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Optimal Recourse Strategy for Battery Swapping Stations Considering Electric Vehicle Uncertainty

机译:考虑电动车辆不确定性的电池交换站最佳追索策略

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摘要

Battery swapping stations (BSSs) present an alternative way of charging electric vehicles (EVs) that can lead toward a sustainable EV ecosystem. Although research focusing on the BSS strategies has been ongoing, the results are fragmented. Currently, an integrated way of considering stochastic EV station visits through planning and operations has not been fully investigated. To create comprehensive and resilient battery swapping stations, a two-stage optimization with recourse is proposed. In the planning stage, the investment for battery purchases is recommended even before the EV station visit uncertainties are made known. In the operation stage, the battery allocation decisions, such as charging, discharging, and swapping are then coordinated. To apply the recourse strategy in creating representative scenarios, the EV station visit distribution techniques are also proposed using a modified K-means clustering method. Aside from the sensitivity analysis made with swapping prices and charging intervals, the strategy comparisons with conventional strategies have also demonstrated the practicality of the BSS coordination to future electricity and transportation networks.
机译:电池交换站(BSSS)呈现了可以导致可持续EV生态系统的电动车辆(EVS)的替代方式。虽然研究了对BSS策略的研究已经持续,但结果是碎片化的。目前,通过规划和运营考虑随机EV站访问的综合方式尚未得到充分调查。为创建全面和弹性电池交换站,提出了一种双级优化。在规划阶段,即使在EV站访问不确定性之前,建议使用电池购买的投资。在操作阶段,然后协调电池分配决策,例如充电,放电和交换。为了在创建代表方案时应用追索策略,还使用修改后的k均值聚类方法提出了EV站访问分配技术。除了通过交换价格和充电间隔进行的敏感性分析,还具有传统策略的战略比较还表明了BSS对未来电力和运输网络的协调的实用性。

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