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Tramp ship routing and scheduling with integrated bunker optimization

机译:具有集成Bunker优化的Tramp ship路由和调度

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摘要

A tramp ship operator typically has some contracted cargoes that must be carried and seeks to maximize prot by carrying optional cargoes. Hence, tramp ships operate much like taxies following available cargoes and not according to a fixed route network and itinerary as liner ships. Marine fuel is referred to as bunker and bunker costs constitute a significant part of the daily operating costs. There can be great variations in bunker prices across bunker ports so it is important to carefully plan bunkering for each ship. As ships operate 24 hours a day, they must refuel during operations. Therefore, route and schedule decisions affect the options for bunkering. Current practice is, however, to separate the two planning problems by first constructing fleet schedules and then plan bunkering for these fixed schedules. In this paper we explore the effects of integrating bunker planning in the routing and scheduling phase and present a mixed integer programming formulation for the integrated problem of optimally routing, scheduling and bunkering a tramp fleet. Aside from the integration of bunker, this model also extends standard tramp formulations by using load dependent costs, speed and bunker consumption. We devise a solution method based on column generation with a dynamic programming algorithm to generate columns. The method is heuristic mainly due to a discretization of the continuous bunker purchase variables. We show that the integrated planning approach can increase prots and that the decision of which cargoes to carry and on which ships is affected by the bunker integration and by changes in the bunker prices.
机译:流浪船经营者通常必须承运一些承包货物,并试图通过承运可选货物来最大化利润。因此,流浪船的运行很像滑行,跟随着可用的货物,而不是按照固定航线网络和行程作为班轮船。船用燃料被称为燃料,燃料成本占日常运营成本的很大一部分。各个掩体港口的掩体价格可能会有很大的差异,因此仔细计划每艘船的掩体非常重要。由于船舶一天24小时不间断运行,因此在运行过程中必须加油。因此,路线和时间表的决定会影响加油的选择。但是,当前的做法是通过首先构建机队时间表,然后为这些固定时间表计划加油来分离这两个计划问题。在本文中,我们探讨了在航路和调度阶段集成掩体规划的影响,并针对混合流水线舰队的最佳路由,调度和掩体掩护提出了混合整数规划公式。除了集成燃油,该模型还通过使用依赖于负载的成本,速度和燃油消耗来扩展标准的流浪汉配方。我们设计了一种基于列生成的解决方案,并使用动态编程算法来生成列。该方法是启发式的,主要是由于连续地堡购买变量的离散化。我们表明,综合计划方法可以增加收益,而燃油的整合和燃油价格的变化会影响到哪些货物运载和哪些船舶的决定。

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