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Design considerations and topology selection for a 120-kW IGBT converter for EV fast charging

机译:用于EV快速充电的120 kW IGBT转换器的设计注意事项和拓扑选择

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Fast charging of electric vehicles (EVs) is a very desirable feature, especially for long-distance travel. For an EV with a battery capacity of 30 kWh, a 15-min charge requires 120-kW charging power. Inductive charging offers a safe and convenient means to accomplish this task. This paper investigates the design criteria of the high-power converter for a 120-kW inductive battery charger. Since insulated gate bipolar transistors (IGBTs) are the devices of choice at this power level, the impact of IGBT losses on the converter design and topology selection is investigated. A comparison between a zero-voltage-switching (ZVS) and zero-current-switching (ZCS) series-resonant converter (SRC) is presented. Based on the comparison results, a ZCS SRC topology is selected for this application, and an experimental 120-kW/75-kHz unit was built and tested in the laboratory to verify the results.
机译:电动汽车(EV)的快速充电是非常理想的功能,特别是对于长途旅行。对于电池容量为30 kWh的EV,充电15分钟需要120 kW充电功率。感应充电提供了一种安全方便的方法来完成此任务。本文研究了用于120 kW感应式电池充电器的大功率转换器的设计标准。由于绝缘栅双极型晶体管(IGBT)是在此功率水平下的首选器件,因此研究了IGBT损耗对转换器设计和拓扑选择的影响。提出了零电压开关(ZVS)和零电流开关(ZCS)串联谐振转换器(SRC)之间的比较。根据比较结果,为该应用选择了ZCS SRC拓扑,并构建了一个实验性120 kW / 75 kHz单元并在实验室中进行了测试以验证结果。

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