多尺寸集装箱自动化码头设备调度的启发式算法

Q2 Engineering Archives of Transport Pub Date : 2023-03-31 DOI:10.5604/01.3001.0016.2478
Hui Li
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引用次数: 0

摘要

随着集装箱运输量的不断增加,集装箱多式联运和港口调度备受关注。搬运设备的分配和调度以最大限度地减少完工时间和能耗一直是研究的重点。本文研究了具有多尺寸集装箱的陆海联运集装箱码头的调度问题,其中涉及码头起重机、车辆、堆场起重机和外部集装箱卡车等操作设施和设备。此外,集装箱大小的多样性和堆场握手区的位置也受到关注。建立了一个混合整数规划调度模型,对所有运行设施和设备进行调度。数学模型的求解是一个NP难问题,传统方法难以求解。然后,我们提出了一种将多个目标合并为一个目标的启发式算法,并基于启发式组合策略设计了一种改进的遗传算法,在启发式组合策略中,20英尺集装箱在分配之前被配对到同一个堆场。然后通过实验验证了模型和算法的有效性。讨论了不同条件下配置对效率和能耗的影响,并比较了不同参数和20英尺集装箱比例的影响。此外,还比较了不同码数下手抖区域位置的影响。总之,要分配的设备数量是最优的。如果使用较少的设备,则操作时间会延长;如果过多,能源消耗将会增加。当堆场作业成为瓶颈时,移交地点应在中心,其他地点可能可行。当20英尺集装箱的组合比例较大时,本文提出的方法比传统方法具有优势。该算法在提高效率和降低能耗方面取得了突破性进展。
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A heuristic algorithm for equipment scheduling at an automated container terminal with multi-size containers
With the increasing volume of shipping containers, container multimodal transport and port scheduling have attracted much attention. The allocation and dispatching of handling equipment to minimize completion time and energy consumption have always been a focus of research. This paper considers a scheduling problem at an auto-mated landmaritime multimodal container terminal with multi-size containers, in which operating facilities and equipment such as quay cranes, vehicles, yard cranes, and external container trucks are involved. Moreover, the diversity of container sizes and the location of handshake areas in yards are concerned. A mixed integer program-ming model is established to schedule all operating facilities and equipment. To solve the mathematical model is a NP-hard problem, which is difficult to be solved by conventional methods. Then we propose a heuristic algorithm which merges multiple targets into one and designs an improved genetic algorithm based on the heuristic combi-nation strategy in which 20-ft containers are paired-up to the same yard before allocation. After that, some exper-iments are designed to prove the effectiveness of the model and the algorithm. The effect of configurations on efficiency and energy consumption under different conditions is discussed, and the influences of different parame-ters and the proportion of 20-ft containers are also compared. Furthermore, the influence of locations of hand-shake area with different yard quantities are compared. To conclude, there is an optimal number of equipment to be allocated. If few equipment is used, the operation time will be prolonged; if too many, the energy consumption will be increased. When the yard operation is the bottleneck, the handover location should be in the centre, other-wise other locations might be feasible. When the proportion of 20-ft containers that can be combined is large, the method proposed in this paper has advantages over traditional methods. The proposed algorithm has made a breakthrough in improving efficiency and reducing energy consumption.
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来源期刊
Archives of Transport
Archives of Transport Engineering-Automotive Engineering
CiteScore
2.50
自引率
0.00%
发文量
26
审稿时长
24 weeks
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