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A preventive control strategy for static voltage stability based on an efficient power plant model of electric vehicles

机译:基于电动汽车高效发电厂模型的静态电压稳定性预防控制策略

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With the increasing integration of wind farms and electric vehicles (EVs) in power systems, voltage stability is becoming more and more serious. Based on vehicle-to-grid (V2G), an efficient power plant model of EVs (E-EPP) was developed to estimate EV charging load with available corresponding response capacity under different charging strategies. A preventive control strategy based on E-EPP was proposed to maintain the static voltage stability margin (VSM) of power system above a predefined security level. Two control modes were used including the disconnection of EV charging load ('V1G' mode) and the discharge of stored battery energy back to power grid ('V2G' mode). A modified IEEE 14-bus system with high penetration of wind power and EVs was used to verify the effectiveness of preventive control strategy. Simulation results showed that the proposed strategy can not only improve the static voltage stability of power system with considerable wind generation, but also guarantee the travelling comfort for EV owners.
机译:随着风电场和电动汽车(EV)在电力系统中的集成度越来越高,电压稳定性变得越来越严重。基于车辆到电网(V2G),开发了一种有效的电动汽车动力装置模型(E-EPP),以估算在不同充电策略下具有可用的相应响应能力的电动汽车充电负荷。提出了一种基于E-EPP的预防控制策略,将电力系统的静态电压稳定裕度(VSM)维持在预定的安全级别以上。使用了两种控制模式,包括断开EV充电负载(“ V1G”模式)和将存储的电池能量释放回电网(“ V2G”模式)。改进的IEEE 14总线系统具有较高的风力和电动汽车渗透率,可用于验证预防控制策略的有效性。仿真结果表明,所提出的策略不仅可以提高风力产生较大的电力系统的静态电压稳定性,而且还可以保证电动车车主的出行舒适性。

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