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Optimal design of electric vehicle charging stations integrated with renewable DG

机译:集成可再生能源的电动汽车充电站的优化设计

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Electrification of the transportation sector is a crucial step toward achieving a sustainable society. It will lead to several advantages, such as: reduce consumption of oil, reduce emissions and integrate renewable energy resources into the grid. Deployment of electric vehicle charging stations (EVCS) is essential to encourage large adoption of Electric Vehicle (EV) as it will reduce `range anxiety' concern regarding the distance the EV could travel before the battery runs out. In this work, an optimal design of an electric vehicle charging station that integrates renewable distributed generation (DG) will be designed for cost and emission reduction. Both an isolated microgrid EVCS and an EVCS connected to the grid were studied in different cases, where energy sources such as PV, wind, and diesel generator are considered to supply the EVCS demand. The model was designed using HOMER software and designed based on realistic input data in terms of physical, operational and economic characteristics.
机译:运输部门的电气化是实现可持续社会的关键一步。这将带来许多优势,例如:减少石油消耗,减少排放并将可再生能源整合到电网中。部署电动汽车充电站(EVCS)对于鼓励大量采用电动汽车(EV)是必不可少的,因为这将减少人们对电动汽车在电池耗尽之前可以行驶的距离的“范围焦虑”的担忧。在这项工作中,将针对集成了可再生分布式发电(DG)的电动汽车充电站进行优化设计,以降低成本和减少排放。在不同情况下研究了隔离的微电网EVCS和连接到电网的EVCS,在这种情况下,可以考虑使用能源(例如PV,风能和柴油发电机)来满足EVCS的需求。该模型是使用HOMER软件设计的,并基于物理,操作和经济特性方面的实际输入数据进行了设计。

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