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Quay crane scheduling for multiple hatches vessel considering double-cycling strategy

机译:考虑双循环策略的多个舱口船的码头起重机调度

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摘要

Purpose The development of mega container ships and operational pressures puts forward higher requirements on the operational ability of the container terminal. Accordingly, the purpose of this paper is to propose an effective method for quay crane (QC) scheduling of multiple hatches vessel considering double-cycling strategy to improve the operation efficiency and reduce the risk of delay. Design/methodology/approach A mixed integer programming model, which covers the main operational constraints in a container terminal, is formulated to solve the quay crane scheduling problem (QCSP) with a novel objective. Findings A case study is presented and a number of numerical experiments are conducted to validate the effectiveness of the proposed model. Meanwhile, management insights are proposed. The results demonstrate that the proposed method can efficiently solve QCSP in a container terminal, and an interesting finding is that reducing the stack layers on the vessel can improve the operation efficiency of QC. Originality/value A new mathematical model is proposed for QC scheduling at the operational level, which considers the constraints of double-cycling strategy, multiple hatches and hatch covers. The proposed model also provides methods to research the QC double-cycling problem considering the balance between energy cost and operation efficiency.
机译:目的,Mega集装箱船舶的开发和操作压力对集装箱码头的操作能力提出了更高的要求。因此,本文的目的是提出用于码头起重机(QC)调度的有效方法,考虑双循环策略以提高操作效率并降低延迟风险。设计/方法/接近一个混合整数编程模型,其覆盖了集装箱终端中的主要操作约束,以解决具有新颖目标的码头起重机调度问题(QCSP)。结果表明案例研究并进行了许多数值实验以验证所提出的模型的有效性。同时,提出了管理洞察。结果表明,所提出的方法可以有效地解决容器终端中的QCSP,并且有趣的发现是减少容器上的堆叠层可以提高QC的操作效率。原创性/值是建议在运营级别的QC调度的新数学模型,这考虑了双循环策略,多个舱口和舱口盖的约束。建议的模型还提供了研究QC双循环问题的方法,考虑到能源成本和运营效率之间的平衡。

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