A DC/DC Fast Charger for Electric Vehicles with Minimum Input/Output Ripple Based on Multiphase Interleaved Converters

M. Hammami, A. Viatkin, M. Ricco, G. Grandi
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引用次数: 14

Abstract

An off-board dc fast battery charger for electric vehicles (EVs) with an original control strategy aimed to provide minimum input voltage ripple and zero output current ripple in the typical EV batteries voltage range is presented in this paper. Currently, due to an infant development stage of high-power, high-energy batteries for EV application, there is no clear consensus on allowable output current ripple for fast chargers. However, there are different charging protocols, which are optimized for short charging time and efficiency, while maintaining a long-life cycle of a battery. Common feature of these protocols is an underlying assumption of minimum (or null) instantaneous charging current ripple. The fast charger configuration proposed in this paper is based on a modular three-phase interleaved converter, used as an interface between the dc-link (dc supply) and the battery. The use of low-cost, standard and industry-recognized three-phase power modules for high-power fast EV charging stations enables the reduction of capital and maintenance costs of the charging facilities, enhancing further expansion of the eco-friendly transport. Numerical simulations are carried out in Matlab/Simulink to confirm the feasibility and the effectiveness of the whole EV fast charging configuration, with emphasis to input voltage ripple and output current ripple of the interleaved three-phase dc/dc converter.
基于多相交错变换器的输入输出纹波最小的电动汽车DC/DC快速充电器
提出了一种电动汽车车载直流快速充电器,该充电器采用新颖的控制策略,在典型的电动汽车电池电压范围内提供最小的输入电压纹波和零输出电流纹波。目前,用于电动汽车的高功率、高能量电池尚处于发展初期,对于快速充电器的允许输出纹波电流尚无明确的共识。然而,有不同的充电协议,这些协议都是为了缩短充电时间和效率而优化的,同时保持电池的长寿命周期。这些协议的共同特点是基本假设最小(或零)瞬时充电电流纹波。本文提出的快速充电器结构是基于模块化三相交错转换器,作为直流电源和电池之间的接口。高功率电动汽车快速充电站采用低成本、标准和行业认可的三相电源模块,可以降低充电设施的资金和维护成本,进一步扩大环保交通。在Matlab/Simulink中进行了数值仿真,验证了整个电动汽车快速充电配置的可行性和有效性,重点研究了交错三相dc/dc变换器的输入电压纹波和输出电流纹波。
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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