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Zero-Voltage-Switching Current-Source Rectifier Based EV Charging System Using SiC devices

机译:使用SiC器件的基于零电压开关电流源整流器的EV充电系统

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In this paper, a novel zero-voltage-switching (ZVS) current-source rectifier (CSR) based bidirectional on-board charger (OBC) system is proposed for electric vehicles with silicon carbide (SiC) devices. Compared with the traditional voltage-source converter based counterparts, the proposed method offers the advantages including higher-quality output voltage waveforms, enhanced short-circuit-current tolerant capability and longer operation lifetime. Furthermore, ZVS can be achieved for main power switches in CSR with the additional auxiliary power branch. Thus, the switching losses can be further decreased. Besides, the high dv/dt caused by high speed switching SiC devices can be reduced with the capacitor in the auxiliary circuit. Hence, the EMI of high-frequency switching of SiC devices can be mitigated effectively. Both simulations and experimental results are presented to verify the performance of the proposed method.
机译:本文针对具有碳化硅(SiC)器件的电动汽车,提出了一种基于零电压开关(ZVS)电流源整流器(CSR)的双向车载充电器(OBC)系统。与传统的基于电压源转换器的同类产品相比,该方法具有以下优点:输出电压波形质量更高,耐受短路电流的能力增强,使用寿命更长。此外,可以通过附加的辅助电源分支为CSR中的主电源开关实现ZVS。因此,可以进一步降低开关损耗。此外,通过辅助电路中的电容器,可以降低由高速开关SiC器件引起的高dv / dt。因此,可以有效地减轻SiC器件的高频开关的EMI。仿真和实验结果都被提出来验证所提方法的性能。

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