A Reconfigurable Power Processor for Electric Vehicle Facilitating Both Wired and Wireless Charging

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Power Electronics Magazine Pub Date : 2023-12-01 DOI:10.1109/MPEL.2023.3327626
S. Meher, R. Singh
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Abstract

Existing electric vehicles (EV) in the market require two separate power processors for propulsion and on-board wired charging operations. EV with wireless charging feature requires an additional power processing unit to be fitted with the vehicle and thus requires three separate power processors. Existing integrated chargers support any two of these operating modes (i.e., either propulsion and wired charging or wired and wireless charging) out of three required operating modes. In order to optimize size, volume, and weight along with the cost, a novel reconfigurable power processor (RPP) is presented in this article that replaces the need of three separate power processors in an EV. The proposed power processor restructures itself as three different power electronic topologies during three modes of operations. For wireless charging mode, a new converter topology is also proposed in this article for the transmitting unit at the primary side. During both wired and wireless charging methods, the proposed solution draws power from a single-phase ac supply to optimally charge the EV battery pack with CC-CV algorithm and simultaneously maintaining near unity power factor (PF) at the grid side. The proposed idea is validated in the laboratory environment with an experimental set up consisting of a 24 V, 400 W BLDC motor and a 24 V, 30 Ah battery.
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用于电动汽车的可重构电源处理器,同时支持有线和无线充电
市场上现有的电动汽车(EV)需要两个独立的电源处理器,用于推进和车载有线充电操作。具有无线充电功能的电动汽车需要在车上安装一个额外的电源处理单元,因此需要三个独立的电源处理器。现有的集成充电器支持三种所需工作模式中的任意两种(即推进和有线充电或有线和无线充电)。为了优化尺寸、体积、重量和成本,本文提出了一种新型可重构电源处理器(RPP),以取代电动汽车中对三个独立电源处理器的需求。所提出的电源处理器在三种运行模式下可重组为三种不同的电力电子拓扑结构。对于无线充电模式,本文还为一次侧的发射装置提出了一种新的转换器拓扑结构。在有线和无线充电方法中,所提出的解决方案从单相交流电源中获取电能,利用 CC-CV 算法为电动汽车电池组进行最佳充电,同时在电网侧保持接近统一的功率因数 (PF)。我们在实验室环境中利用一个由 24 V、400 W BLDC 电机和 24 V、30 Ah 电池组成的实验装置对所提出的想法进行了验证。
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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来源期刊
IEEE Power Electronics Magazine
IEEE Power Electronics Magazine ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.80
自引率
4.30%
发文量
86
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