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The Impact of Plug-in Electric Vehicles on Distribution Network

机译:插电式电动汽车对配电网络的影响

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With concerned environmental problem, a large number of electric vehicles (EVs) has been adopted to replace the oil-fueled vehicles. If electric vehicles are charged simultaneously on a large-scale, it may cause peak load increase. Therefore, it is of great practical significance to study the influence of controlled charging behavior of electric vehicles on power grid. Firstly, Gaussian Mixture Model is used to modeling electric vehicles. Secondly, Monte Carlo method is studied to determine the charging load of electric vehicles, and the influence of uncontrolled charging of electric vehicles on the power grid is analyzed. Then the peak and valley hours are divided according to the membership function and the time-of-use pricing to minimize the difference between peak and valley load. Furthermore, the influence of controlled charging of EVs on power grid is analyzed. Finally, the model is applied to simulate and analyze the distribution network of Yangjiang, a coastal city in South China. The case study shows that the uncontrolled charging of EVs will increase the peak load of the power grid. The proposed controlled charging strategy can effectively transfer the charging load of EVs and lessen peak load demand.
机译:由于关注的环境问题,已经采用了大量的电动汽车(EV)来代替燃油汽车。如果同时对电动汽车进行大规模充电,可能会导致峰值负载增加。因此,研究电动汽车可控充电行为对电网的影响具有重要的现实意义。首先,使用高斯混合模型对电动汽车进行建模。其次,研究了蒙特卡洛方法确定电动汽车的充电负荷,并分析了电动汽车无节制充电对电网的影响。然后根据隶属函数和使用时间定价对高峰和低谷时间进行划分,以最大程度地减少高峰和低谷负载之间的差异。此外,分析了电动汽车的可控充电对电网的影响。最后,该模型被用于模拟和分析中国南方沿海城市阳江的配送网络。案例研究表明,电动汽车不受控制的充电将增加电网的峰值负载。提出的可控充电策略可以有效地转移电动汽车的充电负荷,减少峰值负荷需求。

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