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首页> 外文期刊>European Journal of Operational Research >The Vessel Schedule Recovery Problem (VSRP) - A MIP model for handling disruptions in liner shipping
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The Vessel Schedule Recovery Problem (VSRP) - A MIP model for handling disruptions in liner shipping

机译:船期恢复问题(VSRP)-用于处理班轮运输中断的MIP模型

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Containerized transport by liner shipping companies is a multi billion dollar industry carrying a major part of the world trade between suppliers and customers. The liner shipping industry has come under stress in the last few years due to the economic crisis, increasing fuel costs, and capacity outgrowing demand. The push to reduce CO _2 emissions and costs have increasingly committed liner shipping to slow-steaming policies. This increased focus on fuel consumption, has illuminated the huge impacts of operational disruptions in liner shipping on both costs and delayed cargo. Disruptions can occur due to adverse weather conditions, port contingencies, and many other issues. A common scenario for recovering a schedule is to either increase the speed at the cost of a significant increase in the fuel consumption or delaying cargo. Advanced recovery options might exist by swapping two port calls or even omitting one. We present the Vessel Schedule Recovery Problem (VSRP) to evaluate a given disruption scenario and to select a recovery action balancing the trade off between increased bunker consumption and the impact on cargo in the remaining network and the customer service level. It is proven that the VSRP is NP-hard. The model is applied to four real life cases from Maersk Line and results are achieved in less than 5 seconds with solutions comparable or superior to those chosen by operations managers in real life. Cost savings of up to 58% may be achieved by the suggested solutions compared to realized recoveries of the real life cases.
机译:班轮运输公司的集装箱运输是一个价值数十亿美元的行业,在供应商和客户之间的世界贸易中占很大一部分。过去几年,由于经济危机,燃油成本增加和运力需求增长,班轮运输业一直承受着压力。减少CO _2排放和成本的努力已越来越多地将班轮运输承诺为慢蒸政策。对燃油消耗的日益关注,已经阐明了班轮运输业务中断对成本和延迟货运的巨大影响。由于恶劣的天气条件,港口突发事件和许多其他问题,可能会发生中断。恢复时间表的常见方案是要么以大幅增加燃油消耗为代价提高速度,要么延迟货运。通过交换两个端口调用甚至省略一个端口调用,可能存在高级恢复选项。我们提出了“船舶时间表恢复问题(VSRP)”,以评估给定的中断情况,并选择一种恢复措施,在增加的燃油消耗以及对剩余网络和客户服务水平的货物影响之间进行权衡。事实证明,VSRP是NP硬式的。该模型被应用于马士基航运公司的四个实际案例,并在不到5秒钟的时间内获得了与现实中运营经理选择的解决方案相当或更高的解决方案。与实际案例的实际恢复相比,通过建议的解决方案可以节省多达58%的成本。

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