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Optimal Sizing and Siting of EV Charging Stations in a Real Distribution System Environment

机译:实际配电系统环境中电动汽车充电站的最佳选址

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Fully electric vehicles have started to gain more importance due to the idea of allowing increased use of electricity in the transportation sector in recent years. However, high penetration of electric vehicles into the existing power systems may cause significant challenges especially for the distribution systems due to their charging demand. This study covers a mixed-integer linear programming model with the aim of optimal locating and dimensioning for electric vehicle charging stations in a distribution system. The proposed model is tested in the distribution system of a region in Turkey managed by the Osmangazi Electricity Distribution Company. Besides, the study considers the power flow between the regions via linear approximation of losses. Therefore, the propounded model includes power flow restrictions due to the power limitation of the grid, transformers, and the transmission capacity of branches. To show the efficacy of the model, simulations are conducted by using measured load data along with the actual electric vehicle data.
机译:近年来,由于允许在交通领域增加用电的想法,全电动汽车已开始变得越来越重要。然而,由于电动汽车的充电需求,电动汽车对现有电力系统的高度渗透可能引起重大挑战,特别是对于配电系统而言。这项研究涵盖了一个混合整数线性规划模型,旨在优化配电系统中电动汽车充电站的位置和尺寸。该模型在由Osmangazi Electricity Distribution Company管理的土耳其地区的配电系统中进行了测试。此外,研究通过损耗的线性近似来考虑区域之间的功率流。因此,由于电网,变压器和分支机构的传输能力的限制,提出的模型包括了潮流限制。为了显示该模型的有效性,通过使用测得的负载数据以及实际的电动汽车数据进行了仿真。

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