Modeling and optimization oriented to the micro-grid-EV joint system

Yan Li, Peng Han, Jinkuan Wang, Xin Song
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引用次数: 4

Abstract

With the increasingly serious energy scarcity and environment pollution, the wide application of the renewable energy and the popularization of the electric vehicle are considered as two effective ways to improve the energy and environment situation. However, the negative effect on the system stability could not be ignored for their intermittent, fluctuant and random characteristics. Aiming to study the operation of micro-grid with access of the renewable energy and EVs, the synthetically modeling method that includes agent-based modeling and system dynamics modeling is applied to built the micro-grid-EV joint system model. Considering the time difference of renewable energy generation, EV charging and the residential load demands, the cascade charging strategy is proposed for scheduling the EV charging behavior to maintain the stable operation of the micro-grid-EV joint system and extremely improve the utilization of the renewable energy. Finally, the comparative simulations are carried out in the same conditions with the other two strategies include charging after travel and charging at night, and the optimal performance of the proposed cascade charging strategy is verified by index evaluation of the renewable energy utilization rate, the energy supplement ability and the peak-to-average ratio.
面向微电网-电动汽车联合系统的建模与优化
随着能源短缺和环境污染的日益严重,可再生能源的广泛应用和电动汽车的普及被认为是改善能源和环境状况的两种有效途径。但由于其间歇性、波动性和随机性,对系统稳定性的负面影响不可忽视。针对可再生能源与电动汽车并网的微电网运行问题,采用基于智能体建模和系统动力学建模相结合的综合建模方法,建立了微电网-电动汽车联合系统模型。考虑到可再生能源发电、电动汽车充电和居民负荷需求的时间差,提出梯级充电策略来调度电动汽车充电行为,以保持微网-电动汽车联合系统的稳定运行,极大地提高可再生能源的利用率。最后,在相同条件下,与行后充电和夜间充电两种策略进行了对比仿真,通过可再生能源利用率、能量补充能力和峰均比等指标评价,验证了所提梯级充电策略的最优性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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