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Developing a smart charger for EVs' charging impact mitigation

机译:开发智能充电器,为EVS的充电影响缓解

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This paper proposes a smart charger to mitigate the charging impact of Electric Vehicles (EVs) on power grids. The proposed smart charger uses the parameters measured from the power grid, the EV charger and the EV battery pack to adjust the charging current of the proposed charger. Fuzzy control is used in this paper to integrate these measured parameters into designing a smart charger prototype with rated power 200W. Experimental results verify that the proposed charger can automatically adjust the charging current corresponding to the variations of power grid and EV. Test case analyzes the impact of 100 EVs with rated power 7kW charging simultaneously in a community. Test result shows that the charging impact of EV can be effectively mitigated by the proposed smart chargers. Since the proposed smart charger can be realized without the centralized control systems and information exchanges between EV chargers, an entirely distributed control scheme for EV charger can therefore be effectively implemented.
机译:本文提出了一种智能充电器,以减轻电动车辆(EVS)对电网的充电影响。所提出的智能充电器使用从电网,EV充电器和EV电池组测量的参数来调节所提出的充电器的充电电流。本文使用模糊控制,将这些测量参数集成到设计具有额定功率200W的智能充电器原型。实验结果验证所提出的充电器可以自动调节与电网和EV的变化相对应的充电电流。测试用例分析了100个EVS在社区中同时进行额定功率7kW充电的影响。测试结果表明,建议的智能充电器可以有效地减轻EV的充电影响。由于可以在没有集中控制系统和EV充电器之间的信息交换的情况下实现所提出的智能充电器,因此可以有效地实现了EV充电器的完全分布式控制方案。

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