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Optimization of the Active Distribution Network Operation Considering the V2G Mode of Electric Vehicles

机译:考虑电动汽车V2G模式的主动配电网运行优化

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摘要

A large number of electric vehicles (EV) connected to the active distribution network has an impact on the safe and economic operation. The output volatility of the distributed generation (DG) affects the course of vehicle-to-grid (V2G). EV could be a load when active power is enough and a power supply when active power is lack, suppressing voltage fluctuation and providing reserve supply. The operation of grid can be safe and economic. The capacity of new energy generation to grid can be improved. First, an optimization method for mixed integer second-order cone is proposed and the optimal objective function is established with minimal network loss. Then, based on the charge and discharge capacity constraints, EV with different power limit and reactive power compensation is connected to grid. Finally, the changes of network loss and voltage can be analyzed by simulation and the best charging and discharging process of EV in 24 hours is studied out. The research provides some reference for distribution network operation planners.
机译:连接到有源配电网的大量电动汽车(EV)对安全和经济运行产生影响。分布式发电(DG)的输出波动率会影响车辆到电网(V2G)的进程。当有功功率足够时,EV可能是负载,而当有功功率不足时,EV可能会成为电源,从而抑制电压波动并提供备用电源。电网的运行既安全又经济。可以提高新能源并网发电的能力。首先,提出了一种混合整数二阶锥的优化方法,并以最小的网络损耗建立了最优目标函数。然后,基于充电和放电容量约束,将具有不同功率极限和无功功率补偿的EV连接到电网。最后,可以通过仿真分析网络损耗和电压的变化,并研究电动汽车在24小时内的最佳充电和放电过程。该研究为配电网络运营规划者提供了参考。

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