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Impacts of battery charging rates of Plug-in Electric Vehicle on smart grid distribution systems

机译:电池充电率对智能电网分配系统的电池电动车辆电池充电率的影响

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Plug-in Electric Vehicles (PEVs) will be an integral part of smart grids in the near future. This paper studies the impacts of different PEV battery charging profiles on the performance of smart grid distribution systems. PEVs are already growing in popularity as a low emission mode of transport versus conventional petroleum based vehicles. Utilities are becoming concerned about the potential stresses and overloads that may occur with multiple domestic PEV charging activity. Smart grids will play an important role in PEV operation because the battery chargers can be coordinated by the utility and harnessed for storing surplus grid energy and reused to support the grid during peak times. Therefore, an analysis is performed for a smart grid distribution system to demonstrate the impacts of different PEV charging scenarios. The paper compares charging rates (e.g., slow, medium and fast charging), PEV penetration levels as well as different charging periods over a 24 hour period considering existing system load profiles, and evaluates the overall performance of the distribution system. The impact on system load profile, total losses, transformer loading and voltage profile is examined.
机译:插入式电动车辆(PEVS)将在不久的将来是智能电网的一个组成部分。本文研究了不同PEV电池充电型材对智能电网配电系统性能的影响。 PEV在普及中已经越来越受到普及,作为常规石油车辆的低排放式运输方式。公用事业公司越来越关注多国内PEV充电活动可能发生的潜在应力和过载。智能电网将在PEV操作中发挥重要作用,因为电池充电器可以通过该实用程序协调,并利用存储剩余电网能量并重复使用在高峰时段期间支持网格。因此,对智能电网分配系统执行分析以展示不同PEV充电情景的影响。本文在考虑现有系统负载型材的24小时内比较充电率(例如,慢速,中等和快速充电),PEV穿透水平以及不同的充电期间,并评估分配系统的整体性能。检查对系统负载曲线,总损耗,变压器加载和电压曲线的影响。

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