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IEEE 367-2012

IEEE Recommended Practice for Determining the Electric Power Station Ground Potential Rise and Induced Voltage from a Power Fault

Standard by IEEE, 2012

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  • Availability: Immediate Download
  • Language: English
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  • Updates: Not Included
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  • Language: English
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About This Item

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IEEE 367-2012 is a recommended practice for determining electric power station ground potential rise and the induced voltage that can result from a power fault. It addresses a critical grounding and safety analysis used in power, energy, and industrial applications, where fault conditions can affect equipment, structures, and personnel. By providing a consistent engineering approach, this standard helps support more reliable station design, safer layouts, and clearer evaluation of electrical hazards during fault scenarios.

Overview of IEEE 367-2012

IEEE 367-2012 focuses on the technical methods used to estimate ground potential rise and induced voltages in and around an electric power station during fault events. The document is relevant to grounding studies, fault analysis, and station engineering where voltage transfer and touch-related risks may need to be assessed. It is commonly used as a reference when evaluating how a power fault can influence nearby conductors, bonded structures, and associated electrical components.

Typical use cases

This standard is typically used in the planning and review of substation and power station grounding systems, especially where fault current exposure must be analyzed. It may support design work for utility facilities, industrial power installations, and equipment interfaces that require grounding coordination. Engineers may also use IEEE 367-2012 when checking induced voltages on metallic paths, assessing station layout decisions, or documenting grounding calculations for design approval and internal review.

Why it matters

IEEE 367-2012 matters because fault-driven grounding effects can influence both safety and equipment performance. Accurate evaluation of ground potential rise and induced voltage helps reduce the chance of unsafe voltage gradients, supports consistent design decisions, and improves the quality of engineering documentation. For procurement, compliance, and project verification, the standard can provide a clearer basis for comparing designs and confirming that grounding practices are appropriate for the expected fault conditions.

  • Ground potential rise analysis
  • Induced voltage evaluation
  • Power station fault conditions
  • Grounding and bonding studies
  • Safety-oriented design review
SKU: 52376dc4c4cf

  • Publication Date: 2012
  • Standard Status: Inactive
  • Publisher: IEEE
  • Subject: Power, Energy and Industry Applications; Components, Circuits, Devices and Systems
  • Official IEEE: Doi link
  • This Version: 367 (2012)
  • Previous Version: 367 (1996)
  • Previous Version: 367 (1988)
  • Previous Version: 367 (1979)

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