Optimal Simulation Study for Wireless Charging Coils with Magnetizers

Xiangxiu Chen, Yanwei Liu, Wenzhou Lu, Yifan Dong, Haiying Chen
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引用次数: 1

Abstract

In order to increase the mutual inductance between wireless charging coils of electric vehicles (EVs) and to improve the charging efficiency, the effect of magnetizer is analyzed by using the circuit theory. Based on planar spiral coils, three types of magnetizer structures, i.e. the disc types (including two structures) and the lampshade type, are designed in this paper. Moreover, four types of coils, one without magnetizers and three with three types of magnetizers, are simulated and compared using COMSOL. The magnetic flux density distribution diagrams of four types of coils and corresponding system transfer efficiencies are obtained. The simulation results show that: 1) magnetizers can help increase the magnetic flux passing through both transmitting and receiving coils and improve the wireless charging efficiency of EVs; 2) the length of magnetic circuit occupied by magnetizer should be increased as much as possible in the magnetizer structure design.
带充磁器的无线充电线圈优化仿真研究
为了增大电动汽车无线充电线圈之间的互感,提高充电效率,运用电路理论对充磁器的作用进行了分析。本文以平面螺旋线圈为基础,设计了圆盘式(含两种结构)和灯罩式三种磁化结构。此外,利用COMSOL软件对四种线圈进行了仿真比较,其中一种不带充磁器,三种带充磁器。得到了四种线圈的磁通密度分布图和相应的系统传递效率。仿真结果表明:1)充磁剂可以增加通过发射线圈和接收线圈的磁通量,提高电动汽车的无线充电效率;2)在磁化器结构设计中,应尽量增加磁化器占用的磁路长度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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