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Electric Vehicle Battery Charging/Swap Stations in Distribution Systems: Comparison Study and Optimal Planning

机译:配电系统中的电动汽车电池充电/交换站:比较研究和优化规划

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Electric vehicle (EV) is a promising technology for reducing environmental impacts of road transport. In this paper, a framework for optimal design of battery charging/swap stations in distribution systems based on life cycle cost (LCC) is presented. The battery charging/swap station models are developed to compare the impacts of rapid-charging stations and battery swap stations. Meanwhile, in order to meet the requirements of increased power provided during the charging period, the distribution network should be reinforced. In order to control this reinforcement cost, stations should be placed at appropriate places and be scaled correctly. For optimal cost-benefit analysis and safety operation, the LCC criterion is used to assess the project and a modified differential evolution algorithm is adopted to solve the problem. The proposed method has been verified on the modified IEEE 15-bus and 43-bus radial distribution systems. The results show that battery swap station is more suitable for public transportation in distribution systems.
机译:电动汽车(EV)是减少道路运输对环境影响的一项有前途的技术。本文提出了一种基于生命周期成本(LCC)的配电系统中电池充电/交换站优化设计的框架。开发了电池充电/交换站模型,以比较快速充电站和电池交换站的影响。同时,为了满足充电期间增加功率的要求,应该加强配电网。为了控制此加固成本,应将站放置在适当的位置并正确缩放比例。为了优化成本效益分析和安全运营,使用LCC准则评估项目,并采用改进的差分进化算法来解决该问题。在改进的IEEE 15总线和43总线径向分配系统上已经验证了该方法。结果表明,电池交换站更适合配电系统中的公共交通。

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