电动汽车充电站的高效电容式电隔离

Pierpaolo Granello, F. Pellitteri, R. Miceli, L. Schirone
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引用次数: 2

摘要

本文提出了一种隔离开关电容(SC)功率变换器,它通过电容功率传输(CPT)提供电流隔离。这两种技术的结合可能会满足不同电动移动应用领域(如电池充电)的电气和电力需求。因此,由于这两种技术的结合可以提供低转换损耗,因此可以衍生出紧凑,经济高效的功率转换器,从而有可能满足电动汽车(EV)市场的可扩展性要求。为了评估所提出的电路解决方案的运行,设计并构建了一个全桥(FB) CPT隔离接口转换器原型。由于GaN开关用于初级桥,利用其低输入电容和栅极电荷的优势,设置了500 kHz的开关频率,从而推导出紧凑的功率转换器。该原型设计用于高达12 kW (600 V, 20 A)的应用,并在接近3 kW(高达400 V或15 A)的情况下进行了测试,以证明其功能。测量评估了90%以上的转换效率,峰值接近95%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly Efficient Capacitive Galvanic Isolation for EV Charging Stations
This paper proposes an isolated Switched Capacitor (SC) power converter which provides galvanic isolation through Capacitive Power Transfer (CPT). The combination of these two technologies might answer for electrical and power requirements in different electrical mobility application fields, such as battery charging. Accordingly, due to the low conversion losses the combination of these two technologies can provide, compact, cost effective and highly efficient power converters can be derived, thus potentially answering the scalability requirements for the Electric Vehicles (EV) market. To assess the operation of the proposed circuital solution, a Full Bridge (FB) CPT isolated interfacing converter prototype has been designed and built. Since GaN switches were used for the primary bridge, by taking advantage of their low input capacitance and gate charge, a 500 kHz switching frequency was set, thus deriving a compact power converter. The prototype has been designed for applications up to 12 kW (600 V, 20 A), and tested close to 3 kW (up to 400 V or 15 A) for the purpose of this work to demonstrate its functionality. The measurements assessed a conversion efficiency above 90% with a peak of almost 95%.
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