General Information

Abstract

ICS proforma for ETS 300 417-3-1.

Status
Published
Publication Date
30-Nov-2003
Current Stage
6060 - National Implementation/Publication (Adopted Project)
Start Date
01-Dec-2003
Due Date
01-Dec-2003
Completion Date
01-Dec-2003

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SIST EN 300 417-3-2 V1.1.2:2003

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Overview

SIST EN 300 417-3-2 V1.1.2:2003 is a Slovenian standard harmonized with the European Norm EN 300 417-3-2. Published by the Slovenian Institute for Standardization (SIST), this standard addresses the transmission and multiplexing (TM) functions for telecommunications equipment – specifically, the generic requirements for Synchronous Transport Module-N (STM-N) regenerator and multiplex section layer functions in line with SDH (Synchronous Digital Hierarchy) technology. The document provides an Implementation Conformance Statement (ICS) proforma specification, which forms the basis for verifying and declaring that a given equipment implementation meets the conformance requirements defined in EN 300 417-3-1.

Key Topics

  • Synchronous Transport Module-N (STM-N) Functions: Covers STM-1, STM-4, and STM-16 regenerator and multiplex section layer implementations crucial for SDH transmission systems.
  • ICS Proforma Specification: Supplies a structured proforma used for conformance statements. It guides equipment manufacturers in documenting the degree to which their products align with relevant standard sections.
  • Layer Functionality: Details functional requirements, such as signal alignment, multiplexing, demultiplexing, adaptation between layers, error monitoring, and performance monitoring at both regenerator and multiplex section layers.
  • Conformance and Testing: Facilitates structured, repeatable conformance testing for telecommunications equipment, supporting transparent validation and interoperability.
  • Implementation Identification: Outlines required information for describing the implementation under test, including supplier, client, and technical contact information.

Applications

This standard is highly relevant for manufacturers, integrators, and certification bodies working with SDH transmission equipment. Typical use cases include:

  • Telecommunication Equipment Manufacturing
    • Ensures STM-N equipment meets the European SDH functional requirements.
    • Streamlines product development by providing a checklist for technical features and compliance.
  • Conformance Testing
    • Provides a formal mechanism for verification of SDH components, facilitating third-party certification and self-declaration of compliance.
    • Reduces market entry barriers by harmonizing testing expectations and documentation.
  • Network Integration and Operation
    • Assists network planners and operators in specifying, evaluating, and commissioning SDH transport systems.
    • Enhances network reliability and service continuity through standardized monitoring, fault management, and protection switching features.
  • Interoperability Assurance
    • Promotes compatibility among SDH equipment from different suppliers, ensuring seamless integration in multi-vendor environments.

Related Standards

  • EN 300 417-3-1: Specifies the underlying functional requirements for transmission and multiplexing STM-N equipment, which the ICS proforma in this standard references.
  • EN 300 417 Series: Comprehensive set of standards for SDH transmission systems, covering other aspects such as digital cross-connects, add-drop multiplexers, and management functions.
  • IEC and ITU-T Standards: International standards providing broader frameworks and technical specifications for SDH and transmission systems.
  • ISO/IEC 9646: Guidelines for the use of ICS proforma and conformance assessment methodologies in telecommunications.

Keywords: transmission and multiplexing, SDH, STM-N, conformance testing, ICS proforma, telecommunications equipment, SDH layer functions, error monitoring, performance monitoring, interoperability, standards compliance.

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Standard

SIST EN 300 417-3-2 V1.1.2:2003

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Frequently Asked Questions

SIST EN 300 417-3-2 V1.1.2:2003 is a standard published by the Slovenian Institute for Standardization (SIST). Its full title is "Transmission and Multiplexing (TM); Generic requirements of transport functionality of equipment; Part 3-2: Synchronous Transport Module-N (STM-N) regenerator and multiplex section layer functions; Implementation Conformance Statement (ICS) proforma specification". This standard covers: ICS proforma for ETS 300 417-3-1.

ICS proforma for ETS 300 417-3-1.

SIST EN 300 417-3-2 V1.1.2:2003 is classified under the following ICS (International Classification for Standards) categories: 33.040.20 - Transmission systems. The ICS classification helps identify the subject area and facilitates finding related standards.

SIST EN 300 417-3-2 V1.1.2:2003 is available in PDF format for immediate download after purchase. The document can be added to your cart and obtained through the secure checkout process. Digital delivery ensures instant access to the complete standard document.

Standards Content (Sample)


SLOVENSKI STANDARD
01-december-2003
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RSUHPH±GHO)XQNFLMHSODVWLUHJHQHUDWRUVNHJDLQPXOWLSOHNVQHJDRGVHND]D
VLQKURQLSUHQRVQLPRGXO1 6701 ±3URIRUPDVSHFLILNDFLMDL]MDYHRVNODGQRVWL
L]YHGEH ,&6
Transmission and Multiplexing (TM); Generic requirements of transport functionality of
equipment; Part 3-2: Synchronous Transport Module-N (STM-N) regenerator and
multiplex section layer functions; Implementation Conformance Statement (ICS)
proforma specification
Ta slovenski standard je istoveten z: EN 300 417-3-2 Version 1.1.2
ICS:
33.040.20 Prenosni sistem Transmission systems
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

EN 300 417-3-2 V1.1.2 (1998-11)
European Standard (Telecommunications series)
Transmission and Multiplexing (TM);
Generic requirements of transport functionality of equipment;
Part 3-2: Synchronous Transport Module-N (STM-N)
regenerator and multiplex section layer functions
Implementation Conformance Statement (ICS)
proforma specification
2 EN 300 417-3-2 V1.1.2 (1998-11)
Reference
REN/TM-01015-3-2 (3v0riidc.PDF)
Keywords
ICS, STM, SDH, transmission, testing
ETSI
Postal address
F-06921 Sophia Antipolis Cedex - FRANCE
Office address
650 Route des Lucioles - Sophia Antipolis
Valbonne - FRANCE
Tel.: +33 4 92 94 42 00  Fax: +33 4 93 65
47 16
Siret N° 348 623 562 00017 - NAF 742 C
Association à but non lucratif enregistrée à la
Sous-Préfecture de Grasse (06) N° 7803/88
Internet
secretariat@etsi.fr
http://www.etsi.org
Copyright Notification
No part may be reproduced except as authorized by written permission.
The copyright and the foregoing restriction extend to reproduction in all media.
© European Telecommunications Standards Institute 1998.
All rights reserved.
ETSI
3 EN 300 417-3-2 V1.1.2 (1998-11)
Contents
Intellectual Property Rights.9
Foreword .9
Introduction .10
1 Scope.11
2 References.11
3 Definitions and abbreviations .12
3.1 Definitions . 12
3.2 Abbreviations. 12
4 Conformance to this ICS proforma specification .15
Annex A (normative): ICS proforma for EN 300 417-3-1.16
A.1 Guidance for completing the ICS proforma.16
A.1.1 Purposes and structure . 16
A.1.2 Abbreviations and conventions. 16
A.1.3 Instructions for completing the ICS proforma . 18
Annex B (normative): ICS proforma for STM-1 regenerator section layer .19
B.1 Identification of the implementation.19
B.1.1 Date of the statement . 19
B.1.2 Implementation Under Test (IUT) identification . 19
B.1.3 System Under Test (SUT) identification. 20
B.1.4 Product supplier. 20
B.1.5 Client . 21
B.1.6 ICS contact person. 21
B.2 Identification of the EN.22
B.3 Global statement of conformance of STM-1 Regenerator Section (RS1) layer .22
B.4 RS1 Layer function .23
B.4.1 RS1 layer description. 23
B.4.2 RS1 layer transmission tables . 24
B.4.2.1 RS1 connection function: RS1_C. 24
B.4.2.2 STM-1 regenerator section layer trail termination functions: RS1_TT_So and RS1_TT_Sk . 24
B.4.2.2.1 Frame alignment signal. 24
B.4.2.2.2 FAS generation. 24
B.4.2.2.3 Signal scrambling / descrambling. 25
B.4.2.2.4 In service error monitoring process . 26
B.4.2.2.5 Trail Trace Identifier (TTI) . 27
B.4.2.3 RS1 layer to MS1 Layer adaptation functions: RS1/MS1_A_So and RS1/MS1_A_Sk. 29
B.4.2.3.1 RS1 layer to STM-1 Multiplex Section (MS1) layer multiplexing and demultiplexing processes . 29
B.4.2.4 RS1 layer to DCC Layer adaptation functions: RS1/DCC_A_So and RS1/DCC_A_Sk. 29
B.4.2.4.1 RS1 layer to DCC layer multiplexing and demultiplexing processes . 29
B.4.2.5 RS1 layer to P0s layer adaptation functions: RS1/P0s_A_So-N and RS1/P0s_A_Sk-N. 30
B.4.2.5.1 RS1 layer to P0s layer multiplexing and demultiplexing processes. 30
B.4.2.5.2 RS1 layer to P0s layer frequency justification and bitrate adaptation processes . 30
B.4.2.6 RS1 layer to V0x layer adaptation functions: RS1/V0x_A_So and RS1/V0x_A_Sk. 31
B.4.2.6.1 RS1 layer to V0x layer multiplexing and demultiplexing processes. 31
B.4.3 Defect, fault and performance monitoring . 32
B.4.3.1 Trail termination point mode management. 32
B.4.3.2 Defect detection and clearance criteria. 32
B.4.3.3 Consequent action activation and clearance criteria. 33
ETSI
4 EN 300 417-3-2 V1.1.2 (1998-11)
B.4.3.4 Defect correlation. 34
Annex C (normative): ICS proforma for STM-1 multiplex section layer .35
C.1 Identification of the implementation.35
C.1.1 Date of the statement . 35
C.1.2 Implementation Under Test (IUT) identification . 35
C.1.3 System Under Test (SUT) identification. 35
C.1.4 Product supplier. 36
C.1.5 Client . 36
C.1.6 ICS contact person. 37
C.2 Identification of the EN.37
C.3 Global statement of conformance of MS1 layer .37
C.4 MS1 section layer function .38
C.4.1 MS1 layer description. 38
C.4.2 MS1 layer transmission tables . 40
C.4.2.1 MS1 connection function: MS1_C. 40
C.4.2.2 MS1 layer trail termination functions: MS1_TT_So and MS1_TT_Sk . 41
C.4.2.2.1 In service error monitoring process . 41
C.4.2.2.2 Server layer status monitoring process . 42
C.4.2.2.2.1 MS1 Alarm Indication Signal (MS1 AIS). 42
C.4.2.2.3 Remote indicators monitoring process. 42
C.4.2.2.3.1 MS1 Remote Defect Indication (MS1 RDI). 42
C.4.2.2.3.2 MS1 Remote Error Indication (REI) (MS1 REI). 43
C.4.2.3 MS1 layer to S4 layer adaptation functions: MS1/S4_A_So and MS1/S4_A_Sk. 44
C.4.2.3.1 MS1 layer to S4 Layer frequency justification and bitrate adaptation processes. 44
C.4.2.3.2 MS1 layer to S4 layer alignment process. 45
C.4.2.3.2.1 AU-4 pointer generation . 47
C.4.2.3.2.2 AU-4 pointer interpretation. 50
C.4.2.3.3 MS1 layer to S4 layer multiplexing and demultiplexing processes . 54
C.4.2.4 MS1 layer to DCC layer adaptation functions: MS1/DCC_A_So and MS1/DCC_A_Sk . 55
C.4.2.4.1 MS1 layer to DCC layer multiplexing and demultiplexing processes . 55
C.4.2.5 MS1 layer to P0s layer adaptation functions: MS1/P0s_A_So and MS1/P0s_A_Sk . 55
C.4.2.5.1 MS1 layer to P0s layer frequency justification and bitrate adaptation processes . 55
C.4.2.5.2 MS1 layer to P0s layer multiplexing and demultiplexing processes. 56
C.4.3 MS1 linear trail protection transmission tables. 57
C.4.3.1 MS1 linear trail protection connection functions: MS1P1+1_C and MS1P1:n_C . 59
C.4.3.2 MS1 linear protection trail termination functions: MS1P_TT_So and MS1P_TT_Sk. 60
C.4.3.3 MS1 linear trail protection adaptation functions: MS1/MS1P_A_So and MS1/MS1P_A_Sk. 61
C.4.3.3.1 MS1 layer to MS1 protection layer multiplexing and demultiplexing processes. 61
C.4.3.4 MS1 linear trail protection processes . 61
C.4.3.4.1 Automatic Protection Switching (APS) externally initiated commands. 61
C.4.3.4.2 Automatic Protection Switching (APS) automatically initiated commands. 63
C.4.3.4.3 Automatic Protection Switching (APS) generalities. 64
C.4.3.4.4 Automatic Protection Switching (APS) switch performance .65
C.4.3.4.5 Automatic Protection Switching (APS) subprocesses. 65
C.4.3.4.6 Automatic Protection Switching (APS) signal generation . 67
C.4.3.4.7 Automatic Protection Switching (APS) signal interpretation . 68
C.4.3.4.8 Automatic Protection Switching (APS) status report. 69
C.4.4 MS1 layer defect, fault and performance monitoring tables . 69
C.4.4.1 Port status management. 69
C.4.4.2 Defect detection and clearance criteria. 70
C.4.4.3 Consequent action activation and clearance criteria. 72
C.4.4.4 Defect correlation. 74
C.4.4.5 Performance monitoring. 75
C.4.4.5.1 Near end performance monitoring. 75
C.4.4.5.2 Far end performance monitoring . 75
C.4.4.5.3 Pointer performance monitoring. 76
C.4.5 MS1 protection layer defect, fault and performance monitoring tables . 76
ETSI
5 EN 300 417-3-2 V1.1.2 (1998-11)
C.4.5.1 Defect detection and clearance criteria. 76
C.4.5.2 Consequent action activation and clearance criteria. 78
C.4.5.3 Defect correlation. 79
C.4.5.4 Performance monitoring. 80
Annex D (normative): ICS proforma for STM-4 regenerator section layer .81
D.1 Identification of the implementation.81
D.1.1 Date of the statement . 81
D.1.2 Implementation Under Test (IUT) identification . 81
D.1.3 System Under Test (SUT) identification. 81
D.1.4 Product supplier. 82
D.1.5 Client . 82
D.1.6 ICS contact person. 83
D.2 Identification of the EN.83
D.3 Global statement of conformance of RS-4 regenerator section (RS4).83
D.4 RS4 section layer function .84
D.4.1 STM-4 regenerator section layer description. 84
D.4.2 RS-4 regenerator section Layer Transmission Tables. 85
D.4.2.1 RS-4 regenerator section connection function: RS4_C . 85
D.4.2.2 RS-4 regenerator section layer trail termination functions: RS4_TT_So and RS4_TT_Sk . 85
D.4.2.2.1 FAS. 85
D.4.2.2.2 FAS generation. 85
D.4.2.2.3 Signal scrambling / descrambling. 86
D.4.2.2.4 In service error monitoring process . 87
D.4.2.2.5 Trail Trace Identifier (TTI) . 88
D.4.2.3 STM-4 regenerator section layer to MS4 layer adaptation functions: RS4/MS4_A_So and
RS4/MS4_A_Sk. 90
D.4.2.3.1 RS4 layer to MS4 layer multiplexing and demultiplexing processes. 90
D.4.2.4 STM-4 regenerator section layer to DCC layer adaptation functions: RS4/DCC_A_So and
RS4/DCC_A_Sk. 90
D.4.2.4.1 RS4 layer to DCC layer multiplexing and demultiplexing processes . 90
D.4.2.5 STM-4 regenerator section layer to P0s layer adaptation functions: RS4/P0s_A_So-N and
RS4/P0s_A_Sk-N. 91
D.4.2.5.1 RS4 layer to P0s layer multiplexing and demultiplexing processes. 91
D.4.2.5.2 RS4 layer to P0s layer frequency justification and bitrate adaptation processes . 91
D.4.2.6 STM-4 regenerator section layer to V0x layer adaptation functions: RS4/V0x_A_So and
RS4/V0x_A_Sk. 92
D.4.2.6.1 RS4 layer to V0x layer multiplexing and demultiplexing processes. 92
D.4.3 Defect, fault and performance monitoring . 93
D.4.3.1 Trail termination point mode management. 93
D.4.3.2 Defect detection and clearance criteria. 93
D.4.3.3 Consequent action activation and clearance criteria. 94
D.4.3.4 Defect correlation. 95
Annex E (normative): ICS proforma for STM-4 multiplex section layer .96
E.1 Identification of the implementation.96
E.1.1 Date of the statement . 96
E.1.2 Implementation Under Test (IUT) identification . 96
E.1.3 System Under Test (SUT) identification. 96
E.1.4 Product supplier. 97
E.1.5 Client . 97
E.1.6 ICS contact person. 98
E.2 Identification of the EN.98
E.3 Global statement of conformance of STM-4 Multiplex Section (MS4) layer.98
E.4 MS4 layer function.99
E.4.1 MS4 layer Description . 99
ETSI
6 EN 300 417-3-2 V1.1.2 (1998-11)
E.4.2 MS4 layer transmission tables . 101
E.4.2.1 MS4 connection function: MS4_C. 102
E.4.2.2 MS4 layer trail termination functions: MS4_TT_So and MS4_TT_Sk . 102
E.4.2.2.1 In service error monitoring process . 102
E.4.2.2.2 Server layer status monitoring process . 103
E.4.2.2.2.1 MS4 Alarm Indication Signal (MS4 AIS). 103
E.4.2.2.3 Remote indicators monitoring process. 103
E.4.2.2.3.1 MS4 Remote Defect Indication (RDI) (MS4 RDI) . 103
E.4.2.2.3.2 MS4 Remote Error Indication (REI) (MS4 REI). 104
E.4.2.3 MS4 layer to S4 layer adaptation functions: MS4/S4_A_So and MS4/S4_A_Sk. 105
E.4.2.3.1 MS4 layer to S4 layer frequency justification and bitrate adaptation processes. 106
E.4.2.3.2 MS4 layer to S4 layer alignment process. 106
E.4.2.3.2.1 AU pointer generation. 108
E.4.2.3.2.2 AU pointer interpretation. 111
E.4.2.3.3 MS4 layer to S4 layer multiplexing and demultiplexing processes . 116
E.4.2.4 MS4 layer to S4-4c layer adaptation functions: MS4/S4-4c_A_So and MS4/S4-4c_A_Sk. 116
E.4.2.4.1 MS4 layer to S4-4c layer frequency justification and bitrate adaptation processes. 117
E.4.2.4.2 MS4 layer to S4-4c layer alignment process. 117
E.4.2.4.2.1 Concatenation indicator recovery process. 119
E.4.2.4.3 MS4 layer to S4-4c layer multiplexing and demultiplexing processes . 121
E.4.2.5 MS4 layer to DCC Layer adaptation functions: MS4/DCC_A_So and MS4/DCC_A_Sk. 121
E.4.2.5.1 MS4 layer to DCC layer multiplexing and demultiplexing processes . 121
E.4.2.6 MS4 layer to P0s layer adaptation functions: MS4/P0s_A_So and MS4/P0s_A_Sk . 122
E.4.2.6.1 MS4 layer to P0s layer frequency justification and bitrate adaptation processes . 122
E.4.2.6.2 MS4 layer to P0s layer multiplexing and demultiplexing processes. 122
E.4.3 MS4 Linear Trail Protection Transmission Tables . 123
E.4.3.1 MS4 Linear Trail Protection Connection Functions: MS4P1+1_C and MS4P1:n_C . 125
E.4.3.2 MS4 Linear Protection Trail Termination Functions: MS4P_TT_So and MS4P_TT_Sk . 126
E.4.3.3 MS4 Linear Trail Protection Adaptation Functions: MS4/MS4P_A_So and MS4/MS4P_A_Sk. 127
E.4.3.3.1 MS4 layer to MS4 Protection layer multiplexing and demultiplexing processes. 127
E.4.3.4 MS4 Linear Trail Protection processes . 127
E.4.3.4.1 Automatic Protection Switching (APS) externally initiated commands. 127
E.4.3.4.2 Automatic Protection Switching (APS) automatically initiated commands. 129
E.4.3.4.3 Automatic Protection Switching (APS) generalities. 130
E.4.3.4.4 Automatic Protection Switching (APS) switch performance . 131
E.4.3.4.5 Automatic Protection Switching (APS) subprocesses. 131
E.4.3.4.6 Automatic Protection Switching (APS) signal generation . 133
E.4.3.4.7 Automatic Protection Switching (APS) signal interpretation . 134
E.4.3.4.8 Automatic Protection Switching (APS) status report. 135
E.4.4 MS4 layer defect, fault and performance monitoring tables . 135
E.4.4.1 Port status management. 135
E.4.4.2 Defect detection and clearance criteria. 136
E.4.4.3 Consequent action activation and clearance criteria. 139
E.4.4.4 Defect correlation. 142
E.4.4.5 Performance monitoring. 143
E.4.4.5.1 Near end performance monitoring. 143
E.4.4.5.2 Far end performance monitoring . 143
E.4.4.5.3 Pointer performance monitoring. 144
E.4.5 MS4 linear trail protection defect, fault and performance monitoring tables. 144
E.4.5.1 Defect detection and clearance criteria. 144
E.4.5.2 Consequent action activation and clearance criteria. 146
E.4.5.3 Defect correlation. 147
E.4.5.4 Performance monitoring. 148
Annex F (normative): ICS proforma for STM-16 regenerator section layer .149
F.1 Identification of the implementation.149
F.1.1 Date of the statement . 149
F.1.2 Implementation Under Test (IUT) identification . 149
F.1.3 System Under Test (SUT) identification. 149
F.1.4 Product supplier. 150
ETSI
7 EN 300 417-3-2 V1.1.2 (1998-11)
F.1.5 Client . 150
F.1.6 ICS contact person. 151
F.2 Identification of the EN.151
F.3 Global statement of conformance of STM-16 Regenerator Section (RS16) layer .151
F.4 RS16 Section Layer function .152
F.4.1 RS16 layer description. 152
F.4.2 STM-16 regenerator section layer transmission tables . 153
F.4.2.1 STM-16 Regenerator section connection function: RS16_C. 153
F.4.2.2 RS16 layer trail termination functions: RS16_TT_So and RS16_TT_Sk. 153
F.4.2.2.1 FAS. 153
F.4.2.2.2 Frame Alignment Signal generation . 153
F.4.2.2.3 Signal scrambling / descrambling. 154
F.4.2.2.4 In service error monitoring process . 155
F.4.2.2.5 Trail Trace Identifier (TTI) . 156
F.4.2.3 STM-16 regenerator section layer to MS16 Layer adaptation functions: RS16/MS16_A_So and
RS16/MS16_A_Sk. 158
F.4.2.3.1 RS16 layer to MS16 layer multiplexing and demultiplexing processes. 158
F.4.2.4 RS16 layer to DCC layer adaptation functions: RS16/DCC_A_So and RS16/DCC_A_Sk. 158
F.4.2.4.1 RS16 layer to DCC layer multiplexing and demultiplexing processes . 158
F.4.2.5 RS16 layer to P0s layer adaptation functions: RS16/P0s_A_So-N and RS16/P0s_A_Sk-N. 159
F.4.2.5.1 RS16 layer to P0s layer multiplexing and demultiplexing processes. 159
F.4.2.5.2 RS16 layer to P0s layer frequency justification and bitrate adaptation processes . 159
F.4.2.6 RS16 layer to V0x layer adaptation functions: RS16/V0x_A_So and RS16/V0x_A_Sk. 160
F.4.2.6.1 RS16 layer to V0x layer multiplexing and demultiplexing processes. 160
F.4.3 Defect, fault and performance monitoring . 161
F.4.3.1 Trail termination point mode management. 161
F.4.3.2 Defect detection and clearance criteria. 161
F.4.3.3 Consequent action activation and clearance criteria. 162
F.4.3.4 Defect correlation. 163
Annex G (normative): ICS proforma for STM-16 multiplex section layer .164
G.1 Identification of the implementation.164
G.1.1 Date of the statement . 164
G.1.2 Implementation Under Test (IUT) identification . 164
G.1.3 System Under Test (SUT) identification. 164
G.1.4 Product supplier. 165
G.1.5 Client . 165
G.1.6 ICS contact person. 166
G.2 Identification of the EN.166
G.3 Global statement of conformance of STM-16 Multiplex Section (MS16) layer.166
G.4 MS16 Section Layer function .167
G.4.1 MS16 layer description. 167
G.4.2 MS16 layer transmission tables . 171
G.4.2.1 MS16 connection function: MS16_C. 171
G.4.2.2 MS16 layer trail termination functions: MS16_TT_So and MS16_TT_Sk . 172
G.4.2.2.1 In service error monitoring process . 172
G.4.2.2.2 Server layer status monitoring process . 173
G.4.2.2.2.1 MS16 Alarm Indication Signal (MS16 AIS). 173
G.4.2.2.3 Remote indicators monitoring process. 173
G.4.2.2.3.1 MS16 Remote Defect Indication (RDI) (MS16 RDI) . 173
G.4.2.2.3.2 MS16 Remote Error Indication (REI) (MS16 REI). 174
G.4.2.3 MS16 layer to S4 layer adaptation functions: MS16/S4_A_So and MS16/S4_A_Sk. 175
G.4.2.3.1 MS16 layer to S4 layer frequency justification and bitrate adaptation processes. 177
G.4.2.3.2 MS16 layer to S4 layer alignment process. 177
G.4.2.3.2.1 AU pointer generation. 179
G.4.2.3.2.2 AU pointer interpretation. 182
ETSI
8 EN 300 417-3-2 V1.1.2 (1998-11)
G.4.2.3.3 MS16 layer to S4 layer multiplexing and demultiplexing processes . 187
G.4.2.4 MS16 layer to S4-4c layer adaptation functions: MS16/S4-4c_A_So and MS16/S4-4c_A_Sk. 187
G.4.2.4.1 MS16 layer to S4-4c layer frequency justification and bitrate adaptation processes. 188
G.4.2.4.2 MS16 layer to S4-4c layer alignment process. 188
G.4.2.4.2.1 Concatenation indicator recovery process. 191
G.4.2.4.3 MS16 layer to S4-4c layer multiplexing and demultiplexing processes . 193
G.4.2.5 MS16 layer to DCC layer adaptation functions: MS16/DCC_A_So and MS16/DCC_A_Sk . 193
G.4.2.5.1 MS16 layer to DCC layer multiplexing and demultiplexing processes . 193
G.4.2.6 STM-16 Multiplex section layer to P0s layer adaptation functions: MS16/P0s_A_So and
MS16/P0s_A_Sk. 194
G.4.2.6.1 MS16 layer to P0s layer frequency justification and bitrate adaptation processes . 194
G.4.2.6.2 MS16 layer to P0s layer multiplexing and demultiplexing processes. 194
G.4.3 MS16 linear trail protection transmission tables. 195
G.4.3.1 MS16 linear trail protection connection functions: MS16P1+1_C and MS16P1:n_C . 197
G.4.3.2 MS16 linear protection trail termination functions: MS16P_TT_So and MS16P_TT_Sk. 198
G.4.3.3 MS16 linear trail protection adaptation functions: MS16/MS16P_A_So and MS16/MS16P_A_Sk. 199
G.4.3.3.1 MS16 layer to MS16 protection layer multiplexing and demultiplexing processes. 199
G.4.3.4 MS16 linear trail protection processes . 199
G.4.3.4.1 Automatic Protection Switching (APS) externally initiated commands. 199
G.4.3.4.2 Automatic Protection Switching (APS) automatically initiated commands. 200
G.4.3.4.3 Automatic Protection Switching (APS) generalities. 202
G.4.3.4.4 Automatic Protection Switching (APS) switch performance . 202
G.4.3.4.5 Automatic Protection Switching (APS) subprocesses. 202
G.4.3.4.6 Automatic Protection Switching (APS) signal generation .
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