Publication | Closed Access
Iterative Deepening A* Algorithms for the Container Relocation Problem
142
Citations
15
References
2012
Year
Mathematical ProgrammingBranch-and-bound AlgorithmEngineeringTime FrameComputational ComplexityOperations ResearchNaval ArchitectureLogisticsSystems EngineeringParallel ComputingCombinatorial OptimizationContainer Relocation ProblemContainerizationCombinatorial ProblemComputer EngineeringComputer ScienceInteger ProgrammingPractical Time FrameHeuristic Search
The container relocation problem, where containers that are stored in bays are retrieved in a fixed sequence, is a crucial port operation. Existing approaches using branch and bound algorithms are only able to optimally solve small cases in a practical time frame. In this paper, we investigate iterative deepening A* algorithms (rather than branch and bound) using new lower bound measures and heuristics, and show that this approach is able to solve much larger instances of the problem in a time frame that is suitable for practical application. We also examine a more difficult variant of the problem that has been largely ignored in existing literature.
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