04SPC020

1.2 Software InformationTable 1-1 Software version configuration information

Software Type Software Version

NE software V100R009C04SPC020 5.21.19.23

EMS software T2000(EMS) V200R007C03SPC02

ASON software GCPV1R7C01

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

1.3 Board Software InformationTable 1-1 Board version configuration information

Type Name Software version Logic version

BIOS versio

n

ExtBIOS

version

PCB version

CXL Unit SSQ5CXLLN

SSQ5CXLQ41SSQ5CXS

5.36.19.23 (U64)200 (U45)110 08.09.

0409.09.0

4 VER.A

SDH Optical

Interface Unit

SSN1SLH1B 7.57 120 2.19 2.51 VER.B

SDH Optical

Interface Unit

SSN1SL1A-B2 SSN1SL4A-B2 SSN3SL16A-

B2 SSN1SLD4A-

B2 SSN3SLQ41SSN1SLQ1A-

B2SSN1SLQ4A-

B2 (SSN1SL1A03SSN1SL1A02SSN1SL1A19 SSN1SL1A15 SSN1SL1A16 SSN1SL1A17 SSN1SL1A18 SSN1SL4A03SSN1SL4A02SSN1SL4A19SSN1SL4A15SSN1SL4A16SSN1SL4A17SSN1SL4A18

SSN3SL16A10SSN3SL16A05SSN3SL16A06SSN3SL16A07SSN3SL16A08SSN3SL16A09SSN1SLD4A0

3SSN1SLD4A0

2SSN1SLD4A1

9SSN1SLD4A1

7.57 120 2.19 2.51 VER.B

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

5SSN1SLD4A1

6SSN1SLD4A1

7SSN1SLD4A1

8SSN1SLQ1A0

3SSN1SLQ1A0

2 SSN1SLQ1A2

0 SSN1SLQ1A1

6 SSN1SLQ1A1

7 SSN1SLQ1A1

8 SSN1SLQ1A1

9SSN1SLQ1A2

1SSN1SLQ4A0

3SSN1SLQ4A0

2SSN1SLQ4A1

9 SSN1SLQ4A1

5 SSN1SLQ4A1

6 SSN1SLQ4A1

7 SSN1SLQ4A1

8SSN3SLQ41

SSN3SLQ4101)

Tributary Unit SSN2PL3A 2.53 130

100 2.19 2.37 VER.A

Tributary Unit SSN2PO1 6.53 120 2.19 2.37 VER.A

Data Processing

UnitSSN1MST4 4.12 120 2.14

2.19 2.34 VER.B

Data Processing

UnitSSN1EMS2 1.18 110 1.10 1.10 VER.B

Auxiliary Unit SSQ1AUX \ \ \ \ VER.B

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

Auxiliary Unit SSR1EOW 6.53 200 2.15 2.23 VER.B

VER.C

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

2 Compatibility Notes

This version is compatible with all the earlier formal versions of the product.

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

3 New Features

This chapter describes the new features for the OptiX OSN 3500II.

3.1 New Features for V100R009C04SPC020This section describes the new features in the OptiX OSN 3500II V100R009C04SPC020.

3.1.1 New Features of SoftwareNew Features

Number/Feature ID

Description Purpose

1 Supports the VC-4 processing function

Enables the SSN1EMS2 board to support the VC-4 processing function.

Optimized FeaturesNone.

Deleted FeaturesNone.

3.1.2 New Features of HardwareNone

3.1.3 Changes in AlarmsNone.

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

3.2 New Features for V100R009C02SPC010This section describes the new features in the OptiX OSN 3500II V100R009C02SPC010.

3.2.1 New Features of SoftwareNew Features

Number/Feature ID

Description Purpose

1 Resource sharing on the working and protection trails of a diamond service and resource sharing on the associated trails of an associated service

When no idle resource is available and the working and protection trails fail, the working or protection tail of a diamond-level service can be rerouted or recreated by using the resource on the protection or working trail, thus ensuring that the service runs normally.

When no idle resource is available and the two associated trails fail, one trail can be recreated by using the resource on the other trail, thus ensuring that the service runs normally.

2 BPS in master/slave mode

On earlier versions, the BPS protection applies only to optical interfaces. After the master/slave mode is used, BPS also applies to electrical interfaces. When the board works in master mode, BPS applies only to optical interfaces; when the board works in slave mode, however, BPS applies to both optical interfaces and electrical interfaces.

Optimized FeaturesNone.

Deleted FeaturesNone.

3.2.2 New Features of HardwareNone

3.2.3 Changes in AlarmsFor details about the alarm updates in OptiX OSN 3500 II Intelligent Optical Transmission System Product Documentation-(V100R009_02), refer to the Alarms Reference (V100R009_01).

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

3.3 New Features for V100R009C02This section describes the features in the OptiX OSN 3500II V100R009C02.

3.3.1 New Features of SoftwareNew Features

Number/Feature ID

Description Purpose

1 Optimizes the rerouting performance of the ASON services.

Optimizes the rerouting algorithm of the ASON services.

Improves the rerouting performance. Applies to the SCC boards that support the

ASON services.

2 Supports microwave IF services.

On the OptiX OSN 3500II equipment: Supports conversion between the microwave

services and SDH services for transmission. Adds the 1+1 and N+1 protection schemes to

microwave services.

3 Supports the diamond tunnel function.

Provides the diamond tunnel services. Adopts the higher order SNCTP scheme to

protect the diamond tunnels, and supports creating dual-ended diamond tunnel services.

Supports creating single-ended diamond tunnel services, and provides the diamond-level protection for 2 Mbit/s services.

4 Supports the high precision timing function specified in IEEE 1588 standard.

Transmits the high precision time signals. Applies to the SCC board that supports high

precision time.

5 Retains the requirements for the standard Ethernet OAM function.

Supports creating, querying, and deleting the maintenance domain, maintenance association, and standard maintenance point.

Supports the CC test, LB test (based on the MAC or MPID), and performance detection of a standard maintenance point.

Certain boards support the standard LT test, OAM PING, and CC destination multicast.

6 Supports GE electrical interfaces.

When the type of a logical port is inconsistent with the type of a physical port and when an alarm is reported, the types of the physical and logical ports can be queried and changed so that the user can use the correct port module.

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

Number/Feature ID

Description Purpose

7 Supports querying or setting the hold-off time of the LCAS protection at the board level.

Sets and queries the hold-off time of the SSN1EGS4 and SSN1EMS4 boards based on the LCAS protection scheme at the board level.

8 UNI Service Management

By using the N4EGS4 board, GMPLS signalling messages (DCN packets) are transmitted through the UNI interface. Hence, the OptiX OSN equipment is able to communicate with the routers provided by Huawei.

Optimized FeaturesNone.

Deleted FeaturesNone.

3.3.2 New Features of HardwareNew Boards

Board Name Description

SSQ5CXL Acts as a 40G_20G board that integrates the cross-connect unit, line unit, and SCC unit.

SSQ5CXS Acts as a 40G_20G board that integrates the cross-connect unit, and SCC unit.

SSQ6CXL Acts as a 90G_20G board that integrates the cross-connect unit, line unit, and SCC unit.

SSQ1AUX Acts as an auxiliary interface board. Provides the Ethernet interface, COM interface, external 75 ohm

clock interface, and alarm output interface of the indicators on the cabinet.

SSN1SEI Acts as an extended interface board of the signals. Provides the F&f, OAM, 16-input 4-output alarm interfaces for the

SSQ1AUX board. Provides two 75 ohm external clock interfaces and one F1 interface

to directly connect to the SCC board.

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OptiX OSN 3500II Intelligent Optical Transmission System V100R009C04SPC020Release Notes

SSN1SLQ16-B2

Receives and transmits 4xSTM-16 optical signals. Supports the optical modules of the I-16, S-16.1, L-16.1, and L-16.2

types. Supports the LC pluggable optical module of the SFP type, which

complies with ITU-T G.957 and ITU-T G.692 for the transmission requirement based on different distances .

SSQ2PIU Acts as the power access board of the OptiX 3500II. Supports the power consumption of 1100 W.

SSN1SL1A-B2SSN1SL4A-B2SSN3SL16A-B2

Receives and transmits 1xSTM-1, 1xSTM–4, or 1xSTM–16 optical signals.

Supports the optical modules of the I-4, S-4.1, L-4.1, L-4.2, VE-4.2, I-1, S-1.1, L-1.1, L-1.2, VE-1.2, I-16, S-16.1, L-16.1, and L-16.2 types.

Supports the LC pluggable optical module of the SFP type, which complies with ITU-T G.957 and ITU-T G.692.

SSN1SLD4A-B2

Receives and transmits 2xSTM–4 optical signals. Supports the optical modules of the I-4, S-4.1, L-4.1, L-4.2, VE-4.2,

I-1, S-1.1, L-1.1, L-1.2, and VE-1.2 types. Supports the LC pluggable optical module of the SFP type, which

complies with ITU-T G.957 and ITU-T G.692.

SSN3SLQ41SSN1SLQ1A-B2SSN1SLQ4A-B2

Receives and transmits 4xSTM-1 or 4xSTM–4 optical signals. Supports the optical modules of the I-4, S-4.1, L-4.1, L-4.2, VE-4.2,

I-1, S-1.1, L-1.1, L-1.2, and VE-1.2 types. Supports the LC pluggable optical module of the SFP type, which

complies with ITU-T G.957 and ITU-T G.692.

SSN2PO1 Supports handling 126 channels of E1 signals. Supports 64–126 E1 channels on the front side, and supports 1–63

E1 channels on the interface boards.

SSN2PQ1-B2 Supports handling 63 channels of E1 signals.

SSN1SLH1-B2 Receives and transmits 16xSTM-1 optical signals. Works with the SSN1EU08, SSN1OU08, or SSN2OU08 board to

support transmitting the STM-1 signals through an electrical interface or an optical interface (based on the S1.1 type).

Supports the backplane at the rate of 2.5 Gbit/s.

SSN1SLH1B Receives and transmits 16xSTM-1 optical signals. Works with the SSN1EU08, SSN1OU08, or SSN2OU08 board to

support transmitting the STM-1 signals through an electrical interface or an optical interface (based on the S1.1 type).

Supports the backplane at the rate of 2.5 Gbit/s for the OptiX OSN 3500II only.

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SSN1PQM-B2 Receives and transmits 63xE1/T1 electrical signals. Works with the SSN1D12S board to support adding or dropping

63xE1/T1 services. Supports the TPS function.

SSN1IFSD1 Receives and transmits 2xSTM-1 microwave signals. Supports up to 2xSTM-1 signals.

SSN1RPWR Accesses two channels of –48 V/–60 V power supply. Outputs six channels of -48 V/-60 W power supply. Supports six ODUs simultaneously.

SSN1SLT1-B2 Receives and transmits 12xSTM-1 optical signals. Supports the optical module of the S-1.1 type. Supports the LC pluggable optical module of the SFP type, which

complies with ITU-T G.957 and ITU-T G.692.

SSN1RPC01/SSN1RPC02

Supports the forward and backward Raman amplification functions. Works with the SSN1SF64A, BPA, and dispersion compensation

boards to transmit signals over an ultra-long distance at the loss of 68 dB.

Supports the IPA function.

SSN5EFS0 Acts as an 8–port FE Ethernet processing board with the switching function.Interface: 8xFEInterface type: 10Base-T, 100Base-TX, 100Base-FXInterface board: SSN1ETF8, SSN1EFF8, N1ETF8A, N1EFF8AService frame format: complies with the Ethernet II and IEEE 802.3 standards.JUMBO frame: supports up to 9600 bytes.Virtual concatenations that support VC-3/VC-12:In the case of VC–12, the number of virtual concatenations ranges from 1 to 126.In the case of VC–3, the number of virtual concatenations ranges from 1 to 24.

Maximum bandwidth of each VCTRUNK: 12xVC–3 or 63xVC–12

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SSN3EFS4 Acts as a 4–port FE Ethernet processing board with the switching function.Interface: 4xFEInterface type: 10Base-T, 100Base-TX, 100Base-FXInterface board: noneService frame format: complies with the Ethernet II and IEEE 802.3 standards.JUMBO frame: supports up to 9600 bytes.Virtual concatenations that support VC-3/VC-12:In the case of VC-12, the number of virtual concatenations ranges from 1 to 126.In the case of VC–3, the number of virtual concatenations ranges from 1 to 24.Maximum bandwidth of each VCTRUNK: 12xVC–3 or 63xVC–12

SSN3EGS2 Acts as a 2-port GE Ethernet processing board with the switching function.Interface: 2xGEInterface type: 1000Base-SX, 1000Base-LX, 1000Base-ZX, and 1000Base-TInterface board: noneService frame format: complies with the Ethernet II and IEEE 802.3 standards.JUMBO frame: supports up to 9600 bytes.Virtual concatenations that support VC-3/VC-12:In the case of VC–12, the number of virtual concatenations ranges from 1 to 252.In the case of VC–3, the number of virtual concatenations ranges from 1 to 48.Maximum bandwidth of each VCTRUNK: 12xVC–3 or 63xVC–12

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SSN4EGS4 Acts as a 4-port GE Ethernet processing board with the switching function.Interface: 4xGEInterface type: 1000Base-SX, 1000Base-LX, 1000Base-ZX, and 1000Base-TInterface board: noneService frame format: complies with the Ethernet II and IEEE 802.3 standards.JUMBO frame: supports up to 9216 bytes.Virtual concatenations that support VC-4, VC-3, and VC-12:In the case of VC–12, the number of virtual concatenations ranges from 1 to 504. Only VC–4s 1–4 and 9–12 can be configured with VC–12.In the case of VC–3, the number of virtual concatenation ranges from 1 to 48.In the case of VC–4, the number of virtual concatenations ranges from 1 to 16.Maximum bandwidth of each VCTRUNK: 8xVC–4, 24xVC–3, or 63xVC–12

SSN2EGT2 Acts as a GE Ethernet transparent transmission board with two optical interfaces.Interface: 2 x GE Interface type: 1000Base-SX, 1000Base-LX, 1000Base-ZX, and 1000Base-TInterface board: noneService frame format: complies with the Ethernet II and IEEE 802.3 standards.JUMBO frame: supports up to 9600 bytes.Virtual concatenations that support VC-3/VC-12:In the case of VC–4, the number of virtual concatenations ranges from 1 to 16.In the case of VC–3, the number of virtual concatenations ranges from 1 to 48.Maximum bandwidth of each VCTRUNK: 8xVC–4 or 24xVC–3

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SSN1EFS0A Acts as a 16–port FE Ethernet processing board with the switching function.Interface: 16xFEInterface type: 10Base-T, 100Base-TX, and 100Base-FXInterface board: SSN1ETF8 and SSN1EFF8Service frame format: complies with the Ethernet II and IEEE 802.3 standards.JUMBO frame: supports up to 9600 bytes.Virtual concatenations that support VC-3/VC-12:In the case of VC-12, the number of virtual concatenations ranges from 1 to 252. Only VC–4s 4, 8, 12, and 16 can be configured with VC–12s.In the case of VC-3, the number of virtual concatenations ranges from 1 to 48.Maximum bandwidth of each VCTRUNK: 12xVC–3 or 63xVC–12

SSN1EMS2 Acts as a 2-port GE/FE Ethernet processing board with the switching function.

Interface: 2xGE, 16xFE

Interface type: 10Base-T, 100Base-TX, 100Base-FX, 1000Base-SX, 1000Base-LX, 1000Base-ZX, and 1000Base-T

Interface board: SSN1ETF8, SSN1EFF8

Service frame format: complies with the Ethernet II and IEEE 802.3 standards.

JUMBO frame: supports up to 9600 bytes.

Virtual concatenations that support VC-3/VC-12:

In the case of VC-12, the number of virtual concatenations ranges from 1 to 252. Only VC–4s 4, 8, 12, and 16 can be configured with VC–12.

In the case of VC–3, the number of virtual concatenations ranges from 1 to 48.

Maximum bandwidth of each VCTRUNK: 12xVC–3 or 63xVC–12.

SSN1EFF8A Acts as an 8-port 100M FE Ethernet optical interface board with the functions specified in IEEE 1588 standard.Manufactured board-OptiX OSN 3500-SSN1EFF8A- 8-port 100M FE Ethernet optical interface board with the functions specified in IEEE 1588 standard -1x1 assembled boardOptiX OSN 3500, SSN1EFF8, Supporting 1588 Characteristic 8-port 10/100M BaseF Ethernet Interface Board,1x1 Assembled Board

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SSN1ETF8A Acts as an 8-port Ethernet electrical interface board with the functions specified in IEEE 1588 standard.Manufactured board-OptiX OSN 3500-SSN1ETF8A- 8-port 10/100M FE Ethernet twisted-pair cable interface board with the functions specified in IEEE 1588 standard -1x1 assembled boardOptiX OSN 3500, SSN1ETF8A, Supporting 1588 Characteristic 8-Port 10M/100M BaseT Fast Ethernet Interface Board, 1x1 Assembled Board

SSN3SLO1 Receives and transmits 8xSTM-1 optical signals. Supports the optical modules of the S-1.1, L-1.1, L-1.2, Ve-1.2, and

I-1.1 types. Supports the LC pluggable optical module of the SFP type, which

complies with ITU-T G.957 and ITU-T G.692.

ODU Receives and transmits the RF signals. Works with the SSN1IFSD1 board.

Optimized FeaturesNone.

Deleted FeaturesNone.

3.3.3 Changes in AlarmsFor details about the alarm updates in OptiX OSN 3500 II Intelligent Optical Transmission System Product Documentation-(V100R009_02), refer to the Alarms Reference (V100R009_01).

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4 Features for the V100R008C02

4.1 New Features for V100R008C02B01KThis section describes the new features in the V100R008C02B01K.

4.1.1 New Features of SoftwareVersion Feature Function Description

Monitoring lower order alarms and performance events of the line board

The SSN4SL16, SSN3SL64 line board provides the function of setting the TUG structure. Hence, when no lower order services are available, the lower order overhead to be received can be set to monitor the lower order alarms and performance events. When various protection schemes are available, the configuration of the lower order overhead to be received, lower order alarms, and lower order performance events need to be consistent on the working path and protection path.

Reporting alarms and performance events over the working path

When the TPS or MSP switching occurs, the alarms and performance events related to the service are always reported over the working path.

Setting and querying lower order loopbacks of the line board

The SSN4SL16 line board provides the function of setting and querying the lower order loopbacks at the VC-3 and VC-12 levels. The original automatic loopback release command can automatically release the loopbacks of the SSN4SL16 line board at the VC-3 and VC-12 levels.

Querying the state of lower order services

Currently, the state of the lower order services that pass through the NEs cannot be monitored. Hence, a faulty node cannot be located quickly. To increase the speed of locating a faulty node on the network based on the alarm of a service, the function of querying the state of lower order services is provided. The T2000 provides a query interface and issues a command to the NE software to query the actual alarm of a lower order service.

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Version Feature Function Description

Setting and querying the attribute of long-parameter performance events

Sets and queries the long-parameter performance attributes, including monitoring state, whether the threshold function is enabled, threshold, and automatic reporting.

Setting and querying the threshold of lower order bit errors of a line board

The SSN4SL16 line board provides the function of setting and querying the threshold of B3 and B2 lower order bit errors at the VC-3 level.

Querying the threshold of the optical power

Queries various thresholds of a board, including input optical power threshold and output optical power threshold.

Querying the port state Queries the state of a port (such as an optical interface and an Ethernet port).

Detecting the state of an ETH port and reporting the relevant alarm

Monitors the connection state of an ETH port at an NE. If the ETH port is disconnected, the LAN_LOC alarm is reported.

Detecting and reporting the temperature of a board

In the case of a board whose temperature can be detected, the function of collecting and reporting the temperature information of a board is provided.

4.1.2 New Features of HardwareNew Board

Basic Function Specification

SSN4SL16A Receives and transmits STM-16 optical signals.Monitors the lower order path UNEQ (LP UNEQ) performance.

Supports the I-16, S-16.1, L-16.1, and L-16.2 optical interfaces.Supports the LC pluggable optical module of the SFP type, which complies with ITU-T G.957 and ITU-T G.692.

SSR1CXL Line:Receives and transmits the following signals:One channel of optical signals (The STM-1, STM-4, or STM-16 level can be set.)Two channels of optical signals (The STM-1 or STM-4 level can be set.)Four channels of optical signals (The STM-1 or STM-4 level can be set.)

Cross-connection:

Line:Supports detecting and querying the information about optical modules.Supports setting to start up or shut down the laser, and supports the automatic laser shutdown function.Supports pluggable optical modules for easy maintenance.

Cross-connection:At the STM-1 level, supports the VC-12, VC-3, and VC-4 services.At the STM-16 level, supports the VC-12, VC-3, VC-4, VC-4-4c, and concatenation

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New Board

Basic Function Specification

Provides 15 Gbit/s VC-4 non-blocked full cross-connections, and 5 Gbit/s VC-3 or VC-12 non-blocked full cross-connections.Provides two 4 Mbit/s HDLC channels to perform the MSP or SNCP switching for fast and urgent transmission.

SCC:Supports the F&f interface of the COA, which is accessed through the auxiliary interface board.Uses the 10M/100M Ethernet interface.Uses the OAM interface in RS-232 mode.Performs remote maintenance through the RS-232 DCE Modem.Provides two DCC interfaces for external clocks.

services.At the STM-4 level, supports the VC-12, VC-3, VC-4, VC-4-4c, VC-4-8c, and VC-4-16c concatenation services.Supports processing section overheads in the STM-4, STM-4, and STM-16 signals.Supports processing path overheads of the J0, J1, and C2 bytes (transparent transmission and termination).

SCC:Provides the standard clock for system synchronization.Extracts, inserts, and handles the SSM information and clock IDs.Supports transmitting the DCC overhead information through two external clock interfaces.Supports inputting or outputting one channel of 2048 kHz or 2048 kbit/s timing signals.Supports inputting two channels of 2048 kHz or 2048 kbit/s timing signals.Provides the function of selecting external clock sources.Supports outputting two channels of 2048 kHz or 2048 kbit/s timing signals.SCC board:Supports the F&f interface that is used for managing the COA. The F&f interface is accessed by the auxiliary interface board.Supports the 10M/100M Ethernet interface for mutual communication between the boards.Supports the 10M Ethernet interface for mutual communication between the working and protection SCC boards.Supports the OAM interface that is used for connecting the PC or workstation in RS-232 mode.Supports remotely maintaining the Modem of the DEC in RS-232 mode by using the auxiliary interface board.Supports the OAM interface that is used for connecting the PC or workstation in RS-232 modeSupports remotely maintaining the Modem of the DEC in RS-232 mode by using the

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4.1.3 Optimized FeaturesDescription

VCG performance statistics

Purpose To provide the statistics function of the VCG performance in the RMON

Impact On the VCG side, the following RMON performance events can be queried: Number of well-transmitted packets (administration frames included) Total number of transmitted packets (including the number of transmitted packets that are

ended incorrectly, the number of incorrect frames caused by FIFO underflow, and the number of well-transmitted packets)

Total number of bytes in the transmitted data (bad packets included) Rate of the bytes (the framing bytes excluded, but the FCS bytes included) in the

transmitted data (damaged packets included) Number of good received packets (administration frames excluded) Total number of received packets (bad packets included) Total number of bytes in the received data (bad packets included) Rate of the bytes (the framing bytes excluded, but the FCS bytes included) in the received

data (damaged packets included)On the ETH side, the rate can be queried.

4.1.4 Deleted FeaturesNone.

4.1.5 Changes in Command LineNone.

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5 Bugs Fixed and Known Anomalies

This chapter describes the bugs fixed and known anomalies for the OptiX OSN 3500.

5.1 Bugs Fixed5.1.1 V100R009C04SPC020

None.

5.1.2 V100R009C02SPC010None.

5.1.3 V100R009C02

Trace Item No Problem Description Severity

OPAD40647 Trace of a maintenance problem: When specific NGSDH boards work with each other, the deletion of a board causes service rerouting failure on another board.

Minor

OPAD40612 [D] Working and protection sharing occurs on the new and original trails of the 16 cascaded and associated silver services on the egress node. The GSCC repeatedly resets after the egress node restarts upon power-off.

Minor

OPAD40500 [N] After the existing version is used or after the NE resets, ECCs are disconnected.

Minor

OPAD40029 [SVT05 recurs irregularly] Database backup fails after simulation package diffusion.

Minor

OPAD40004 [SVT05 recurs conditionally] The N5GSCC fails to restore data from the CF card through the DIP recovery function.

Minor

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Trace Item No Problem Description Severity

OPAD39941 [Recurs conditionally] The AIS alarm needs to be inserted for lower order services that are not loaded.

Minor

OPAD39731 [SVT02_recurs with a certain probability] The R2CXL board reports the OMMUN_FAIL alarm transiently and regularly.

Minor

OPAD39529 [SVT03 recurs irregularly] Cross-connect feature (Mixed insertion of R1 and R2 CXL boards): When working/protection switching is performed for the cross-connect or GSCC boards, lower order services time out with a small probability. The timeout duration is not long.

Minor

OPAD38875 [SVT01_recurs conditionally] When working/protection switching is performed through scripts multiple times, abnormal reset (in reboot:TTIPSPPP) occurs during the working/protection switching.

Minor

OPAD38734 [SVT01_rarely recurs] Q5 working and protection GSCC boards are used. After warm reset is performed on the working GSCC board, an abnormal reset record is found in the reset log.

Minor

OPAD37385 <Use case> [5.36.19.10_T14][Communication]: When the N5GSCC works with IF boards, ECCs are disconnected. (This problem occurs once.)

Minor

OPAD36607 [SDV01_HPTIME_recurs conditionally]: When working/protection switching is performed on the GSCC boards, the external time source jitters and then recovers.

Minor

OPAD35791 When intelligent services are optimized in batches or many revertive tunnels are optimized on the CDMA network in Shanghai, the reversion time is long.

Minor

OPAD40678 [R9C02 IMA T03 recurs conditionally] GSCC feature (Q2/Q3): When the fan speed is set on the OptiX OSN 1500B, warm reset is performed on the GSCC board.

Minor

OPAD40671 [R9C02 IMA T03 recurs conditionally] GSCC feature (SSQ2CXL+1500A): The bandwidth of the actual slots in which Q2/Q3 CXL boards are located on the OptiX OSN 1500A is different from that in specifications. Please handle it.

Minor

OPAD40666 [R9C02 IMA T02 recurs conditionally] GSCC feature (R2/Q5): Centrally controlled boards exist on the NE. After the logical board of the cross-connect board is deleted, initializing the NE causes the tFcl suspension.

Minor

OPAD40593 [IMA T03_recurs conditionally] The OptiX OSN 3500II is configured with services when the ssn1slh1 board goes online. When the OptiX OSN 3500II issues the verification command, the tFcl is suspended.

Minor

OPAD40536 [IMA T02 recurs conditionally] 1184 SNCP services are configured in a protection group. When information about the protection group is queried, the NE resets.

Minor

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Trace Item No Problem Description Severity

OPAD40535 [R9C02 IMA T02 recurs conditionally] Cross-connect feature (SSQ5CXL): When lower order services are configured on the OptiX OSN 1500A using the SSQ5CXL board, the services are interrupted.

Minor

OPAD40317 [R9C02 IMA T02 recurs conditionally] Line feature (SSR2CXLN): Warm reset is performed on the SSR2CXLN board. The services transmitted through the lines on the integrated board are always interrupted after the SSR2CXLN board goes online. A few minutes later, the services recover.

Minor

OPAD40296 <Use cases are available> [V1R9C02-3500II-slots] New slots 24 and 38 cannot be configured on the ETS8 board of the OptiX OSN 3500II.

Minor

OPAD40290 <Use cases are available> [V1R9C02-EFT8A] The EFT8A board enables transparent transmission of CRC error frames. When packets whose lengths exceed the maximum packet length supported by the IP interface are transmitted, the packets can still pass the IP interface.

Minor

OPAD40160 [IMA T01] Services transmitted through the lines on the R2CXL board with a single optical interface are interrupted.

Minor

OPAD40144 [IMA T01] Shutting down the laser triggers the switching of the MSP; the MSP does not recover after the laser is started.

Minor

OPAD40008 [D] When associated silver tunnel services with high priorities preempt silver tunnel services with low priorities, the services are rerouted and returned. After the services and cross-connections are deleted, residual cross-connections are found on the ingress node. [SVP-PREEMPTION-PREEMPTED-270]

Minor

OPAD39946 Problem occurring on networks recurs conditionally: The actual power consumption of the fans of the OptiX OSN 7500 should be changed to 19 W.

Minor

OPAD39865 [D] After diamond tunnels are rerouted and returned, residual cross-connections are found on the NMS because the host reports incorrect SNCTP relations.

Minor

OPAD39819 Trace of a maintenance problem: When SSN1GXCSA, SSN1EXCSA, and SSN1UXCSA/B cross-connect boards are configured on the OptiX OSN 3500 R6 and later versions, the rotating speed of fans cannot be adjusted.

Minor

OPAD39806 [SVT04_recurs conditionally] Common cross-connections are configured. The H1A and H1B boards are exchanged. After the exchange, services are interrupted.

Minor

OPAD39553 [Q5CXL-1588] When working and protection Q5CXL boards are used to test 1588, board 17 cannot serve as the working board.

Minor

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Trace Item No Problem Description Severity

OPAD38783 [D] 48 revertive silver tunnels are created. The tunnels are rerouted upon fiber breaks. After the tunnels are rerouted successfully, the services fail to be returned and are always in the lsp_waiting_restore state.

Minor

OPAD38759 [ASON solution test] After a shared MESH restoration trail is configured, static services using shared timeslots as sink timeslots can still be configured.

Minor

OPAD38222 [1588 deployment test><Test cases on phase differences between second frame headers>] When the time on the dual NEs in the preceding figure is synchronized through 1588, the oscilloscope is connected to the external time 1PPS interfaces of the two NEs. The second frame headers are lost frequently at the external time interface on NE #201.

Minor

OPAD37394 [N][No use case is available] After the control block is deleted from the intermediate node of diamond channel services, control block re-creation is initiated and the NE resets.

Minor

OPAD37374 [N] Services are deleted from the ingress node when the intermediate node of diamond tunnels is reset. 45 minutes later, residual cross-connections are found on the intermediate node through cfg-get-xcconnect, but the timeslots are in the FREE state.

Minor

OPAD37078 [Safety test] The SSR1EOW board is configured with the old orderwire phone module. This module connects the -48 V GND and PGND directly. This board cannot be used in DC-I mode.

Minor

OPAD35956 Problem about discrete services on a military network: The host needs to add an interface for querying the maximum serial number of abnormal events for the NMS.

Minor

OPAD40648 Service problem: On the network of China Unicom, Hangzhou Branch, the logical board of the D75S cannot be found on the T2000 after the upgrade from R8C01B01c to R8C02B01L (in DC mode). This problem occurs conditionally and occasionally on six OptiX OSN 1500 NEs.

Minor

5.2 Known AnomaliesTrace Item No

Problem Description Severity

Solution

A23D11510 Obtaining the current working trail of the diamond service fails

Minor Workaround: None.Emergency Measures: None.

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6 Notes and Cautions

6.1 Software This document does not contain any specific operation on version upgrade. All upgrade

operations should be performed on site by Huawei technical support engineers, or should be performed under the guidance of Huawei technical support engineers. Before obtaining the written permission from Huawei, do not upgrade the software version by yourself, to prevent any abnormity or negative effect from occurring on the current services.

A hard reset causes a service interruption that is less than three minutes. Do not set the port of the TPS protection board as a clock source in the clock source

priority table. Within ten minutes after the equipment is powered on, MSP and SNCP do not enter the

normal working state. During this period, do not perform MSP- or SNCP-related operations.

6.2 Hardware Wear an anti-static wrist strap before handling boards. Make sure the anti-static wrist

strap is well grounded to prevent electrostatic discharge (ESD) from damaging the boards.

Read the relevant instructions before installing, operating, or maintaining the equipment. Ignoring the instructions can cause exposure to dangerous laser radiation.

It is recommended that you wear eye-protective glasses when handling lasers or fibers. Make sure that the optical source is switched off before removing or inserting an optical

module. Use an optical power meter to check the optical source and ensure that the optical source

is switched off by measuring the optical power. If you cannot determine whether the light source is switched off, do not directly look into

the exposed fiber or fiber-optic connector. When you open the cabinet door of the equipment, be properly prepared to protect

yourself against the laser radiation.

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Do not use an optical instrument such as a microscope, a magnifying glass, or an eye loupe to view the optical connector or fiber.

When installing the AC power supply facility, strictly adhere to the local safety rules or regulations. The personnel who install the AC facility must be certified for high voltage and AC power operations.

If any water is found in the cabinet or if the cabinet is wet, switch off the power supply immediately.

Before installing or removing the power cable, switch off the power supply.

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7 Upgrade Impacts

Before you upgrade the earlier version to the V100R009C04SPC020 version, read this chapter carefully to learn the possible impacts on the current system caused by upgrading.

7.1 Impacts on the Current System During Upgrading7.1.1 Impact on the Service

After the upgrade of the board software, the board should be reset (warm) so that the new board software functions. After the upgrade of the FPGA, the board should be reset (cold) so that the new FPGA functions. Cold reset of a service board interrupts services for less than 10 minutes.

7.1.2 Impact on the Network CommunicationAfter the NE software is activated during upgrade, the NE software is reset and then the new NE software functions. In the reset process, the communication between the T2000 and the NE is interrupted for less than 10 minutes. During the interruption period, the T2000 cannot monitor the alarms and performance events on the NE.

After the board software is activated during upgrade, the board software is reset and then the new board software functions. In the reset process, the communication between the T2000 and the board is interrupted for less than 10 minutes. During this interruption period, the T2000 cannot monitor the alarms and performance events on the board. After the FPGA is activated during upgrade, the services are interrupted for less than 10 minutes.

7.1.3 Impact on Reporting AlarmsNone.

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7.2 Impacts of the Upgrade on the Current System

None.

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8 Related Documentation

This chapter provides the list of documents that are released with the OptiX OSN 3500II V100R009C04SPC020. This chapter also describes how to obtain the related documents from Huawei Technologies Co., Ltd.

8.1 Related Documents for the V100R009C04SPC020 Version

Table 8-1 provides the list of documents for V100R009C04SPC020.

Table 8-1 List of documents for V100R009C04SPC020

BOM Document Content Description

31183430 OptiX OSN 3500 II Intelligent Optical Transmission System Product Documentation-(V100R009_04)

These documents describe in detail the functions and features, technical characteristics, installation and commissioning methods, service configuration, routine maintenance and troubleshooting guide of the OptiX OSN 3500 II equipment.

31504598 OSN 3500II Quick Installation Guide This document describes the process for installing the equipment and components and the method of routing the cables according to the on-site installation sequence. This document also describes the related precautions during the installation.

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BOM Document Content Description

31504331 N63E Cabinet Installation Guide The document introduces how to install N63E cabinets on antistatic and concrete floor. It is suit to field engineer installing cabinets.

*BOM number refers to the number of a document on http://support.huawei.com. You can enter the number in the Search box on the upper right of the website.

Notice for Field Engineers (INTERNAL)The technical support engineers of Huawei need to download the software package and the related documents, and need to submit the software package and the related documents to the customer.

8.2 Obtaining Documentation8.2.1 Website

You can obtain the related documents by visiting the website http://support.huawei.com.

NOTEApply for your respective authority to obtain documents from the website.

Registering on the WebsiteTo register yourself on http://support.huawei.com, perform the following steps.

Step 1 Log in to the homepage of http://support.huawei.com. Click Select a Location > Language and choose a proper language.

Step 2 Click Login to enter the Sign In page. In this page. Then, click Register Now and follow the guidelines to perform the registration.

Step 3 If the registration succeeds, you will get your user account and password within two or three days. Make a note of your user account and password.

----End

Obtaining DocumentsTo obtain a document on http://support.huawei.com, perform the following steps.

Step 1 If it is the first time you visit the Huawei support website, follow the preceding steps to register yourself. If you are a registered user, go to step 2.

Step 2 Log in to the homepage of http://support.huawei.com. Click Select a Location > Language or Worldwide [Change] and choose a proper language. Click Login to enter the Sign In page. Then, enter your user account, password, and the verify code.

Step 3 If the login succeeds, click Documentation to enter the documentation page.

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Step 4 On the Documentation page, click the navigation tree on the left to enter the product line and product pages. On the product page, click the Product Manual link to find the product manuals that you need. You can also find what you need by clicking the Search button on the homepage after you log in. Browse the HTML documentation online and download the PDF documentation. When downloading the relevant documentation, click Click to Download Electronic Documentation in the top-right corner.

----End

8.2.2 CD-ROMThe package of documents for the product is integrated into one CD-ROM that is delivered with the equipment. The CD-ROM can be found in the accessories delivered with the equipment. After you run or install the CD-ROM on a personal computer (PC), you can browse the documents of the product.

The documents that are contained in the CD-ROM map the version of the delivered equipment. If the R or later releases of the product are upgraded, you can ask the local technical support department for the upgraded CD-ROM files. If the software of the R or earlier releases are updated, you can read the relevant release notes to learn about the update information of the upgraded release.

8.2.3 Ordering DocumentsTo order hard-copy documents, submit your application to the local technical support office of Huawei. The application must contain the BOM numbers and titles of the documents to be applied.

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A Acronyms and Abbreviations

Acronym and Abbreviation

Full Spelling

ASON Automatic Switched Optical Network

BIOS Basic Input/Output System

BOM Bill of Material

DCC Data Communication Channel

DNI Dual Node Interconnection

ECC Embedded Control Channel

EMS Element Management System

ExtBIOS Extended BIOS

FPGA Field Programmable Gate Array

ID Identification

NE Network Element

NM Network Management system

OAM Operation, Administration and Maintenance

OSN Optical Switch Network

PCB Printed Circuit Board

SDH Synchronous Digital Hierarchy

SNCP Sub-Network Connection Protection

SNCMP Sub-Network Connection Multi- Protection

SNCTP Sub-Network Connection Tunnel Protection

TPS Tributary Protection Switching

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