200kw大功率动态无线充电系统接收机侧电力电子模块设计

Lingxiao Xue, V. Galigekere, E. Gurpinar, G. Su, O. Onar
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引用次数: 2

摘要

动态无线电力传输技术(DWPT)可以为行驶中的电动汽车提供能量,延长行驶里程。通过将充电功率提升到200千瓦(高功率DWPT),电气化道路的比例降低,解决方案变得具有成本效益。然而,车辆运动过程中线圈耦合系数的变化会使传输功率产生波动,这对车载蓄电池是不利的。二次调节设计可以使功率平滑,但由于单元将在板载,因此对高功率,高效率,快速控制以及高功率密度的要求,转换器的设计变得非常具有挑战性。本文提出了一种200kw二次侧机组的模块化设计方法,以实现高性能和可扩展性。使用SiC器件的DC/DC变换器效率为98.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modular Design of Receiver Side Power Electronics for 200 kW High Power Dynamic Wireless Charging System
Dynamic wireless power transfer (DWPT) can provide energy to EVs in motion and extend the drive range. By upscaling the charging power to 200 kW (High Power DWPT), the percentage of electrified roadway reduces and the solution becomes cost-effective. However, coil coupling-coefficient variation during vehicle movement fluctuates the transferred power which is unfavorable for vehicle battery. Secondary regulation design can smooth the power but the converter design becomes very challenging due to requirement in high power, high efficiency, fast control, as well as high power density since the unit will be onboard. This paper provides the modular design approach of a 200 kW secondary side unit to achieve high performance and scalability. The DC/DC converter using SiC devices demonstrated 98.3% efficiency.
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