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Electric Vehicle to Power Grid Integration Using Three-Phase Three-Level AC/DC Converter and PI-Fuzzy Controller

机译:使用三相三电平AC / DC转换器和PI模糊控制器的电动汽车到电网的集成

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This paper presents the control and simulation of an electric vehicle (EV) charging station using a three-level converter on the grid-side as well as on the EV-side. The charging station control schemes with three-level AC/DC power conversion and a bidirectional DC/DC charging regulator are described. The integration of EVs to the power grid provides an improvement of the grid reliability and stability. EVs are considered an asset to the smart grid to optimize effective performance economically and environmentally under various operation conditions, and more significantly to sustain the resiliency of the grid in the case of emergency conditions and disturbance events. The three-level grid side converter (GSC) can participate in the reactive power support or grid voltage control at the grid interfacing point or the common coupling point (PCC). A fuzzy logic proportional integral (FL-PI) controller is proposed to control the GSC converter. The controllers used are verified and tested by simulation to evaluate their performance using MATLAB/SIMULINK. The comparison of a PI-controller and a PI-Fuzzy controller for the EV charging station shows the effectiveness of the proposed FL-PI controller over conventional PI controller for same circuit operating conditions. A good performance for PI-Fuzzy in terms of settling time and peak overshoot can observed from the simulation results.
机译:本文介绍了在电网侧以及电动汽车侧使用三电平转换器的电动汽车(EV)充电站的控制和仿真。描述了具有三级AC / DC功率转换和双向DC / DC充电调节器的充电站控制方案。电动汽车与电网的集成提高了电网的可靠性和稳定性。电动汽车被认为是智能电网的资产,可以在各种运行条件下在经济和环境上优化有效性能,更重要的是在紧急情况和干扰事件下保持电网的弹性。三级电网侧转换器(GSC)可以在电网接口点或公共耦合点(PCC)处参与无功功率支持或电网电压控制。提出了一种模糊逻辑比例积分(FL-PI)控制器来控制GSC变换器。通过仿真对使用的控制器进行了验证和测试,以使用MATLAB / SIMULINK评估其性能。 EV充电站的PI控制器和PI模糊控制器的比较表明,对于相同的电路工作条件,所提出的FL-PI控制器优于常规PI控制器。从仿真结果可以看出,PI-Fuzzy在建立时间和峰值超调方面表现出良好的性能。

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