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Optimization of Classification Track Assignment Considering Block Sequence at Train Marshaling Yard

机译:考虑列车编组场顺序的路段分配优化

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An operational process at train marshaling yard is considered in this study. The inbound trains are decoupled and disassembled into individual railcars, which are then moved to a series of classification tracks, forming outbound trains after being assembled and coupled. We focus on the allocation plan of the classification tracks. Given are the disassembling and assembling sequence, the railcars connection plan, and a number of classification tracks. Output is the assignment of the railcars to the classification tracks. An integer programming model is proposed, aimed at reducing the number of coupling operations, as well as the number of dirty tracks which is related to the rehumping operation, and the order of the railcars on the outbound train must satisfy the block sequence. Tabu algorithm is designed to solve the problem, and the model is also tested by CPLEX in comparison. A numerical experiment based on a real-world case is analyzed, and the result can be reached within a reasonable amount of time. We also discussed a number of factors that may affect the track assignment and gave suggestions for the real-world case.
机译:这项研究考虑了在列车编组站的操作过程。将入站火车解耦并分解成单独的有轨车,然后将它们移至一系列分类轨道,在组装和耦合后形成出站火车。我们专注于分类轨道的分配计划。给出了拆卸和组装顺序,有轨电车的连接计划以及许多分类轨道。输出是有轨电车到分类轨道的分配。提出了一种整数规划模型,旨在减少耦合操作的数量以及与回弹操作相关的脏轨的数量,并且出站列车上的有轨电车的顺序必须满足程序块顺序。设计了禁忌算法来解决该问题,并且CPLEX还对该模型进行了比较测试。分析了基于实际案例的数值实验,并且可以在合理的时间内获得结果。我们还讨论了可能影响轨道分配的许多因素,并针对实际情况提供了建议。

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