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Optimal Planning of Electric-Vehicle Charging Stations in Distribution Systems

机译:配电系统中电动汽车充电站的优化规划

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摘要

With the progressive exhaustion of fossil energy and the enhanced awareness of environmental protection, more attention is being paid to electric vehicles (EVs). Inappropriate siting and sizing of EV charging stations could have negative effects on the development of EVs, the layout of the city traffic network, and the convenience of EVs' drivers, and lead to an increase in network losses and a degradation in voltage profiles at some nodes. Given this background, the optimal sites of EV charging stations are first identified by a two-step screening method with environmental factors and service radius of EV charging stations considered. Then, a mathematical model for the optimal sizing of EV charging stations is developed with the minimization of total cost associated with EV charging stations to be planned as the objective function and solved by a modified primal-dual interior point algorithm (MPDIPA). Finally, simulation results of the IEEE 123-node test feeder have demonstrated that the developed model and method cannot only attain the reasonable planning scheme of EV charging stations, but also reduce the network loss and improve the voltage profile.
机译:随着化石能源的逐步枯竭和对环境保护的增强意识,电动汽车(EV)受到了越来越多的关注。电动汽车充电站的选址和尺寸设置不当可能会对电动汽车的发展,城市交通网络的布局以及电动汽车驾驶员的便利性产生负面影响,并导致某些地区的网络损耗增加和电压曲线降低节点。在这种背景下,首先通过考虑环境因素和电动汽车充电站服务半径的两步筛选方法,确定电动汽车充电站的最佳位置。然后,以最小化与电动汽车充电站相关的总成本为目标函数,并通过改进的原始对偶内点算法(MPDIPA)求解的数学模型,开发了电动汽车充电站最佳尺寸的数学模型。最后,IEEE 123节点测试馈线的仿真结果表明,所开发的模型和方法不仅可以获得合理的EV充电站规划方案,而且可以减少网络损耗并改善电压分布。

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