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Integrated optimization of Rolling Stock and Crew Rescheduling for High Speed Railway

机译:高速铁路轧制及船员重新安排的综合优化

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The integrated rescheduling problem of rolling stock and crew for the high speed railway network is challenging, especially during the real-time disruption management process. In order to tackle this problem, an integer linear programming model is presented, based on a multi-commodity flow model, which integrates the rolling stock and crew rescheduling process. The objective of the integrated model is to minimize the difference between the adjusted and original schedule and reduce the cancellations of trips caused by the shortage of rolling stocks or crews. In case of disruptions, a customized ant colony algorithm is presented to solve the problem efficiently. We test our approach on an instance of Beijing-Shanghai high-speed railway line. The calculation results show that the optimal solution can be generated within a short computational time with little RAM consumption. By rescheduling the rolling stock and crew simultaneously, this work helps to effectively support real-time operation under strict time limitations.
机译:高速铁路网络轧制及船员的综合重新安排问题是具有挑战性的,特别是在实时中断管理过程中。为了解决这个问题,基于多商品流量模型来提出整数线性编程模型,该模型集成了滚动储备和船员重新安排过程。综合模型的目的是最大限度地减少调整和原始计划之间的差异,并减少由滚动股或船员短缺引起的旅行取消。在发生中断的情况下,提出了一种定制的蚁群算法以有效地解决问题。我们在北京 - 上海高速铁路线上的实例测试了我们的方法。计算结果表明,可以在短的计算时间内产生最佳解决方案,只需更少的RAM消耗。通过同时重新安排滚动储备和船员,这项工作有助于在严格的时间限制下有效地支持实时操作。

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