Optimal scheduling of electric vehicle battery swap station based on time-of-use pricing

Lijing Zhang, Suhua Lou, Yaowu Wu, Lin Yi, Bin Hu
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引用次数: 10

Abstract

Battery swap station (BSS) is an important energy supply place for electric vehicles (EVs), where discharged batteries could be replaced with fully charged ones. Therefore, an optimal scheduling model of the BSS under time-of-use (TOU) electricity price is proposed in this paper, which takes the particular constrains relating the BSS into account. Meanwhile, a statistic model of daily battery swapping demand based on historical data is developed to generate a scenario set of EVs' energy need, which can be reduced based on the Kantorovich distance(KD) to obtain a typical scenario set while still being close to the original set. The reasonability and validity of the proposed model is proved by a case study. The results show that the controlled domestic charging can smooth the charging curve as well as decrease the charging cost relative to the uncontrolled domestic charging. Moreover, the optimization results are sensitive to the charging level and the number of batteries in the BSS.
基于分时定价的电动汽车换电池站优化调度
电池交换站(BSS)是电动汽车重要的能源供应场所,可以将放电的电池替换为充满电的电池。为此,本文考虑了分时电价下BSS的特殊约束条件,提出了一个BSS的最优调度模型。同时,建立了基于历史数据的日换电池需求统计模型,生成电动汽车能量需求情景集,并根据Kantorovich距离(KD)对该情景集进行约简,得到与原始情景集接近的典型情景集。通过算例验证了该模型的合理性和有效性。结果表明,与不可控充电相比,可控充电能使充电曲线平滑,降低充电成本。此外,优化结果对BSS的充电水平和电池数量敏感。
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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