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May 8, 2026IET conference proceedings.0 citations

Research on insulation design and testing of high-voltage direct current circuit breakers

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ZJZhang JinYZYuanzhang ZhaoYZYan Ziyang

Key Points

  • The study aims to optimize insulation design and evaluate the performance of high-voltage direct current circuit breakers.
  • Introduced the topology and structure of the direct current circuit breaker.
  • Calculated clearances between layers and ground, and optimized the electric field design.
  • Conducted insulation tests to assess performance under operational conditions.
  • The maximum field strength recorded was 2.66 kV/mm at the interlayer equalizing ring.
  • The non-uniform voltage coefficient of a single-level IGBT was found to be 1.015.
  • Both interlayer and ground insulation tests successfully passed, confirming safe operational standards.

Abstract

Multi-terminal flexible direct current transmission technology is one of the effective ways to accommodate a high proportion of new energy. The direct current circuit breaker is a key device to ensure the stable operation of the direct current system. Firstly, the topology and integral structure of the direct current circuit breaker were introduced. Then, the clearance between layers and to ground was calculated. The electric field optimization design of the valve layer equalizing ring and the valve base insulator equalizing ring was carried out. Finally, the non-uniform voltage coefficient of the transfer branch was tested, and the insulation tests between layers and to ground were conducted. The results show that the maximum field strength between terminals and to ground both occur at the interlayer equalizing ring, at 2.66 kV/mm. The non-uniform voltage coefficient of a single-level IGBT is 1.015. Both the interlayer and ground insulation tests were passed, and the direct current circuit breaker meets the requirements for safe operation.

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Cite This Study

Jin et al. (2026) studied this question.

synapsesocial.com/papers/69fd7e90bfa21ec5bbf06d73https://doi.org/10.1049/icp.2026.0664
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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  5. 5A Novel Direct Current Circuit Breaker with a Gradually Increasing Counter-Current2024