Efficiency optimization of double-sided LCC topology for inductive power transfer systems

V. Nguyen, Van-Binh Vu, G. Gohil, B. Fahimi
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引用次数: 5

Abstract

This paper presents an optimal design method of the double-sided LCC (Inductor-capacitor-capacitor) compensation network to achieve a high efficiency by optimizing compensation factors of the primary and secondary circuit of an inductive power transfer (IPT) system. Simulation and experimental results show that with a proper selection of the compensation factors, it is possible to achieve a high and sustained efficiency over a wide load variation and misalignment. The double-sided LCC topology is compared with the LCC-S (S: series) and LCC-P (P: parallel) topology in terms of the transfer efficiency at the operating frequency of 85kHz, transfer gap of 160mm and misalignment up to 90mm. The result reveals that the designed double-sided LCC topology is superior to its counterparts in terms of transfer efficiency. A deep discussion of these topologies is included to provide insights for all three topologies analyzed in this paper.
感应输电系统双面LCC拓扑效率优化
本文提出了一种双侧电感-电容-电容补偿网络的优化设计方法,通过优化感应功率传输系统一次回路和二次回路的补偿因子来达到高效率。仿真和实验结果表明,通过适当选择补偿因子,可以在较大的负载变化和不对准情况下实现高且持续的效率。将双面LCC拓扑与LCC-S (S:串联)和LCC-P (P:并联)拓扑在工作频率为85kHz时的传输效率、传输间隙为160mm、错位达90mm等方面进行了比较。结果表明,所设计的双面LCC拓扑在传输效率方面优于同类拓扑。本文对这些拓扑进行了深入讨论,为本文分析的所有三种拓扑提供见解。
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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