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Using Activity Patterns to Place Electric Vehicle Charging Stations in Urban Regions

机译:使用活动模式将电动车充电站放置在城市地区

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There is growing interest in the adoption of electric vehicles (EVs) in urban regions. However, because of the limited battery range, the EV charging station infrastructure needs to be significantly expanded. We introduce EVCHARGINGSTATION, the problem of optimizing charging stations so that each EV can be charged at a location within a certain service distance. Our formulation explicitly incorporates urban activity patterns, and considers multiple types of charging stations. We show that EVCHARGINGSTATION is NP-hard, in general, and present approximation algorithms with provable performance guarantees. We evaluate one of our algorithms using a detailed urban activity model for the city of Portland, OR. Our results show a tradeoff between the number of charging stations and the maximum service distance, thus providing a systematic methodology for urban planners to evaluate policies for increasing EV deployment. We also show that considering such activity patterns is necessary, in the sense that deploying charging stations at "high traffic" locations can lead to significantly worse solutions.
机译:在城市地区采用电动汽车(EVS),越来越感兴趣。但是,由于电池范围有限,因此需要显着扩展EV充电站基础设施。我们介绍了EvchargingStation,优化充电站的问题,使每个EV可以在某个服务距离内的位置充电。我们的制定明确地融入了城市活动模式,并考虑了多种类型的充电站。我们表明EvcharGingStation通常是NP-Hard,通常是具有可证明性能保证的近似估计算法。我们使用详细的城市活动模式为波特兰市或波特兰市评估我们的算法之一。我们的结果显示了充电站数量和最大服务距离之间的权衡,从而为城市规划人提供了系统的系统方法,以评估增加EV部署的政策。我们还表明,考虑到这样的活动模式是必要的,因此在将充电站部署在“高流量”位置的感觉中可能导致解决方案显着更糟糕的解决方案。

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