Carrier based PWM for three-phase three-switch buck-type rectifier in EV rapid charging system

Beomseok Chae, Taewon Kang, Tahyun Kang, Y. Suh
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引用次数: 5

Abstract

This paper investigates an economic and highly efficient power converter topology and its modulation scheme for 60kW rapid EV charger system. The target system consists of three-phase three-switch buck-type rectifier topology. A new Carrier Based PWM scheme along with its simple implementation using logic gates is introduced in this paper. This PWM scheme replaces the diode rectifier equivalent switching state with an active switching state producing the effectively same current flowing path. As a result, the distortion of input current during the polarity reversal of capacitor line voltage can be mitigated. The proposed modulation technique is confirmed through simulation verification. The proposed modulation technique and its implementation scheme can expand the operation range of the three-phase three-switch buck-type rectifier having ac input and capacitor ripple current of high quality.
电动汽车快速充电系统中基于载波的三相三开关buck型整流器PWM
针对60kW电动汽车快速充电系统,研究了一种经济高效的电源转换器拓扑结构及其调制方案。目标系统由三相三开关buck型整流器拓扑结构组成。本文介绍了一种新的基于载波的PWM方案及其简单的逻辑门实现方法。该PWM方案将二极管整流器等效开关状态替换为主动开关状态,产生有效相同的电流流动路径。这样可以减轻电容器线电压极性反转时输入电流的畸变。仿真验证了所提出的调制技术。所提出的调制技术及其实现方案可以扩大具有交流输入和高质量电容纹波电流的三相三开关buck型整流器的工作范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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