Analysis of the Losses in Contactless Energy Transfer Systems Based on Different Distances Between Shielding, Ferrite and Coil

Philipp Präg, David Maier, N. Parspour
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引用次数: 1

Abstract

In this paper, the investigation of the losses caused by ferrites in contactless energy transmission systems is presented. The focus is to find the dependence of the distance between coil and ferrite on efficiency. Three different test setups are shown to prove this. First of all, there is a single-coil structure with ferrite and shielding. The quality factor $Q$ of the coil increases with distance. The second and third structures are systems with two coils but without shielding. In addition to the $Q$ factors, the product of the coupling factors $k$ and $Q$ are also examined here. In the last setup, the kQ product increases in addition to the $Q$ factor. The additional distance between the ferrites and the coil thus leads to a higher efficiency of the system.
基于屏蔽、铁氧体和线圈之间不同距离的非接触式能量传递系统损耗分析
本文对非接触式输电系统中铁氧体的损耗进行了研究。重点是找出线圈与铁氧体之间的距离对效率的依赖关系。三种不同的测试设置证明了这一点。首先是带铁氧体和屏蔽的单线圈结构。线圈的质量因数Q随距离增加而增加。第二和第三种结构是有两个线圈但没有屏蔽的系统。除了$Q$因素,耦合因素$k$和$Q$的乘积也在这里进行了研究。在最后的设置中,除了$Q$因子之外,kQ乘积也增加了。铁氧体和线圈之间的额外距离因此导致系统的效率更高。
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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