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Multi-objective optimum charging management of electric vehicles through battery swapping stations

机译:通过电池交换站的电动汽车多目标最优充电管理

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摘要

The rapid growth of electric vehicle (EV) penetration is promoted by fossil fuels depletion, environmental concerns, and energy efficiency initiatives. Battery charging time duration is of the main obstacles to large-scale deployment of this technology. Battery swapping station (BSS) is a new concept to handle this issue in which depleted EV batteries are replaced with a previously full-charged one at a significantly less time duration. To this end, the optimum location of the EV charging among BSSs in the network in addition to the priority charging of the depleted batteries in each BSS should be determined. In this context, the present paper is to perform these tasks optimally and simultaneously. The problem is formulated as a multi-objective programming model in which three non-homogenous objectives are taken into account and solved using the NSGA II algorithm. Two cost-based objectives including minimizing EV batteries charging and power loss cost along with two technical based objectives, comprising voltage profile flattening and network capacity releasing, are considered. Additionally, besides dynamic pricing scheme, a time window method to prevent interruptions in the battery charging is developed. The proposed model is implemented on 33-bus IEEE test system where the results demonstrate its functionality.
机译:矿物燃料的枯竭,对环境的关注以及提高能效的举措促进了电动汽车(EV)渗透率的快速增长。电池充电持续时间是该技术大规模部署的主要障碍。电池交换站(BSS)是解决此问题的新概念,其中用尽了很短的时间,将充满电的EV电池替换为以前充满电的电池。为此,除了在每个BSS中对耗尽的电池进行优先充电之外,还应该确定网络中的BSS之间的EV充电的最佳位置。在这种情况下,本论文将以最佳方式同时执行这些任务。该问题被表述为一个多目标规划模型,其中考虑了三个非均匀目标并使用NSGA II算法解决了该问题。考虑了两个基于成本的目标,包括最小化EV电池充电和功率损耗成本,以及两个基于技术的目标,包括电压分布平坦化和网络容量释放。另外,除了动态定价方案之外,还开发了一种防止电池充电中断的时间窗方法。该模型在33总线IEEE测试系统上实现,结果证明了其功能。

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