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Multiple quay cranes scheduling for double cycling in container terminals

机译:安排多码头起重机在集装箱码头进行双重循环

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摘要

Double cycling is an efficient tool to increase the efficiency of quay crane (QC) in container terminals. In this paper, an optimization model for double cycling is developed to optimize the operation sequence of multiple QCs. The objective is to minimize the makespan of the ship handling operation considering the ship balance constraint. To solve the model, an algorithm based on Lagrangian relaxation is designed. Finally, we compare the efficiency of the Lagrangian relaxation based heuristic with the branch-and-bound method and a genetic algorithm using instances of different sizes. The results of numerical experiments indicate that the proposed model can effectively reduce the unloading and loading times of QCs. The effects of the ship balance constraint are more notable when the number of QCs is high.
机译:双重循环是提高集装箱码头码头起重机(QC)效率的有效工具。在本文中,开发了用于双循环的优化模型以优化多个QC的操作顺序。目的是在考虑船舶平衡约束的情况下最大程度地减少船舶装卸作业的时间。为了解决该模型,设计了一种基于拉格朗日松弛的算法。最后,我们将基于拉格朗日松弛法的启发式方法与分支定界方法和使用不同大小实例的遗传算法进行比较。数值实验结果表明,所提出的模型可以有效地减少质量控制的卸载和加载时间。当质量控制的数量很高时,船舶平衡约束的效果会更加明显。

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