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Smart control of BESS in PV integrated EV charging station for reducing transformer overloading and providing battery-to-grid service

机译:光伏综合电动汽车充电站中BESS的智能控制,可减少变压器过载并提供电池到电网服务

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Uncontrolled charging demand in an electric vehicle charging station (EVCS) can potentially result in the overloading of the grid coupling transformer that will affect the transformer's lifetime. This paper proposes a smart coordinated control of photovoltaic (PV) and battery energy storage system (BESS) integrated in an EVCS in order to avoid transformer overloading. BESS is designed to provide the additional EV power demand which is greater than the transformer's rated capacity and thus reduce transformer overloading. In addition, the smoothing control of PV power output when PV output is lower than a threshold value is incorporated in the control method. Also, BESS which is used to provide grid services i.e battery to grid (B2G) is also incorporated in the designed smart control when the energy selling price is attractive to the BESS operator. Considering a single point connection type, B2G can only be implemented when there is no EV demand. Furthermore, B2G and battery recharging power is maintained within the transformer's rated capacity to avoid overloading during their particular services. Two different sizes of BESS and transformer capacity are considered to demonstrate the overloading of transformer for a particular time of the day. A small EVCS with integrated PV-BESS in a residential area and food center is simulated to validate the efficacy of the proposed coordinated control technique. Simulation results demonstrate that the integrated BESS with the proposed control method effectively minimizes transformer overloading during all the studied network operating conditions. Moreover, BESS successfully smooths out PV power output, provide grid service and recharge the battery within the defined rated transformer capacity and thus avoids transformer overloading while satisfying design constraints.
机译:电动汽车充电站(EVCS)中不受控制的充电需求可能会导致电网耦合变压器过载,从而影响变压器的使用寿命。本文提出了一种集成在EVCS中的光伏(PV)和电池储能系统(BESS)的智能协调控制,以避免变压器过载。 BESS旨在提供大于变压器额定容量的额外EV电源需求,从而减少变压器过载。另外,在控制方法中并入了当PV输出低于阈值时的PV功率输出的平滑控制。此外,当能源销售价格对BESS运营商具有吸引力时,用于提供电网服务(即电池到电网(B2G))的BESS也被并入设计的智能控件中。考虑到单点连接类型,仅在没有电动汽车需求时才可以实现B2G。此外,B2G和电池充电功率保持在变压器的额定容量内,以避免在其特定服务期间过载。考虑了BESS和变压器容量的两种不同大小,以证明一天中特定时间的变压器过载。模拟了一个在居民区和食品中心集成PV-BESS的小型EVCS,以验证所提出的协调控制技术的有效性。仿真结果表明,在所研究的所有网络运行条件下,集成的BESS与所提出的控制方法均可有效地减少变压器过载。此外,BESS成功地平滑了光伏发电输出,提供了电网服务并在定义的额定变压器容量内为电池充电,从而在满足设计约束的同时避免了变压器过载。

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