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PQ Theory-Based Control of Single-Stage V2G Three-Phase BEV Charger for High-Voltage Battery

机译:PQ理论为基于PQ的单级V2G三相BEV充电器控制,用于高压电池

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This work dealt with a modeling and a PQ theory-based control of a vehicle-to-grid (V2G) three-phase battery electric vehicle (BEV) charger. This studied system consists of a bidirectional ac-dc three-phase power converter associated with an EV battery pack via an LC filter. The control of the studied system is performed in order to meet all control objectives, namely: (i) Guaranteeing a unity power factor (UPF) during the grid-to-vehicle (G2V) operating mode; (ii) Regulating the reactive power injected during the V2G operating mode; and (iii) Ensuring the battery charging and the battery discharging, safely. To achieve all these objectives, a backstepping controller using the PQ theory has been designed. Therefore, an imbricate-loops structure has been adopted to regulate the reactive power injected into the power grid and to ensure the charging and discharging of the battery. The achievement of all the objectives of the proposed nonlinear controller was confirmed by numerical simulations performed using the MATLAB/Simulink software.
机译:这项工作涉及一种基于模型和PQ理论的车辆到网格(V2G)三相电池电动车(BEV)充电器的控制。该研究系统由双向AC-DC三相电源转换器组成,通过LC滤波器与EV电池组相关联。执行研究的控制,以满足所有控制目标,即:(i)在网格到车辆(G2V)操作模式下保证单位功率因数(UPF); (ii)调节在V2G操作模式下注入的无功功率; (iii)确保电池充电和电池放电安全。为了实现所有这些目标,设计了使用PQ理论的反向架控制器。因此,已经采用了一种覆盖环结构来调节喷射到电网中的无功功率并确保电池的充电和放电。通过使用Matlab / Simulink软件执行的数值模拟确认了所提出的非线性控制器的所有目标的实现。

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