IEEE P2030.101/D11.6, Oct 2017
IEEE Draft Guide for Designing a Time Synchronization System for Power Substations
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- Language: English
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About This Item
IEEE P2030.101/D11.6, Oct 2017 is an English draft guide for designing a time synchronization system for power substations. It focuses on how timing architecture supports coordinated operation of substation components, where accurate synchronization can affect event recording, protection functions, and system analysis. For engineers working in power, energy, and industrial applications, this technical document helps define a common basis for planning timing distribution, device alignment, and implementation choices in substation environments.
IEEE P2030.101/D11.6, Oct 2017 overview
This draft guide addresses the design of time synchronization systems in power substations, with attention to the practical needs of connected devices and control systems. IEEE P2030.101/D11.6, Oct 2017 is relevant where consistent timestamps are needed across protection relays, monitoring equipment, and automation functions. The document supports engineering decisions around timing sources, distribution methods, and integration considerations so that substation operations can be coordinated and records can be compared with greater confidence.
Typical use cases
Typical use cases include substation automation projects, synchronization planning for protection and control panels, and timing coordination for disturbance recording or sequence-of-events logging. IEEE P2030.101/D11.6, Oct 2017 may also be used when specifying timing requirements for communication-linked equipment in utility substations or industrial power installations. It is especially relevant where multiple devices must share a common time reference to support analysis, troubleshooting, and operational consistency.
Why this standard matters
Reliable synchronization helps reduce ambiguity in recorded events and improves confidence in system behavior during normal operation and faults. IEEE P2030.101/D11.6, Oct 2017 matters because timing design can influence testing, maintenance, and the ability to verify performance across interconnected substation equipment. Using a defined guide can support clearer procurement requirements, more consistent engineering practice, and lower risk when integrating devices that depend on aligned timestamps.
- Time synchronization design for power substations
- Support for protection, monitoring, and event logging
- Substation device timing coordination
- Engineering guidance for utility and industrial power systems
- Publication Date: 2018
- Standard Status: Inactive
- Publisher: IEEE
- Subject: Components, Circuits, Devices and Systems; Power, Energy and Industry Applications
- Official IEEE: Doi link
- This Version: P2030.101 (2018)
- Previous Version: P2030.101 (2017)
- Previous Version: P2030.101 (2016)
- Previous Version: P2030.101 (2016)
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