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Integrating Fleet Deployment into the Liner Shipping Cargo Allocation Problem

机译:将舰队部署纳入班轮运输货物分配问题

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Liner carriers change their network on a regular basis, and they are therefore interested in a practical evaluation of the impact these changes have on the cargo flows in their networks. Despite great advancements in the practical applicability of network evaluators in recent years, vessel deployment continues to be considered as an input into the problem, rather than a decision. In this paper, we propose an extension of a state-of-the-art mixed-integer programming model for the LSCAP that incorporates the optimization of vessel count and vessel classes for each service. We perform a computational analysis on liner shipping networks of different sizes and compare our optimized results to fixed deployment scenarios. By integrating fleet deployment decisions into the cargo allocation problem, liner carriers can increase the profitability of their networks by at least 2.8 to 16.9% and greatly enhance their decision making.
机译:班轮运输公司会定期更改其网络,因此,他们希望对这些更改对其网络中的货物流产生的影响进行实际评估。尽管近年来网络评估人员的实用性有了很大的进步,但船舶部署仍然被认为是问题的输入,而不是决定。在本文中,我们提出了针对LSCAP的最新混合整数编程模型的扩展,该模型结合了每种服务的船只数量和船只类别的优化。我们对不同规模的班轮运输网络进行计算分析,并将我们的优化结果与固定部署方案进行比较。通过将机队部署决策整合到货物分配问题中,班轮运输公司可以将其网络的盈利能力至少提高2.8%至16.9%,并大大提高他们的决策能力。

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