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首页> 外文期刊>Annals of Operations Research >The integrated berth allocation, quay crane assignment and scheduling problem: mathematical formulations and a case study
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The integrated berth allocation, quay crane assignment and scheduling problem: mathematical formulations and a case study

机译:综合泊位分配,码头起重机分配和调度问题:数学制剂和案例研究

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This paper considers the integration of three essential seaport terminal operations: the berth allocation problem, the quay crane assignment problem (QCAP), and the quay crane scheduling problem (QCSP). The paper presents a new mathematical formulation that captures all associated operations and constraints. Different quay crane operational policies are considered, namely permitting versus not permitting bay task preemption in QCSP and static versus dynamic crane allocations in QCAP. Thus, variants of the mathematical formulation are introduced to capture the different combinations of these scenarios. Due to the preemption consideration, the models include disaggregated quay crane (QC) tasks. Specifically, QC tasks are identified by single container movements as opposed to bay or stack task allocations that are commonly used in the literature. A case study based on Abu Dhabi's container terminal is presented where the use of the proposed mathematical models are compared against the current existing operational approach. Results show that the service times can be significantly decreased by the use of the proposed models. Moreover, the policy choice effect on the total schedule is compared through simulated examples and Abu Dhabi's container terminal case study. The results show that the policy improvements can depend on the problem's attributes and thus a better policy cannot be generalized.
机译:本文考虑了三个基本海港终端操作的集成:泊位分配问题,码头起重机分配问题(QCAP)和Quay起重机调度问题(QCSP)。本文提出了一种新的数学制定,捕获所有相关的操作和约束。考虑不同的Quay起重机操作策略,即允许在QCSP和静态与动态起重机分配中允许在QCSP和动态起重机分配中允许允许的托架任务抢占。因此,引入了数学制剂的变体来捕获这些场景的不同组合。由于抢占考虑,模型包括分类码头起重机(QC)任务。具体地,QC任务由单个容器运动识别,而不是常用于文献中的湾或堆栈任务分配。介绍了基于ABU DHABI的集装箱码头的案例研究,其中将所提出的数学模型与当前现有的操作方法进行比较。结果表明,通过使用所提出的模型,可以显着降低服务时间。此外,通过模拟示例和阿布扎比的集装箱终端案例研究比较了对总时间表的政策选择效果。结果表明,政策改进可以取决于问题的属性,因此无法概括更好的政策。

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