Optimal location of Electric Vehicle Rapid Charging Stations in Power Distribution Network and Transportation Network with V2G Strategies

Fareed Ahmad, A. Iqbal, I. Ashraf, M. Marzband, Irfan Khan
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Abstract

Government organizations and the automotive industry are paying close attention to electric vehicles (EVs) because of their lower CO2 emissions, cheap maintenance, and low operating costs. EVs have a bright future ahead of them and have become increasingly popular as the primary source of new energy, due to which many countries are interested in developing the EV charging infrastructure. The optimal number of charging stations and placement has become a prominent research topic across the world, and these challenges are vital for government planning for EVs. This paper first built a mathematical model to predict the number of EV rapid charging stations (EVRCSs) in the given area. Moreover, a model has been developed to optimize the location of EVRCS in the power distribution network with V2G strategies at the charging stations. The power loss of the distribution network and the transportation cost of EVs from the demand point to EVRCS are considered objective functions for problem formulation. The proposed model for the placement of EVRCS has been tested on the IEEE34 bus system, and power flow was analyzed by using the backward forward sweep algorithm. Results are analyzed for the base case without EVRCS placement, the optimal location of EVRCS without V2G strategies, and the optimal location of EVRCS with V2G strategies.
基于V2G策略的电动汽车快速充电站在配电网和交通网络中的最优位置
由于二氧化碳排放量低、维修费用低、运营成本低,政府机关和汽车行业都在密切关注电动汽车。电动汽车有着光明的未来,作为新能源的主要来源越来越受欢迎,因此许多国家都有兴趣发展电动汽车充电基础设施。充电站的最佳数量和布局已经成为世界范围内的一个重要研究课题,这些挑战对政府规划电动汽车至关重要。本文首先建立了预测给定区域内电动汽车快速充电站数量的数学模型。在此基础上,建立了基于V2G策略的ev - rcs在配电网中的位置优化模型。将配电网的功率损耗和电动汽车从需求点到EVRCS的运输成本作为问题制定的目标函数。在IEEE34总线系统上对所提出的EVRCS放置模型进行了测试,并采用后向扫描算法对功率流进行了分析。分析了不放置EVRCS的基本情况、不使用V2G策略的EVRCS的最优位置以及使用V2G策略的EVRCS的最优位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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