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A multi-commodity network flow model for railway capacity optimization in case of line blockage

机译:线路阻塞时用于铁路运力优化的多商品网络流量模型

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摘要

In this study, a multi-commodity network flow model is proposed to optimize the railroad capacity under temporary line blockage. The proposed model enables the assessment of residual railroad capacity under heterogeneous traffic condition. The model searches for an optimized train timetable to maximize the number of possible train paths by maintaining acceptable percentages of delayed trains. Computational experiments are conducted on instances of Iran railway to evaluate the performance of the model regarding computational efficiency and solution quality. The outcomes demonstrate an average optimality gap of about 3.7% which quantifies the effectiveness of the optimization model within a reasonable computational time. The output of the optimization model has been compared with the UIC406 (International Union of Railway) standard. The proposed optimization model could generate a more realistic solution in comparison with UIC406 method. According to the obtained result, the maximum capacity of the rail line increases by approximately 26.7% compared with UIC 406 code.
机译:在这项研究中,提出了一种多商品网络流量模型来优化临时线路阻塞情况下的铁路通行能力。提出的模型能够评估异构交通条件下的剩余铁路通行能力。该模型搜索优化的火车时刻表,以通过保持可接受的延迟火车百分比来最大化可能的火车路径数量。在伊朗铁路实例上进行了计算实验,以评估该模型在计算效率和解决方案质量方面的性能。结果表明,平均最佳差异约为3.7%,这可以在合理的计算时间内量化优化模型的有效性。优化模型的输出已与UIC406(国际铁路联盟)标准进行了比较。与UIC406方法相比,所提出的优化模型可以产生更现实的解决方案。根据获得的结果,与UIC 406代码相比,铁路线的最大容量增加了大约26.7%。

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