Research and Optimization of Shielding Structure for Inductive Power Transfer System

Fei Gao, Liang Li, Jia Hu, Yu Zhang
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引用次数: 1

Abstract

This paper explores the effect of the shielding plate in the inductive power transfer (IPT) pads, and identify its impact on leakage magnetic field and pads losses. The 3-D finite-element analysis method is used to optimize the structure of the shielding plate. The shielding effectiveness is investigated in terms of thickness of the shielding plate, air-gap distance between the shielding plate and the ferrite plate, covering area and geometry of the shielding plate. The result shows that the shielding structure plays dominant role in leakage magnetic field and pad losses. By using the optimized shielding structure, both the leakage magnetic field in the vicinity of the WPT system and the power loss in the transmission pads are reduced, which provides a reference of shielding structure design for IPT systems.
感应式输电系统屏蔽结构的研究与优化
探讨了感应功率传输(IPT)焊盘中屏蔽板的作用,确定了屏蔽板对漏磁场和焊盘损耗的影响。采用三维有限元分析方法对屏蔽板的结构进行了优化。从屏蔽板的厚度、屏蔽板与铁氧体板之间的气隙距离、屏蔽板的覆盖面积和几何形状等方面对屏蔽效果进行了研究。结果表明,屏蔽结构对漏磁场和焊盘损耗起主导作用。采用优化后的屏蔽结构,既降低了WPT系统附近的漏磁场,又降低了传输垫的功率损耗,为IPT系统的屏蔽结构设计提供了参考。
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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