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Resilient design of recharging station networks for electric transportation vehicles

机译:电力运输车辆充电站网络的弹性设计

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As societies shift to “greener” means of transportation using electricity-driven vehicles one critical challenge we face is the creation of a robust and resilient infrastructure of recharging stations. A particular issue here is the optimal location of service stations. In this work, we consider the placement of battery replacing service station in a city network for which the normal traffic flow is known. For such known traffic flow, the service stations are placed such that the expected performance is maximized without changing the traffic flow. This is done for different scenarios in which roads, road junctions and service stations can fail with a given probability. To account for such failure probabilities, the previously developed facility interception model is extended. Results show that service station failures have a minimal impact on the performance following robust placement while road and road junction failures have larger impacts which are not mitigated easily by robust placement.
机译:随着社会转向“更环保”的运输方式,使用电力驱动的车辆,我们面临的一个危急挑战是创造了充电站的强大和有弹性的基础设施。这里的特定问题是服务站的最佳位置。在这项工作中,我们考虑在普通交通流量的城市网络中放置电池更换服务站。对于这种已知的业务流量,放置服务站使得预期性能最大化而不改变交通流量。这是针对不同方案完成的,其中道路,道路连接和服务站可以失败,具有给定的概率。要考虑此类失败概率,请延长先前开发的设施拦截模型。结果表明,服务台故障对稳健展示后的性能影响最小,而道路和道路结故障具有较大的冲击,这些撞击不会通过稳健的放置而容易减轻。

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