A Comparative Study of Different Compensation Topologies for Capacitive Power Transfer

Zonghong Hu, M. Goodall, Lei Zhao, Qi Zhu, A. Hu
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引用次数: 8

Abstract

Capacitive power transfer (CPT) is an alternative method for wireless power transfer (WPT) which has started to draw wide attention. Compensation topologies play significant role in improving the power transfer performance of a CPT system, so many different topologies have been proposed and investigated. This paper presents a comparative study of six compensation networks, namely single L, double-sided LC, LCL, LCLC, CLLC, and LCLC-LC for CPT systems. Based on the first five topologies that are already utilized in CPT systems, a new LCLC-LC topology is investigated in this research. The advantages and disadvantages of these compensation topologies are summarized by analyzing their equivalent circuit models, power transfer characteristics against the load, coupling, and frequency variations. It has found if the series equivalent resistances are ignored, all these five topologies can be designed to achieve constant voltage or constant current output against load variations under fully tuned conditions. However, their output power changes with coupling variation. The steady state analysis of the impedance transformation and voltage or current source characteristics has shown that the double-sided LC topology can be tuned to achieve a constant output voltage against both coupling and load variations.
电容性功率传输不同补偿拓扑的比较研究
电容式功率传输(CPT)是无线功率传输(WPT)的一种替代方法,已开始受到广泛关注。补偿拓扑在提高CPT系统的功率传输性能方面起着重要的作用,因此许多不同的拓扑被提出和研究。本文对CPT系统的单L补偿网络、双面LC补偿网络、LCL补偿网络、LCLC补偿网络、CLLC补偿网络和LCLC-LC补偿网络进行了比较研究。基于CPT系统中已经使用的前五种拓扑结构,本文研究了一种新的LCLC-LC拓扑结构。通过分析这些补偿拓扑的等效电路模型、对负载、耦合和频率变化的功率传输特性,总结了这些补偿拓扑的优缺点。研究发现,如果忽略串联等效电阻,在完全调谐条件下,所有这五种拓扑结构都可以设计成针对负载变化实现恒压或恒流输出。但其输出功率随耦合变化而变化。阻抗变换和电压或电流源特性的稳态分析表明,双面LC拓扑可以调谐以实现恒定的输出电压,以应对耦合和负载变化。
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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