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[Regular Papers] Dispatching Vehicles Considering Multi-lifts of Quay Cranes

机译:[常规文件]考虑码头起重机的多升降机调度车辆

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To improve the ship operation in automated container terminals, it is important to sched- ule different types of handling equipment to operate synchronously. For example, a vehicle with container receiving and lifting capabilities is used to transport containers from a storage yard to a vessel and vice versa, while a triple quay crane (QC) can handle up to three 40-ft containers simultaneously. This paper discusses the manner in which vehicles should be assigned to containers to support such multi-lifts of QCs by using information about the locations and times of deliveries. A mixed-integer programming model is introduced to optimally assign delivery tasks to vehicles. This model considers the constraint imposed by the limited buffer space under each QC. A proce- dure for converting buffer-space constraints into time window constraints and a heuristic algorithm for overcoming the excessive computational time required for solving the mathematical model are suggested. A numerical experiment is conducted to compare the objective values and computational times of the heuristic algorithm with those of the optimizing method to evaluate the performance of the heuristic algorithm.
机译:为了改善自动集装箱终端中的船舶操作,要调度不同类型的处理设备是同步运行的。例如,具有容器接收和提升能力的车辆用于将容器从存储码输送到容器,反之亦然,而三码头起重机(QC)可以同时处理最多三个40英尺的容器。本文讨论了车辆应该将车辆分配给容器以支持通过使用有关位置的信息和交付时间的信息来支持这种多升力。引入混合整数编程模型以最佳地将送货任务分配给车辆。该模型考虑每个QC下的有限缓冲区空间施加的约束。提出了一种方法,用于将缓冲空间约束转换为时间窗口约束以及用于克服解决数学模型所需的过度计算时间的启发式算法。进行数值实验以比较启发式算法的客观值和计算时间与优化方法评估启发式算法性能的那些。

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