Information technology — Telecommunications and information exchange between systems — Local and metropolitan area networks — Specific requirements — Part 1BA: Audio video bridging (AVB) systems

Profiles that select features, options, configurations, defaults, protocols and procedures of bridges, stations and LANs that are necessary to build networks that are capable of transporting time-sensitive audio and/or video data streams are defined in this standard.

Technologies de l'information — Télécommunications et échange d'informations entre systèmes — Réseaux de zones locales et métropolitaines — Exigences spécifiques — Partie 1BA: Systèmes de pontage audio-vidéo (AVB)

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INTERNATIONAL ISO/IEC/
STANDARD IEEE
8802-1BA
First edition
2016-10-15
Information technology —
Telecommunications and information
exchange between systems — Local
and metropolitan area networks —
Specific requirements —
Part 1BA:
Audio video bridging (AVB) systems
Technologies de l’information — Télécommunications et échange
d’informations entre systèmes — Réseaux de zones locales et
métropolitaines — Exigences spécifiques —
Partie 1BA: Systèmes de pontage audio-vidéo (AVB)
Reference number
ISO/IEC/IEEE 8802-1BA:2016(E)
© IEEE 2011 – All rights reserved

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ISO/IEC/IEEE 8802-1BA:2016(E)
COPYRIGHT PROTECTED DOCUMENT
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© IEEE 2011 – All rights reserved
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ISO/IEC/IEEE 8802-1BA:2016(E)
Foreword
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ISO/IEC/IEEE 8802-1BA was prepared by Joint Technical Committee ISO/IEC JTC 1, Information Technology,
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© IEEE 2011 – All rights reserved
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IEEE Standard for
 Local and metropolitan area networks—
Audio Video Bridging (AVB) Systems





IEEE Computer Society
Sponsored by the
LAN/MAN Standards Committee

IEEE
IEEE Std 802.1BA™Ǧ2011
3 Park Avenue
New York, NY 10016-5997
USA
30 September 2011

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ISO/IEC/IEEE 8802-1BA:2016(E)

IEEE Std 802.1BA -2011
IEEE Standard for
Local and metropolitan area networks—
Audio Video Bridging (AVB) Systems
Sponsor
LAN/MAN Standards Committee
of the
IEEE Computer Society
Approved 10 September 2011
IEEE-SA Standards Board
© IEEE 2011 – All rights reserved

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ISO/IEC/IEEE 8802-1BA:2016(E)
Abstract: Profiles that select features, options, configurations, defaults, protocols and procedures
of bridges, stations and LANs that are necessary to build networks that are capable of transporting
time-sensitive audio and/or video data streams are defined in this standard.
Keywords: audio video bridging, AVB, Bridged Local Area Networks, IEEE 802.1BA, LANs, local
area networks, MAC Bridges, MANs, metropolitan area networks, time sensitive data streams,
Virtual Bridged Local Area Networks, virtual LANs
The Institute of Electrical and Electronics Engineers, Inc.
3 Park Avenue, New York, NY 10016-5997, USA
Copyright © 2011 by the Institute of Electrical and Electronics Engineers, Inc.
All rights reserved. Published 30 September 2011. Printed in the United States of America.
IEEE and 802 are registered trademarks in the U.S. Patent & Trademark Office, owned by The Institute of Electrical and
Electronics Engineers, Incorporated.
PDF: ISBN 978-0-7381-6739-8 STD97154
Print: ISBN 978-0-7381-6740-4 STDPD97154
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of the publisher.
© IEEE 2011 – All rights reserved

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ISO/IEC/IEEE 8802-1BA:2016(E)
IEEE Standards documents are developed within the IEEE Societies and the Standards Coordinating Committees of the
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ISO/IEC/IEEE 8802-1BA:2016(E)
Introduction
This introduction is not part of IEEE Std 802.1BA-2011, IEEE Standard for Local and metropolitan area networks—
Audio Video Bridging (AVB) Systems.
This standard contains state-of-the-art material. The area covered by this standard is undergoing evolution.
Revisions are anticipated within the next few years to clarify existing material, to correct possible errors, and
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ISO/IEC/IEEE 8802-1BA:2016(E)
Errata
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v
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ISO/IEC/IEEE 8802-1BA:2016(E)
Participants
At the time this standard was submitted to the IEEE-SA for approval, the IEEE 802.1 Working Group had
the following membership:
Tony Jeffree, Chair and Editor
Paul Congdon, Vice Chair
Michael Johas Teener, Chair, AV Bridging Task Group
Zehavit Alon Eric Gray David Olsen
Yafan An Yingjie Gu Donald Pannell
Craig Gunther
Ting Ao Glenn Parsons
Stephen Haddock
Peter Ashwood-Smith Mark Pearson
Hitoshi Hayakawa
Christian Boiger Joseph Pelissier
Hal Keen
Paul Bottorff Rene Raeber
Rudolf Brandner Srikanth Keesara Karen Randall
Craig Carlson Yongbum Kim Josef Roese
Rodney Cummings Philippe Klein Dan Romascanu
Claudio Desanti Oliver Kleineberg Jessy Rouyer
Zhemin Ding Michael Krause Ali Sajassi
Donald Eastlake, III Lin Li Panagiotis Saltsidis
Janos Farkas Jeff Lynch Michael Seaman
Donald Fedyk Ben Mack-Crane Rakesh Sharma
Norman Finn David Martin Kevin Stanton
Ilango Ganga John Messenger Robert Sultan
Geoffrey Garner John Morris PatriciaThaler
Anoop Ghanwani Eric Multanen Chait Tumuluri
Mark Gravel Maarten Vissers
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ISO/IEC/IEEE 8802-1BA:2016(E)
The following members of the individual balloting committee voted on this standard. Balloters may have
voted for approval, disapproval, or abstention.
Thomas Alexander Randall Groves Nick S. A. Nikjoo
Mark Anderson Ashwin Gumaste
Paul Nikolich
Butch Anton Craig Gunther
Satoshi Obara
Lee Armstrong Oliver Hoffmann
David Olsen
Hugh Barrass David Hunter
Glenn Parsons
Atsushi Ito
Robert Boatright
Maximilian Riegel
Tomo Bogataj Raj Jain
Robert Robinson
Junghoon Jee
Nancy Bravin
Benjamin Rolfe
William Byrd Anthony Jeffree
Jessy Rouyer
James Carlo Michael Johas Teener
Randall Safier
Juan Carreon Vincent Jones
Peter Saunderson
David Chalupsky Shinkyo Kaku
Bartien Sayogo
Keith Chow Piotr Karocki
Gil Shultz
Henrik Christensen Stuart J. Kerry
Kapil Sood
Charles Cook Max Kicherer
Amjad Soomro
Rodney Cummings Yongbum Kim
Kevin B. Stanton
Fumio Daido Jeff Koftinoff
Thomas Starai
Wael Diab Bruce Kraemer
Adrian Stephens
Patrick Diamond David Landry
Walter Struppler
Russell Dietz Juan L. Lazaro
Joseph Tardo
Thomas Dineen Michael Lerer
Patricia Thaler
Sourav Dutta Shen Loh
David Thompson
John Egan Greg Luri
Geoffrey Thompson
C. Fitzgerald Elvis Maculuba
Scott Valcourt
Yukihiro Fujimoto Arthur Marris
Prabodh Varshney
John Fuller Jonathon Mclendon
Karl Weber
Geoffrey Garner Matthew Mora
Devon Gayle Michael S. Newman Oren Yuen
David Goodall Charles Ngethe George Zimmerman
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ISO/IEC/IEEE 8802-1BA:2016(E)
When the IEEE-SA Standards Board approved this standard on 10 September 2011, it had the following
membership:
Richard H. Hulett, Chair
John Kulick, Vice Chair
Robert M. Grow, Past Chair
Judith Gorman, Secretary
Masayuki Ariyoshi
Jim Hughes Gary Robinson
William Bartley
Jon Walter Rosdahl
Joseph L. Koepfinger*
Ted Burse
Sam Sciacca
David J. Law
Clint Chaplin
Mike Seavey
Thomas Lee
Wael Diab
Hung Ling Curtis Siller
Jean-Philippe Faure
Oleg Logvinov Phil Winston
Alexander Gelman
Ted Olsen Howard L. Wolfman
Paul Houzé
Don Wright
*Member Emeritus
Also included are the following nonvoting IEEE-SA Standards Board liaisons:
Satish Aggarwal, NRC Representative
Richard DeBlasio, DOE Representative
Michael Janezic, NIST Representative
Catherine Berger
IEEE Project Editor
Patricia Gerdon
IEEE Standards Program Manager, Technical Program Development
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ISO/IEC/IEEE 8802-1BA:2016(E)
Contents
1. Overview. 1
1.1 Scope. 1
1.2 Purpose. 1
1.3 Introduction. 1
1.4 Objectives . 2
2. Normative references. 3
3. Definitions . 5
4. Acronyms and abbreviations . 6
5. Architecture of AVB networks . 7
6. AVB functions . 11
6.1 Energy Efficient Ethernet . 11
6.2 Flow control. 11
6.3 Frame sizes . 12
6.4 Detection of AVB domains. 12
6.5 Meeting latency targets for SR classes A and B. 13
6.6 Variable data rate LANs . 16
6.7 Basic support for streams. 17
6.8 Minimum Bridge requirements. 18
6.9 IEEE 802.1AS time-synchronization event message transmission interval . 19
6.10 Effect of hop count on IEEE 802.1AS accuracy . 19
7. AVB profiles. 20
7.1 Introduction to PCS proformas . 20
7.2 Abbreviations and special symbols. 21
7.3 Instructions for completing the PCS proforma . 21
7.4 Common requirements . 23
Annex A (informative) Bibliography . 31
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ISO/IEC/IEEE 8802-1BA:2016(E)
List of figures
Figure 5-1 An AVB network . 7
Figure 5-2 AVB domain boundaries created by non-AVB systems. 8
Figure 5-3 AVB domain boundaries created by different SR class A priorities . 9
Figure 5-4 AVB domain boundaries created by different SR class B priorities. 10
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ISO/IEC/IEEE 8802-1BA:2016(E)
List of tables
Table 6-1 AVB support in LAN technologies . 13
Table 6-2 Latency targets for SR classes A and B. 14
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ISO/IEC/IEEE 8802-1BA:2016(E)
© IEEE 2011 – All rights reserved

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ISO/IEC/IEEE 8802-1BA:2016(E)
IEEE Standard for
Local and metropolitan area networks—
Audio Video Bridging (AVB) Systems
IMPORTANT NOTICE: This standard is not intended to ensure safety, security, health, or environmental protection.
Implementers of the standard are responsible for determining appropriate safety, security, environmental, and health
practices or regulatory requirements.
This IEEE document is made available for use subject to important notices and legal disclaimers. These notices and
disclaimers appear in all publications containing this document and may be found under the heading “Important
Notice” or “Important Notices and Disclaimers Concerning IEEE Documents.” They can also be obtained on request
from IEEE or viewed at http://standards.ieee.org/IPR/disclaimers.html.
1. Overview
1.1 Scope
This standard defines profiles that select features, options, configurations, defaults, protocols and procedures
of bridges, stations and LANs that are necessary to build networks that are capable of transporting time
sensitive audio and/or video data streams.
1.2 Purpose
The purpose of this standard is to specify defaults and profiles that manufacturers of LAN equipment can
use to develop AVB-compatible LAN components, and to enable a person not skilled in networking to build
a network, using those components, that does not require configuration to provide working audio and/or
video services.
1.3 Introduction
The successful support of time sensitive audio and/or video data streams in a Bridged LAN requires the
selection of specific features and options that are specified in a number of different standards, some of which
are standards developed in IEEE 802, and others (in particular, those that relate to functionality in OSI layer
3 and above ISO/IEC 7498-1:1994 [B3]) that are developed by other bodies. In this standard, it is the
selection of features and options that support OSI layer 1 and 2 LAN functionality that is of interest, in order
to specify the requirements for LAN support both in Bridges and the end stations that attach to them.
The standards from which features and options are selected by this standard are as follows:
a) The VLAN Bridge specification in IEEE Std 802.1Q.
1
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ISO/IEC/IEEE 8802-1BA:2016(E)
IEEE Std 802.1BA-2011 LOCAL AND METROPOLITAN AREA NETWORKS
b) The time synchronization standard, IEEE Std 802.1AS.
c) The MAC and PHY standards specified for the various LAN MAC/PHY technologies, such as IEEE
Std 802.3, IEEE Std 802.11, ITU-T G.9960 and ITU-T G.9961 (Powerline), and MoCA.
These features and options are selected by means of the profiles described in Clause 7. These profiles
support specific functions within an AVB network, such as the Bridges and LAN technologies used to carry
the AV streams, and the end stations that attach to the LAN and that provide the source(s) and the
destination(s) of the stream data.
In some cases, there are functions that are needed in order to construct a usable AVB network, but that are
not described in any other standard. In those cases, the technical specification is included in Clause 6 of this
standard, along with a statement of the conformance requirements associated with the function, so that the
function can be referenced by a profile in the same way as functions defined in any other standard.
Clause 5 introduces the architecture for AVB systems and AVB networks, and some of the terminology used
in describing them.
1.4 Objectives
The architecture described in Clause 5, the AVB functions specified in Clause 6, and the profiles specified in
Clause 7, are intended to meet the following objectives:
a) Describe the components that can be combined to form an AVB network (i.e., a network whose
components cooperate and interoperate to allow the transmission of AV streams) and how those
components can be combined.
b) Describe some of the consequences and limitations for AVB streaming that result from the
incorporation of non-AV capable devices in an AVB network.
c) Define additional functions that are required for AVB operation that are not otherwise documented
in contributing standards.
d) Provide guidance in terms of meeting the end-to-end latency requirements for successful AVB
operation.
e) Define conformance requirements for AVB systems, in terms of the standards to which conformance
is required for the various system components and the optional features of those standards that are
required to be implemented. These conformance requirements address the guaranteed delivery, end-
to-end latency, and time synchronization requirements for successful AVB operation.
2
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ISO/IEC/IEEE 8802-1BA:2016(E)
AUDIO VIDEO BRIDGING (AVB) SYSTEMS IEEE Std 802.1BA-2011
2. Normative references
The following referenced docum
...

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