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Assessing the effect of introducing adaptive charging stations in public EV charging infrastructures

机译:评估在公共电动汽车充电基础设施中引入自适应充电站的效果

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The availability of publicly accessible charging stations in urban areas can foster the widespread adoption of Electric Vehicles (EVs). However, the introduction of public charging infrastructures will put an additional strain on the power grid due to the possible occurrence of peak demands. This study is a first attempt to quantitatively assess the potential benefits of introducing in a public charging infrastructure smart charging stations that are capable of modulating the current supplied to the EVs. Specifically, we assume that each charging station has limited power resources that must be shared among the EVs attached to its charging sockets according to a given scheduling strategy. To evaluate the performance of such system we utilise SUMO, an open-source and widely used vehicular traffic simulator, along with a highly realistic mobility trace for the metropolitan area of Luxembourg City. Simulation results indicate that the use of simple charging strategies that take advantage of the modulation capabilities of smart charging stations (e.g., fair-sharing or token-based scheduling approaches) can effectively mitigate the impact of EV charging demands on the power grid with a limited degradation of charging performance. However, our results also confirm that a significant investment on charging infrastructure might be necessary to guarantee a non-blocking charging service.
机译:城市地区可使用公共充电站可以促进电动汽车(EV)的广泛采用。但是,由于可能出现高峰需求,因此引入公共充电基础设施将给电网带来额外的压力。这项研究是定量评估在公共充电基础设施中引入能够调节提供给电动汽车电流的智能充电站的潜在收益的首次尝试。具体而言,我们假设每个充电站具有有限的电力资源,必须根据给定的调度策略在连接到其充电插座的EV之间共享这些电力资源。为了评估这种系统的性能,我们使用了SUMO(一种开源且广泛使用的车辆交通模拟器),以及卢森堡市都会区的高度逼真的移动性轨迹。仿真结果表明,利用利用智能充电站的调制功能的简单充电策略(例如,基于公平共享或基于令牌的调度方法)可以在有限的范围内有效缓解电动汽车充电需求对电网的影响充电性能下降。但是,我们的结果也证实,为保证无阻塞充电服务,可能需要对充电基础设施进行大量投资。

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