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Distribution System Resilience in Ice Storms by Optimal Routing of Mobile Devices on Congested Roads

机译:拥挤道路上的移动设备最优路由分配系统恢复冰暴

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This article proposes a robust resilience enhancement method for a power distribution network in ice storms by the optimal routing of mobile de-icing devices (MDIDs) on congested transportation roads. We consider MDIDs as emergency vehicles, as other vehicles yield the right-of-way to MDIDs, and propose a de-icing schedule (DIS) to illustrate how MDIDs are routed on congested transportation roads. We further coordinate the DIS and MDID routing, which mitigate transportation routing congestions, with power distribution system operation, which considers distribution network reconfiguration and distributed energy resource dispatch. A two-stage robust model is proposed to manage the effects of ice storms forecast errors on both power distribution and urban transportation networks. The proposed model is reformulated as a mixed-integer second-order cone programming problem. The Benders decomposition and column-and-constraint generation algorithms are further utilized to solve the proposed MISOCP. Numerical results for the modified IEEE 33-bus 12-node, IEEE 123-bus 25-node, and 252-bus 80-node electricity-transportation systems show the effectiveness of the proposed model and solution technique for enhancing the power system resilience.
机译:本文提出了通过在拥挤的运输道路上的移动去冰设备(Mdids)的最佳路由,为冰暴的配电网络提供了强大的弹性增强方法。我们认为MDIDS作为紧急车辆,因为其他车辆产生了MDID的权利,并提出了一种去冰的时间表(DIS),以说明MDIDS如何在拥挤的运输道路上路由。我们进一步协调了DIS和MDID路由,这些路由缓解了运输路由拥塞,配电系统操作,这将考虑分发网络重新配置和分布式能源资源调度。提出了一种两级强大的模型,以管理冰暴预测对电力分配和城市交通网络的影响。所提出的模型作为混合整数二阶锥形编程问题重新重新重新重整。弯管分解和列和约束生成算法还用于解决所提出的MISOCP。改进的IEEE 33总线12节点,IEEE 123总线25节点和252总线80节点电力运输系统的数值结果表明了提出的模型和解决方案技术的有效性,用于增强电力系统弹性。

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