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Research on Control Strategy of Energy Storage Buffer System for Electric Vehicle Smart Charging Station

机译:电动汽车智能充电站储能缓冲系统控制策略研究

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摘要

In order to solve the contradiction between the rapid pulse charging demand of EV and the grid power change rate limits,it is necessary to add an energy storage buffer system to the smart charging station,which can alleviate the adverse influence on the grid during the fast charging process of EVs.Firstly,the topology structure of EV smart charging station with an energy storage buffer system and the charging power characteristics of different types of batteries are studied,then the operation mode of energy storage buffer system is analyzed based on the above investigation.Furthermore,a control strategy of energy storage buffer system for smart charging station is proposed.Using Matlab/Simulink software,a model of smart charging station which contains an energy storage buffer system is built,and the dynamic characteristics simulation and analysis of smart charging station with different rate of power change instructions are conducted to verify the correctness and effectiveness of the control strategy.The simulation results show that the proposed energy storage buffer system and its control strategy can meet the high power density demand during EV charging and can also effectively reduce the adverse effects of the aggregation of charging load on the distribution network.
机译:为了解决电动汽车快速脉冲充电需求与电网功率变化率限值之间的矛盾,有必要在智能充电站上增加储能缓冲系统,以减轻快速充电对电网的不利影响。首先,研究了带有储能缓冲系统的电动汽车智能充电站的拓扑结构以及不同类型电池的充电功率特性,然后在上述研究的基础上分析了储能缓冲系统的工作方式。并提出了一种智能充电站储能缓冲系统的控制策略。利用Matlab / Simulink软件,建立了一个包含储能缓冲系统的智能充电站模型,并对智能充电的动态特性进行仿真分析。进行具有不同功率变化率指令的站,以验证c的正确性和有效性仿真结果表明,所提出的储能缓冲系统及其控制策略能够满足电动汽车充电过程中的高功率密度要求,并能有效减少充电负荷聚集对配电网的不利影响。

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