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Segment-based alteration for container liner shipping network design

机译:基于分段的集装箱班轮运输网络设计变更

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Container liner shipping companies only partially alter their shipping networks to cope with the changing demand, rather than entirely redesign and change the network. In view of the practice, this paper proposes an optimal container liner shipping network alteration problem based on an interesting idea of segment, which is a sequence of legs from a head port to a tail port that are visited by the same type of ship more than once in the existing shipping network. In segment-based network alteration, the segments are intact and each port is visited by the same type of ship and from the same previous ports. As a result, the designed network needs minimum modification before implementation. A mixed-integer linear programming model with a polynomial number of variables is developed for the proposed segmented-based liner shipping network alternation problem. The developed model is applied to an Asia-Europe-Oceania liner shipping network with a total of 46 ports and 11 ship routes. Results demonstrate that the problem could be solved efficiently and the optimized network reduces the total cost of the initial network considerably.
机译:集装箱班轮运输公司仅部分更改其运输网络以应对不断变化的需求,而不是完全重新设计和更改网络。根据实践,本文提出了一种基于分段的有趣思想的最优集装箱班轮运输网络变更问题,该分段是从顶部端口到尾部端口的一条腿序列,同一类型的船舶访问该分支的次数超过一次在现有的运输网络中。在基于网段的网络更改中,网段是完整无缺的,并且相同类型的船舶和相同的先前端口访问每个端口。结果,设计的网络在实施之前需要进行最少的修改。针对所提出的基于分段的班轮运输网络交替问题,开发了具有多项式变量的混合整数线性规划模型。所开发的模型应用于总共46个港口和11条航线的亚欧大洋洲班轮运输网络。结果表明,该问题可以得到有效解决,优化后的网络可以大大降低初始网络的总成本。

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