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Scheduling Yard Cranes Considering Crane Interference

机译:考虑起重机干扰的调度堆场起重机

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Automated stacking cranes form the heart of modern container terminals. Hence, their productivity has a major influence on the performance of the terminal. In the first part of this paper, the yard crane scheduling problem and its practical relevance from the point of view of the Container Terminal Altenwerder (CTA) in Hamburg, Germany, is described. In Altenwerder, 26 yard blocks orthogonal to the quay with transfer areas at both ends of each block are operated with double rail mounted gantries (DRMG). In the second part of the paper, an outline of a new scheduling algorithm for yard cranes on this particular layout is given. The procedure minimizes delays for the jobs and the cycle times of the cranes. In addition to in-motion times also other parts of the cycle time, as waiting and blocking times resulting from other cranes, are taken into account in the scheduling approach. A branch and bound algorithm is used to create sequences of jobs for each crane. Using a simulation model, both the influence of the length of these sequences and the impact of technical breakdowns on the results are analysed. Finally, the results are verified with operational data and the applicability for practice at the CTA is evaluated.
机译:自动堆垛起重机是现代集装箱码头的核心。因此,它们的生产率对终端的性能有重大影响。在本文的第一部分中,从德国汉堡的集装箱码头Altenwerder(CTA)的角度描述了堆场起重机调度问题及其实际意义。在Altenwerder中,与码头正交且在每个区块两端都有转移区域的26码区块使用双轨安装式龙门架(DRMG)进行操作。在本文的第二部分中,给出了针对这种特定布局的院子起重机新调度算法的概述。该程序最大程度地减少了工作延迟和起重机的周期时间。除了运动时间外,在调度方法中还考虑了周期时间的其他部分,例如其他起重机的等待时间和阻塞时间。分支定界算法用于为每个起重机创建作业序列。使用模拟模型,既分析了这些序列的长度的影响,又分析了技术故障对结果的影响。最后,通过操作数据验证结果,并评估在CTA中进行实践的适用性。

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