IEEE P400.1/D17, Oct 2018 PDF | Request Standard
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IEEE P400.1/D17, Oct 2018

IEEE Draft Guide for Field Testing of Laminated Dielectric, Shielded AC Power Cable Systems Rated 5 kV to 500 kV Using High Voltage Direct Current (HVDC)

Standard by IEEE, 2018

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  • Language: English
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  • Language: English
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  • Updates: Included

About This Item

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IEEE P400.1/D17, Oct 2018 is a draft guide for field testing laminated dielectric, shielded AC power cable systems rated 5 kV to 500 kV using HVDC. It addresses how high-voltage direct current testing may be applied to cable systems built for power transmission and distribution, where insulation condition and shielding integrity are critical. For engineers, test planners, and asset owners, IEEE P400.1/D17, Oct 2018 provides a focused technical reference for evaluating cable performance in the field.

IEEE P400.1/D17, Oct 2018 overview

This draft guide is aimed at field testing practices for laminated dielectric, shielded AC power cable systems across a wide voltage range. Its technical context sits at the intersection of cable insulation materials, electrical testing, and power system reliability. IEEE P400.1/D17, Oct 2018 is relevant where HVDC methods are used to assess cable condition, supporting more consistent test planning and interpretation. The document is especially useful when working with shielded systems that require careful control of test conditions and equipment.

Typical use cases

IEEE P400.1/D17, Oct 2018 is typically used during commissioning, maintenance, or diagnostic testing of laminated dielectric shielded power cables. It may support field crews working on underground transmission circuits, utility cable runs, or industrial power networks that rely on higher-voltage AC cable systems. The guide is also relevant for test equipment selection, insulation verification, and troubleshooting where HVDC field testing is part of the workflow. Its scope fits projects that need structured cable evaluation rather than routine operational checks.

Why this standard matters

This standard matters because field testing of high-voltage cable systems can affect both safety and confidence in the installed asset. A clear guide helps reduce variation in test practices, supports better comparison of results, and improves decision-making around acceptance or maintenance. IEEE P400.1/D17, Oct 2018 is useful for aligning engineering teams, contractors, and owners on a common testing approach for laminated dielectric, shielded cables. That consistency can help limit avoidable risk and support more reliable power system performance.

  • HVDC field testing guidance
  • Laminated dielectric cable systems
  • Shielded AC power cables
  • 5 kV to 500 kV application range
  • Testing, commissioning, and diagnostics
SKU: 6d9d9eba7424

  • Publication Date: 2018
  • Standard Status: Inactive
  • Publisher: IEEE
  • Subject: Components, Circuits, Devices and Systems; Engineered Materials, Dielectrics and Plasmas; Power, Energy and Industry Applications
  • Official IEEE: Doi link
  • New Version Available: P400.1 (2018)
  • This Version: P400.1 (2018)
  • Previous Version: P400.1 (2007)
  • Previous Version: P400.1 (2006)
  • Previous Version: P400.1 (2005)

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