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Kilowatt-scale large air-gap multi-modular capacitive wireless power transfer system for electric vehicle charging

机译:电动汽车充电的千瓦级大型气隙多模块电容无线传输系统

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摘要

This paper introduces a high-performance kilowatt-scale large air-gap multi-modular capacitive wireless power transfer (WPT) system for electric vehicle (EV) charging. This multi-modular system achieves high power transfer while maintaining fringing electric fields within prescribed safety limits. The fringing fields are reduced using near-field phased-array field-focusing techniques, wherein the adjacent modules of the multi-modular system are out-phased with respect to one another. The inter-module interactions in this multi-modular system are modeled, and an approach to eliminate these interactions in a practical EV charging environment is proposed. A prototype 1.2-kW 6.78-MHz 12-cm air-gap multi-modular capacitive WPT system comprising two 600-W modules is designed, built and tested. This prototype system achieves 21.2 kW/m2 power transfer density and a peak efficiency of 89.8%. This multi-modular system also achieves a fringing field reduction of 50% compared to its individual modules.
机译:本文介绍了一种用于电动汽车(EV)充电的高性能千瓦级大型气隙多模块电容性无线电能传输(WPT)系统。这种多模块系统可实现高功率传输,同时将边缘电场保持在规定的安全范围内。使用近场相控阵场聚焦技术来减小边缘场,其中,多模块系统的相邻模块相对于彼此异相。对该多模块系统中的模块间交互进行了建模,并提出了一种在实际的EV充电环境中消除这些交互的方法。设计,制造和测试了一个原型1.2千瓦,6.78兆赫,12厘米气隙多模块化电容式WPT系统,该系统包括两个600瓦模块。该原型系统可实现21.2 kW / m 2 的功率传输密度,峰值效率为89.8 \%。与单个模块相比,该多模块系统的边缘场减小了50%。

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