基于可再生能源部署的停车场电动汽车/插电式混合动力汽车快速充电策略

Qi Wang, I. S. Bayram, F. Granelli, M. Devetsikiotis
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引用次数: 5

摘要

近年来,电动汽车(EV)和插电式混合动力汽车(PHEV)被认为是传统燃油发动机汽车的有力竞争对手,也是对消费者更具吸引力的商品。普通供电需求的增加和电动汽车/插电式混合动力汽车充电站的发展对电力提取需求的增加对现有电网构成了挑战。快速充电站的结构与高效运行已成为学术界和工业界的研究热点。本文介绍了一种基于现有电网与当地可再生能源相结合的候选EV/PHEV快速充电站机制。作为提出的相关分量,局部可再生能源可以成为降低充电站对电网整体需求、减缓不可再生自然能源消耗的正向电力补充。利用排队理论和经济学的理论,建立了一个定量的随机方案来分析系统在清洁能源部署后的性能。结果表明,通过安排机制可以降低整体电力需求,实现电力公司和电力消费者的双赢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast power charging strategy for EV/PHEV in parking campus with deployment of renewable energy
Electric Vehicles (EV) and Plug-in Hybrid Electric Vehicles (PHEV) are being considered as aspirant competitors of traditional fuel engine vehicles and more attractive goods to consumers in recent years. The current power grid is being challenged by the increasing power demand from ordinary power supply and extract demand of developing power charging stations for EV/PHEV. The architecture and efficient operation of fast power charging stations is becoming a popular research topic both in academia and industry. In this paper, we introduce a candidate EV/PHEV fast power charging station mechanism, based on the combined power resource of current electrical grid and local renewable energy. As the proposed relevant component, the local renewable energy can become the positive power supplement for reducing the integral demand of charging stations to power grid and slowing down the consumption of nonrenewable natural energy. A quantitative stochastic scheme is established for analyzing the performance of the outlined system via employing arguments from queueing theory and economics, after clean energy is deployed. The results figures show that the integral power demand can be reduced by arranging our mechanism and the win-win benefits can be shared by utilities and power consumers.
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