The Impact of Embedded Domino-Coils on the Electromagnetic Performance of Integrated Insulators under Rain
ID:87 View Protection:ATTENDEE Updated Time:2025-11-03 11:49:56 Hits:318 Oral Presentation

Start Time:2025-11-09 10:35(Asia/Shanghai)

Duration:15min

Session:S4 4. Wireless power transfer technology » S44.Wireless power transfer technology

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Abstract
High-voltage transmission line safety is increasingly important, leading to the use of online monitoring equipment in various applications. Embedding domino-coils in high-voltage insulators for wireless power transmission can effectively ensure a continuous power supply for online monitoring equipment. However, the influence of the external environment on the performance of the integrated insulator during work cannot be ignored. This study employs COMSOL Multiphysics® to investigate the interaction between raindrops and the electromagnetic field, with an emphasis on the impact of raindrops on the electric field of an integrated insulator embedded with domino-coils across different stages of rainfall. The results show that the electromagnetic field introduced by domino-coils does not change the motion trajectory of raindrops, while domino-coils and equipotential treatment significantly distort the electric field around the integrated insulator during rainfall. The paper designs a corona ring for the integrated insulator configuration, which effectively mitigates the electric field distortion caused by the coil.
Keywords
insulator,electromagnetic field,raindrop,wireless power transmission
Speaker
Yanling Li
Southwest Jiaotong University

Submission Author
Lesi Wei Southwest JiaoTong University
Yanling Li Southwest Jiaotong University
Yeran Liu Southwest Jiaotong University
Yong Li Southwest Jiaotong University
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Important Date
  • Conference Date

    Nov 07

    2025

    to

    Nov 09

    2025

  • Oct 30 2025

    Draft paper submission deadline

  • Nov 10 2025

    Registration deadline

Sponsored By
IEEE西南交通大学IAS学生分会
Organized By
西南交通大学电气工程学院
SPACI车网关系研究室
四川大学电力系统稳定与高压直流输电研究团队