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双通道无线电能传输系统全向抗偏移磁耦合器

吴晓康 杨岑玉 魏斌 徐翀 刘铭扬 田子涵

电力工程技术2026,Vol.45Issue(6):74-83,10.
电力工程技术2026,Vol.45Issue(6):74-83,10.DOI:10.12158/j.2096-3203.2026.06.008

双通道无线电能传输系统全向抗偏移磁耦合器

Magnetic coupler with omnidirectional misalignment tolerance of dual-channel wireless power transfer system

吴晓康 1杨岑玉 1魏斌 1徐翀 1刘铭扬 1田子涵1

作者信息

  • 1. 中国电力科学研究院有限公司,北京 100192
  • 折叠

摘要

Abstract

To achieve the power sharing and improve misalignment tolerance of dual-channel wireless power transfer(WPT)systems,a dual-channel magnetic coupler is proposed based on the traditional double-layer quadrature double-D coil structure.This coupler exhibits excellent misalignment tolerance,namely tolerance for misalignment in any direction within the plane composed of X and Y axis.Its transmitting and receiving sides respectively include two decoupled coils,and mutual inductance between the two pairs of coils is symmetry within a certain misalignment range,which can achieve the power sharing of dual-channel WPT systems.Firstly,for dual-channel WPT systems using resonant compensation,detuned compensation and hybrid topology,the common requirements of magnetic couplers are discussed.Then,a design method for the proposed magnetic coupler is given and a case design is carried out.Furthermore,the conformity of the designed case with various performance indicators is analyzed by finite element simulation.Finally,a magnetic coupler prototype is developed for experimental verification.The results show that,within 100 mm misalignment in X and Y axis direction except for the extreme misalignment position,the magnetic coupler efficiency remains above 91.12%and the ratio of channel output power is greater than 0.87,demonstrating a good power sharing effect.

关键词

无线电能传输(WPT)/双通道/功率均衡/全向抗偏移/磁耦合器/双层正交双D线圈

Key words

wireless power transfer(WPT)/dual-channel/power sharing/omnidirectional misalignment tolerance/magnetic coupler/double-layer quadrature double-D coil

分类

信息技术与安全科学

引用本文复制引用

吴晓康,杨岑玉,魏斌,徐翀,刘铭扬,田子涵..双通道无线电能传输系统全向抗偏移磁耦合器[J].电力工程技术,2026,45(6):74-83,10.

基金项目

国家重点研发计划资助项目(2021YFB3800505) (2021YFB3800505)

电力工程技术

2096-3203

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