Renewable powered Battery Swapping Stations for sustainable urban mobility

Daniela Renga, Gianmarco Centonze, M. Meo
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引用次数: 1

Abstract

Due to sustainability concerns raised by the transportation sector, still relying mostly on oil as main energy source, urban mobility is quickly shifting towards the adoption of electric vehicles (EVs), The EV charging process should heavily rely on Renewable Energy Sources (RES) and be smartly scheduled to promote sustainability and pollution reduction. In this context, renewable powered Battery Swapping Stations (BSS) represent a promising solution to enable sustainable and feasible e-mobility. Focusing on a BSS powered by photovoltaic panels, we investigate the issue of properly dimensioning its capacity (in terms of number of sockets) and the renewable energy supply to satisfy the battery swapping demand, trading off cost, Quality of Service and feasibility constraints. In addition, we analyse the potential benefits of smart scheduling strategies for battery recharging. Our results show that considerable cost saving of up to almost 40% can be achieved with a local RE supply to power the BSS. Furthermore, a proper tuning of the scheduling strategy configuration parameters is required to better trade off cost and Quality of Service, based on the desired performance targets.
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可持续城市交通的可再生动力电池交换站
由于交通运输部门提出的可持续性问题,仍然主要依赖石油作为主要能源,城市交通正在迅速转向采用电动汽车(EV)。电动汽车充电过程应严重依赖可再生能源(RES),并明智地安排以促进可持续性和减少污染。在这种情况下,可再生能源电池交换站(BSS)代表了一种有前途的解决方案,可以实现可持续和可行的电动交通。本文以光伏板供电的BSS为研究对象,探讨其容量(按插座数量计算)和可再生能源供应的合理尺寸,以满足电池交换需求、权衡成本、服务质量和可行性约束。此外,我们还分析了智能调度策略对电池充电的潜在好处。我们的研究结果表明,使用本地可再生能源为BSS供电可以节省近40%的成本。此外,需要对调度策略配置参数进行适当的调优,以便根据期望的性能目标更好地权衡成本和服务质量。
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