Publication | Closed Access
Optimal recovery sequencing for enhanced resilience and service restoration in transportation networks
127
Citations
26
References
2014
Year
Transport Network AnalysisEngineeringCritical Infrastructure ProtectionOptimisation ModelService RestorationNetwork RobustnessNetwork AnalysisOperations ResearchPower System RestorationLogisticsSystems EngineeringCritical Infrastructure ResilienceCombinatorial OptimizationNetwork OptimizationTransportation EngineeringEnhanced ResilienceNetwork FlowsOptimal RecoveryComputer EngineeringNetwork RecoveryNetwork ScienceSurvivable NetworkCivil EngineeringResilience AnalysisResilience EngineeringBusinessProject Network
Critical infrastructure resilience has become a national priority for the US Department of Homeland Security. Rapid and efficient restoration of service in damaged transportation networks is a key area of focus. The intent of this paper is to formulate a bi-level optimisation model for network recovery and to demonstrate a solution approach for that optimisation model. The lower-level problem involves solving for network flows, while the upper-level problem identifies the optimal recovery modes and sequences, using tools from the literature on multi-mode project scheduling problems. Application and advantages of this method are demonstrated through two examples.
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