IEEE P2030.101/D11, August 2016 PDF | Request Standard
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IEEE P2030.101/D11, August 2016

IEEE Draft Guide for Designing a Time Synchronization System for Power Substations

Standard by IEEE, 2016

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  • Availability: Immediate Download
  • Language: English
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  • Language: English
  • License Type: Enterprise / Multi User
  • Updates: Included

About This Item

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IEEE P2030.101/D11, August 2016 is a draft guide for designing a time synchronization system for power substations. It addresses the technical considerations involved in aligning timing across protection, control, and communications equipment, where consistent time references can support accurate event records and coordinated operation. In the context of power, energy, and industry applications, IEEE P2030.101/D11, August 2016 is relevant to engineers who need a structured approach to timing architecture for substation environments.

What is IEEE P2030.101/D11, August 2016?

This technical document provides draft guidance for time synchronization design in power substations, with an emphasis on how timing should be planned, distributed, and maintained across equipment and systems. IEEE P2030.101/D11, August 2016 is best understood as a design-oriented standard for creating a dependable synchronization framework rather than a product specification. It is intended to help define consistent engineering practices for substations where precise timing may affect monitoring, sequencing, event correlation, and system coordination.

Where is IEEE P2030.101/D11, August 2016 used?

IEEE P2030.101/D11, August 2016 is used in substation engineering projects where relays, controllers, measurement devices, and communication networks depend on a shared time source. It is especially relevant in power utility installations that require coordinated event logging, disturbance analysis, and synchronized operations across multiple devices. The guide may also be useful during substation upgrades, control system integration, and timing system design reviews for facilities that need reliable synchronization in industrial power environments.

Why is IEEE P2030.101/D11, August 2016 important?

Time synchronization affects how accurately a substation can record events, compare measurements, and coordinate automated functions. IEEE P2030.101/D11, August 2016 helps support design consistency by giving engineers a common basis for planning timing architecture and evaluating implementation choices. That can reduce integration risk, improve testing and troubleshooting, and support more dependable operation across protection and control systems. For procurement and compliance work, it also provides a clearer reference point for technical requirements and system expectations.

  • Draft guidance for substation time synchronization design
  • Relevant to protection, control, and communications equipment
  • Supports accurate event logging and timing coordination
  • Useful for utility and industrial power system integration
  • Helps with design review, testing, and implementation planning
SKU: 39354eb183dd

  • Publication Date: 2016
  • Standard Status: Inactive
  • Publisher: IEEE
  • Subject: Power, Energy and Industry Applications; Components, Circuits, Devices and Systems
  • Official IEEE: Doi link

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