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Community Microgrid Energy Storage Sizing Considering EV Fleet Batteries as Supplemental Resource

机译:将EV舰队电池视为补充资源的社区微电池尺寸

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The penetration of electric vehicles (EVs) has been increasing very quickly in the last few years. EVs can help reduce the dependency on the fossil energy, greenhouse gas emission, and improve energy efficiency. Besides the aforementioned benefits, EVs could also provide extra benefits for the neighborhood level network. This paper present a case study to analyze the potential benefit of using an EV fleet as energy storage in order to cut off and save extra battery packs investments on energy storage. Particularly, the paper provides a Continuous Time Markov Chain (CTMC) based EV fleet total available battery capacity estimation framework dealing with cost savings oriented community energy storage sizing problem. The local fast charging station (FCS) queuing situation and the queuing theory are also considered. Experiment results show that the adoption of EVs could helo significantly reduce the investment on battery storage which could bring significant economic and social benefits.
机译:电动车辆(EVS)在过去几年中一直在迅速增加。 EVS可以帮助降低化石能量,温室气体排放,提高能效的依赖性。除了上述福利之外,EVS还可以为邻里级网络提供额外的益处。本文展示了一个案例研究,分析了使用EV车队作为储能的潜在好处,以便切断并节省额外的电池组对储能的投资。特别是,本文提供了一种连续的Markov链(CTMC)的EV舰队总可用的电池容量估计框架,以节省成本节约的社区储能尺寸问题。还考虑了本地快速充电站(FCS)排队情况和排队理论。实验结果表明,通过EVS的采用可以启动显着降低了对电池储存的投资,这可以带来显着的经济和社会效益。

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