IEEE 1588-2008 REDLINE
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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IEEE Standard for a Precision Clock Synchronization Protocol for Networked Measurement and Control Systems
22-06-2020
English
24-07-2008
1 Overview
1.1 Scope
1.2 Purpose
1.3 Layout of the document
2 Normative references
3 Definitions, acronyms, and abbreviations
3.1 Definitions
3.2 Acronyms and abbreviations
4 Conventions
4.1 Descriptive lexical form syntax
4.2 Word usage
4.3 Behavioral specification notation
5 Data types and on-the-wire formats in a PTP system
5.1 General
5.2 Primitive data type specifications
5.3 Derived data type specifications
5.4 On-the-wire formats
6 Clock synchronization model
6.1 General
6.2 Principle assumptions about the network and
implementation recommendations
6.3 PTP systems
6.4 PTP message classes
6.5 PTP device types
6.6 Synchronization overview
6.7 PTP communications overview
7 Characterization of PTP entities
7.1 Domains
7.2 PTP timescale
7.3 PTP communications
7.4 PTP communication media
7.5 PTP ports
7.6 PTP device characterization
7.7 PTP timing characterization
8 PTP data sets
8.1 General specifications for data set members
8.2 Data sets for ordinary and boundary clocks
8.3 Data sets for transparent clocks
9 PTP for ordinary and boundary clocks
9.1 General protocol requirements for PTP ordinary and
boundary clocks
9.2 State protocol
9.3 Best master clock algorithm
9.4 Grandmaster clocks
9.5 Message processing semantics
9.6 Changes in the local clock
10 PTP for transparent clocks
10.1 General requirements for both end-to-end and peer-to-peer
transparent clocks
10.2 End-to-end transparent clock requirements
10.3 Peer-to-peer transparent clock requirements
11 Clock offset, path delay, residence time, and asymmetry
corrections
11.1 General specifications
11.2 Computation of clock offset in ordinary and boundary clocks
11.3 Delay request-response mechanism
11.4 Peer delay mechanism
11.5 Transparent clock residence time correction for PTP
version 2 events
11.6 Asymmetry correction for PTP version 2 event messages
12 Synchronization and syntonization of clocks
12.1 Syntonization
12.2 Synchronization
13 PTP message formats
13.1 General
13.2 General message format requirements
13.3 Header
13.4 Suffix
13.5 Announce message
13.6 Sync and Delay_Req messages
13.7 Follow_Up message
13.8 Delay_Resp message
13.9 Pdelay_Req message
13.10 Pdelay_Resp message
13.11 Pdelay_Resp_Follow_Up message
13.12 Signaling message
13.13 Management message
14 TLV entity specifications
14.1 General requirements
14.2 Experimental TLVs
14.3 Vendor and standard organization extension TLVs
15 Management
15.1 General
15.2 PTP management mechanism
15.3 Processing of management messages
15.4 Management message format
15.5 Management TLVs
16 General optional features
16.1 Unicast message negotiation (optional)
16.2 Path trace (optional)
16.3 Alternate timescales (optional)
17 State configuration options
17.1 General
17.2 Data types for options
17.3 Grandmaster clusters (optional)
17.4 Alternate master (optional)
17.5 Unicast discovery (optional)
17.6 Acceptable master table (optional)
18 Compatibility requirements
18.1 Compatibility between version 2 and future versions
18.2 Compatibility between version 1 and version 2
18.3 Message formats and data types
18.4 Naming changes
18.5 Restrictions on mixed version 1 and version 2 systems
19 Conformance
19.1 Conformance objective
19.2 PTP conformance requirements
19.3 PTP profiles
Annex A (informative) Using PTP
Annex B (informative) Timescales and epochs in PTP
Annex C (informative) Examples of residence and asymmetry
corrections
Annex D (normative) Transport of PTP over User Datagram Protocol
over Internet Protocol Version 4
Annex E (normative) Transport of PTP over User Datagram Protocol
over Internet Protocol Version 6
Annex F (normative) Transport of PTP over IEEE 802.3/Ethernet
Annex G (normative) Transport of PTP over DeviceNET
Annex H (normative) Transport of PTP over ControlNET
Annex I (normative) Transport of PTP over IEC 61158 Type 10
Annex J (normative) Default PTP profiles
Annex K (informative) Security protocol (experimental)
Annex L (informative) Transport of cumulative frequency scale
factor offset (experimental)
Annex M (informative) Bibliography
Describes a protocol enabling precise synchronization of clocks in measurement and control systems implemented with technologies such as network communication, local computing, and distributed objects. The protocol is applicable to systems communicating by local area networks supporting multicast messaging including, but not limited to, Ethernet.
Committee |
TC9 - Sensor Technology
|
DevelopmentNote |
Also numbered as IEC 61588. (03/2009)
|
DocumentType |
Standard
|
Pages |
300
|
PublisherName |
Institute of Electrical & Electronics Engineers
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
I.S. EN 62351-9:2017 | POWER SYSTEMS MANAGEMENT AND ASSOCIATED INFORMATION EXCHANGE - DATA AND COMMUNICATIONS SECURITY - PART 9: CYBER SECURITY KEY MANAGEMENT FOR POWER SYSTEM EQUIPMENT |
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CEI UNI EN 13757-5 : 2009 | COMMUNICATION SYSTEMS FOR METERS AND REMOTE READING OF METERS - PART 5: WIRELESS RELAYING |
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IEEE DRAFT C37.118 : D7.0 2005 | SYNCHROPHASORS FOR POWER SYSTEMS |
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ISO/IEC/IEEE 8802-1AS:2014 | Information technology Telecommunications and information exchange between systems Local and metropolitan area networks Part 1AS: Timing and synchronization for time-sensitive applications in bridged local area networks |
I.S. EN 13757-5:2015 | COMMUNICATION SYSTEMS FOR METERS - PART 5: WIRELESS M-BUS RELAYING |
I.S. EN 61850-10:2013 | COMMUNICATION NETWORKS AND SYSTEMS FOR POWER UTILITY AUTOMATION - PART 10: CONFORMANCE TESTING (IEC 61850-10:2012 (EQV)) |
I.S. EN 62439:2008 | HIGH AVAILABILITY AUTOMATION NETWORKS |
IEC 61850-10:2012 | Communication networks and systems for power utility automation - Part 10: Conformance testing |
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IEC 61158-6-10:2014 | Industrial communication networks - Fieldbus specifications - Part 6-10: Application layer protocol specification - Type 10 elements |
IEEE 802-2014 | IEEE Standard for Local and Metropolitan Area Networks: Overview and Architecture |
IEC 61158-6-2:2014 | Industrial communication networks - Fieldbus specifications - Part 6-2: Application layer protocol specification - Type 2 elements |
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IEEE 802.1Q-2014 | IEEE Standard for Local and metropolitan area networks--Bridges and Bridged Networks |
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IEEE 802.1Q-2005 | IEEE Standard for Local and Metropolitan Area Networks---Virtual Bridged Local Area Networks |
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IEEE 802.1AB-2009 | IEEE Standard for Local and Metropolitan Area Networks-- Station and Media Access Control Connectivity Discovery |
IEC 61158-5-10:2014 | Industrial communication networks - Fieldbus specifications - Part 5-10: Application layer service definition - Type 10 elements |
IEEE 802.1AB-2005 | IEEE Standard for Local and metropolitan area networks -- Station and Media Access Control Connectivity Discovery |
IEC 61158-5-2:2014 | Industrial communication networks - Fieldbus specifications - Part 5-2: Application layer service definition - Type 2 elements |
IEEE 802-2001 | IEEE Standard for Local and Metropolitan Area Networks: Overview and Architecture |
IEC 61158-3-2:2014 | Industrial communication networks - Fieldbus specifications - Part 3-2: Data-lonk layer service definition - Type 2 elements |
FIPS PUB 180 : 2002 | SECURE HASH STANDARD |
IEC 61784-2:2014 | Industrial communication networks - Profiles - Part 2: Additional fieldbus profiles for real-time networks based on ISO/IEC 8802-3 |
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