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Placing parking lot of plug-in electric vehicles within a distribution grid considering high penetration level of photovoltaic generation

机译:考虑到光伏发电的高渗透水平,将插电式电动汽车的停车场放置在配电网中

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The main aim of this paper is to devise a stochastic approach based on Monte Carlo simulation to site and size a parking lot of plug-in electric vehicles within a distribution network. At first, considering parking lot arrival time, daily travelled distance and parking lot departure time of randomly selected private ICE vehicles, a probabilistic method to derive the load demand of a fleet of commuter plug-in electric vehicles is proposed. Probability density function of the aggregated load of the PEVs within each hour is estimated by applying the Monte Carlo simulation and then, the expected value of the hourly load demand is calculated. Afterwards, with aim of minimizing the power loss of the grid as well as the maximum voltage deviation of the nodes, siting and sizing of the parking lot is accomplished.
机译:本文的主要目的是设计一种基于蒙特卡洛模拟的随机方法,以对配电网络中的插电式电动汽车的停车场进行选址并确定其规模。首先,考虑到随机选择的私人ICE车辆的停车场到达时间,每日行进距离和停车场出发时间,提出了一种概率方法来推导通勤插电式电动汽车车队的负荷需求。通过应用蒙特卡洛模拟估算每小时内PEV的总负荷的概率密度函数,然后计算每小时负荷需求的期望值。然后,以最小化电网的功率损耗以及节点的最大电压偏差为目标,完成了停车场的选址和选型。

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