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An Optimal Charging of Plug-In Electric Vehicles in Unbalanced Three-Phase Distribution Network

机译:不平衡三相配电网中插电式电动汽车的最佳充电

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Electric vehicles (EVs) are developing due to concerns over global warming and the major role of the transportation sector in emissions. EVs can also flatten the power curve and increase the reliability of power grids when renewable energy sources are used. Despite of these benefits, EVs impose new loads on distribution networks. Simultaneous charging of EVs, especially at high penetration levels, can create new load peaks in the power curves as well as overloading transformers, shortening their service life. In actual applications, most electric cars are single-phase loads that need to be charged from household or commercial outlets. In this paper, an optimization method is presented to coordinate the dynamic charge operation of single-phase EVs in an unbalanced three-phase distribution network. In the proposed method, the main goal of charging management is to minimize the total cost, which considers both network security constraints and electric vehicle constraints. The proposed method is tested on a sample distribution network and the numerical results prove the effectiveness of the method.
机译:电动汽车(EV)的发展是由于对全球变暖的担忧以及交通运输部门在排放中的重要作用。使用可再生能源时,电动汽车还可以使功率曲线变平并提高电网的可靠性。尽管有这些好处,但电动汽车对配电网络施加了新的负担。电动汽车的同时充电,尤其是在高渗透水平时,会在功率曲线中产生新的负载峰值,并使变压器过载,从而缩短其使用寿命。在实际应用中,大多数电动汽车都是单相负载,需要从家用或商用电源插座中充电。本文提出了一种优化方法来协调不平衡三相配电网中单相电动汽车的动态充电操作。在所提出的方法中,充电管理的主要目标是使总成本最小化,其同时考虑了网络安全性约束和电动汽车约束。在样本分配网络上对该方法进行了测试,数值结果证明了该方法的有效性。

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