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Yard Crane Dispatching to Minimize Total Weighted Vessel Turnaround Tunes in Container Terminals

机译:堆场起重机调度可最大程度减少集装箱码头的总称重船周转音调

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In traditional approaches, the objective of yard crane (YC) dispatching is usually to minimize makespan of YC operations or to minimize vehicle waiting time. However, one of the most important objectives of terminal operation management is to minimize total weighted vessel turnaround time. We prove that minimizing the maximum tardiness of vehicle jobs from one vessel will minimize the vessel's turnaround time. Therefore minimizing the total weighted maximum tardiness of all YCs' jobs will minimize the total weighted vessel turnaround time. We propose algorithm MTWMT to minimize total weighted maximum job tardiness. We compare the performance of our algorithm with the optimal algorithms RBA* and MMS-RBA* from earlier studies. RBA* minimizes total vehicle waiting time while MMS-RBA* minimizes makespan. Experimental results confirm that MTWMT is most effective in reducing total weighted vessel turnaround time.
机译:在传统方法中,院子起重机(YC)调度的目的通常是最小化YC操作的有效期或最小化车辆的等待时间。但是,码头运营管理的最重要目标之一是最大程度地减少总加权船舶的周转时间。我们证明,最大程度地减少一艘船的车辆作业的最大拖延时间将最大程度地减少船的周转时间。因此,最小化所有YC作业的总加权最大拖船时间将最小化总加权船只的周转时间。我们提出了MTWMT算法,以最大程度地减少总加权最大作业拖后时间。我们将我们的算法与早期研究的最佳算法RBA *和MMS-RBA *的性能进行了比较。 RBA *最大程度地减少了车辆的总等待时间,而MMS-RBA *最大程度地缩短了制造时间。实验结果证实,MTWMT在减少总加权船舶周转时间方面最有效。

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