The state of the art of battery charging infrastructure for electrical vehicles: Topologies, power control strategies, and future trend

V. Tran, D. Sutanto, K. Muttaqi
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引用次数: 32

Abstract

Electric vehicle battery (EVB) charger topologies play a vital role to increase the penetration of EVs. This paper reviews the status quo of EV battery (EVB) chargers in term of converter topologies, operation modes, and power control strategies for EVs. EVB Chargers are classified based on their power levels and power flow direction. Referring to power ratings, EV chargers can be divided into Level 1, Level 2 and Level 3. Level 1 and Level 2 are normally compatible with on-board chargers while Level 3 is used for an off-board charger. Unidirectional/ bidirectional power flow can be obtained at all power levels. However, bidirectional power flow is usually designed for Level 3 chargers as it can provide the huge benefit of transferring power back to grid when needed. Moreover, the different operation modes of an EVB charger are also presented. There are two main modes: Grid-to-Vehicle (V1G or G2V) and Vehicle-to-Grid (V2G). The V2G mode helps bring EV batteries to become active distributed sources in smart grids and is the crucial solution for a high EV penetration. Future trend and authors' recommendations with preliminary simulation and experimental results are demonstrated in this paper.
电动汽车电池充电基础设施的现状:拓扑、功率控制策略和未来趋势
电动汽车电池(EVB)充电器拓扑结构对提高电动汽车的普及率起着至关重要的作用。本文从电动汽车电池充电器的拓扑结构、工作模式和功率控制策略等方面综述了电动汽车电池充电器的研究现状。EVB充电器根据其功率水平和潮流方向进行分类。根据额定功率,电动汽车充电器分为1级、2级和3级。1级和2级通常与车载充电器兼容,而3级用于车载充电器。单向/双向潮流可以获得在所有功率水平。然而,双向潮流通常是为3级充电器设计的,因为它可以在需要时提供将电力传输回电网的巨大好处。此外,还介绍了EVB充电器的不同工作模式。主要有两种模式:电网到车辆(V1G或G2V)和车辆到电网(V2G)。V2G模式有助于使电动汽车电池成为智能电网中的主动分布式电源,是实现电动汽车高渗透率的关键解决方案。本文通过初步的仿真和实验结果,阐述了未来的发展趋势和作者的建议。
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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