IEEE P367/D9, Jan 2012
IEEE Draft Recommended Practice for Determining the Electric Power Station Ground Potential Rise and Induced Voltage from a Power Fault
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About This Item
IEEE P367/D9, Jan 2012 is a draft recommended practice focused on determining electric power station ground potential rise and the induced voltage that can result from a power fault. It is relevant to grounding studies, station safety analysis, and engineering work where fault conditions must be understood before equipment is specified or installed. For power and energy applications, this technical document helps support more consistent calculations and informed design decisions in substations and related facilities.
What is IEEE P367/D9, Jan 2012?
IEEE P367/D9, Jan 2012 addresses methods for evaluating how a fault in a power system can elevate ground potential and create induced voltages within an electric power station. Its purpose is to guide engineers in studying these electrical effects so they can better assess personnel exposure, equipment stress, and grounding performance. As a draft recommended practice, it reflects a technical framework for analysis rather than a product specification, making it useful for engineering review and design coordination.
Where is IEEE P367/D9, Jan 2012 used?
This standard is commonly used in power station and substation grounding studies, especially where fault current paths may influence nearby structures, conductors, or connected equipment. It is relevant during station design, system expansion, and troubleshooting of grounding-related concerns in utility and industrial power installations. Engineers may use IEEE P367/D9, Jan 2012 when evaluating earth grid behavior, induced voltage effects, and the electrical environment around high-energy power facilities.
Why is IEEE P367/D9, Jan 2012 important?
IEEE P367/D9, Jan 2012 matters because grounding performance and fault-driven voltage rise directly affect safety, design quality, and operational reliability. A clear method for estimating ground potential rise and induced voltage supports better risk reduction, helps avoid inconsistent engineering assumptions, and can improve documentation for review and compliance efforts. In practice, it gives teams a structured basis for comparing grounding alternatives and checking whether station conditions remain within acceptable limits.
- Ground potential rise evaluation
- Induced voltage assessment
- Power fault analysis
- Station grounding studies
- Safety and design review support
- Publication Date: 2012
- Standard Status: Inactive
- Publisher: IEEE
- Subject: Power, Energy and Industry Applications; Components, Circuits, Devices and Systems
- Official IEEE: Doi link
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