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Resilience-based post-disaster recovery strategies for road-bridge networks

机译:基于弹性的道路桥网络灾后恢复策略

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This paper presents a novel resilience-based framework to optimise the scheduling of the post-disaster recovery actions for road-bridge transportation networks. The methodology systematically incorporates network topology, redundancy, traffic flow, damage level and available resources into the stochastic processes of network post-hazard recovery strategy optimisation. Two metrics are proposed for measuring rapidity and efficiency of the network recovery: total recovery time (TRT) and the skew of the recovery trajectory (SRT). The TRT is the time required for the network to be restored to its pre-hazard functionality level, while the SRT is a metric defined for the first time in this study to capture the characteristics of the recovery trajectory that relates to the efficiency of those restoration strategies considered. Based on this two-dimensional metric, a restoration scheduling method is proposed for optimal post-disaster recovery planning for bridge-road transportation networks. To illustrate the proposed methodology, a genetic algorithm is used to solve the restoration schedule optimisation problem for a hypothetical bridge network with 30 nodes and 37 bridges subjected to a scenario seismic event. A sensitivity study using this network illustrates the impact of the resourcefulness of a community and its time-dependent commitment of resources on the network recovery time and trajectory.
机译:本文提出了一种基于新的可弹性框架,以优化道路交通网络灾后恢复行动的调度。该方法系统地将网络拓扑,冗余,交通流量,损害水平和可用资源纳入网络后危险恢复策略优化的随机过程中。提出了两种指标,用于测量网络恢复的快速度和效率:总恢复时间(TRT)和恢复轨迹的歪斜(SRT)。 TRT是网络恢复到其预危险功能级别所需的时间,而SRT是在本研究中第一次定义的度量,以捕获恢复轨迹的特性,这些特性与这些恢复的效率有关策略考虑。基于该二维度量,提出了一种恢复调度方法,以获得桥路运输网络的最佳灾后恢复规划。为了说明所提出的方法,遗传算法用于解决假设桥网络的恢复时间表优化问题,其中包含30个节点和37个桥接经历了场景地震事件的桥梁。使用该网络的灵敏度研究说明了社区的智慧和其时间依赖于网络恢复时间和轨迹的时间依赖性的影响。

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