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High-performance large air-gap capacitive wireless power transfer system for electric vehicle charging

机译:用于电动车充电的高性能大型气隙电容式无线电力传递系统

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This paper introduces a high-performance large air-gap capacitive wireless power transfer (WPT) module as part of a multi-modular capacitive WPT system for electric vehicle charging. This WPT module utilizes two pairs of metal plates separated by an air-gap as the capacitive coupler, incorporates L-section matching networks to provide gain and reactive compensation, and is driven by a GaN-based inverter operating at 6.78 MHz. The system achieves high efficiency and simplicity by eliminating the need for high-voltage capacitors, and instead utilizes the parasitic capacitances formed between the coupling plates and the vehicle chassis and roadway as part of the matching networks. This paper also presents a comprehensive design methodology for the capacitive WPT system that guarantees high performance by ensuring zero-voltage switching of the inverter transistors, and by selecting matching network component values to maximize efficiency under practical constraints on inductor quality factor and self-resonant frequency. Two prototype 6.78-MHz 12-cm air-gap capacitive WPT systems have been designed, built and tested. The first prototype with 625 cm coupling plate area transfers up to 193 W of power and achieves an efficiency greater than 90%, with a power transfer density of 3 kW/m. The second prototype with 300 cm coupling plate area transfers up to 557 W of power and achieves an efficiency of 82%, with a power transfer density of 18.5 kW/m, which exceeds the state-of-the-art for capacitive WPT systems by more than a factor of four.
机译:本文介绍了一种高性能的大型气隙电容式无线电力传输(WPT)模块,作为用于电动车辆充电的多模块化电容WPT系统的一部分。该WPT模块利用两对由空气间隙分开的金属板作为电容式耦合器,包括L-部分匹配网络,以提供增益和反应性补偿,并且由在6.78MHz下运行的GaN的逆变器驱动。通过消除对高压电容器的需要,该系统通过消除了高效率和简单性,而是利用在耦合板和车辆底盘和巷道之间形成的寄生电容作为匹配网络的一部分。本文还为电容WPT系统提供了全面的设计方法,可通过确保逆变器晶体管的零电压切换,并通过选择匹配的网络分量值来最大限度地提高电感器质量因子和自谐振频率的实际限制下最大化效率的高性能。两种原型6.78-MHz 12厘米气隙电容WPT系统已经设计,构建和测试。具有625厘米耦合板面积的第一个原型转移到高达193W的功率,并且效率大于90 %,功率传递密度为3 kW / m。具有300厘米耦合板面积的第二种原型转移到高达557W的功率,并实现82±%的效率,功率传递密度为18.5千瓦/米,超过电容WPT系统的最先进超过四分之一。

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