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How to Park Freight Trains on Rail-Rail Transshipment Yards: The Train Location Problem

机译:如何在铁路轨道转运场上停放货运列车:列车位置问题

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摘要

In modern rail-rail transshipment yards huge gantry cranes spanning all railway tracks allow for an efficent transshipment of containers between different freight trains. This way, multiple trains loaded with cargo for varying destinations can be consolidated to a reduced number of homogeneous trains, which is an essential requirement of hub-and-spoke railway systems. An important problem during the daily operations of such a transshipment yard is the train location problem, which assigns each train of a given pulse to a railway track (vertical position) and decides on each train's parking position on the track (horizontal position), so that the distances of container movements are minimized and the overall workload is equally shared among cranes. For this problem a mathematical model is presented, different heuristic solution procedures are described and tested in a comprehensive computational study. The results show that our procedures allow for a remarkable reduction of train processing time compared to typical real-world train location policies.
机译:在现代的铁路转运场中,跨越所有铁路轨道的大型龙门起重机可以在不同的货运列车之间高效地进行集装箱转运。这样,可以将装载有用于不同目的地的货物的多列火车合并为减少数量的同类火车,这是轮辐铁路系统的基本要求。在这样的转运场的日常运行中,一个重要的问题是火车的位置问题,该问题将给定脉冲的每列火车分配到一条铁路轨道(垂直位置),并确定每条火车在轨道上的停放位置(水平位置),因此使得集装箱移动的距离最小化,并且起重机之间的工作量平均分配。针对这个问题,提出了一个数学模型,描述了不同的启发式求解程序,并在综合计算研究中对其进行了测试。结果表明,与典型的现实世界中的火车位置策略相比,我们的程序可以大大减少火车的处理时间。

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