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A Bidirectional NPC-based Level 3 EV Charging System with Added Active Filter Functionality in Smart Grid Applications

机译:基于双向NPC的3级EV充电系统,在智能电网应用中增加了有源滤波器功能

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This paper proposes a bidirectional Level 3 (fast) power level Electric Vehicle (EV) charging system where the control strategy consist of two cascaded stages. At first stage, the control strategy allows the control structure to utilize a Three- Level (TL) Neutral Point Clamped (NPC) multilevel converter ensuring a unity power factor correction (PFC) by absorbing/injecting a sinusoidal current from/to the grid with low current harmonics. At second stage, two dc-side capacitors of the TL NPC on the dc-bus voltage are connected to two Dual Active Bridge (DAB) DC/DC converters paralleled at the battery. This stage regulates the current that is delivered to or from the battery according to its State of Charge (SOC) and matches the difference between the dc-link and battery voltages. The purpose of the proposed strategy is to deal with higher power levels with reduced stress on components. In addition to bidirectional power exchange, active power filter capability is also added to the control strategy for enhancing power quality in presence of reactive, non-linear and/or unbalanced loads at point of common coupling (PCC) based on the Conservative Power Theory (CPT). Simulation results are presented to demonstrate the validity of the proposed charger system offering very flexible, and selective functionalities.
机译:本文提出了一种双向3级(快速)功率级电动汽车(EV)充电系统,该系统的控制策略包括两个级联级。在第一阶段,控制策略允许控制结构利用三电平(TL)中性点钳位(NPC)多电平转换器,通过吸收/注入来自电网的正弦电流/向电网注入正弦电流来确保单位功率因数校正(PFC)。低电流谐波。在第二阶段,TL NPC的两个dc母线在dc总线电压上连接到两个并联在电池上的双有源桥(DAB)DC / DC转换器。此阶段根据其充电状态(SOC)调节流入或流出电池的电流,并匹配直流母线和电池电压之间的差异。提出的策略的目的是在降低组件压力的情况下应对更高的功率水平。除了双向功率交换以外,基于保守功率理论,在公共耦合点(PCC)处存在无功,非线性和/或不平衡负载的情况下,有源功率滤波器功能也被添加到控制策略中,以提高功率质量( CPT)。仿真结果表明了所提出的充电器系统的有效性,该充电器系统具有非常灵活的选择性功能。

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