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首页> 外文期刊>Transportation Research Part B: Methodological >Integrated timetable rescheduling and passenger reassignment during railway disruptions
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Integrated timetable rescheduling and passenger reassignment during railway disruptions

机译:铁路中断期间集成的时间表重新安排和乘客重新分配

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摘要

During railway disruptions, most passengers may not be able to find preferred alternative train services due to the current way of handling disruptions that does not take passenger responses into account. To offer better alternatives to passengers, this paper proposes a novel passenger-oriented timetable rescheduling model, which integrates timetable rescheduling and passenger reassignment into a Mixed Integer Linear Programming model with the objective of minimizing generalized travel times: in-vehicle times, waiting times at origin/transfer stations and the number of transfers. The model applies the dispatching measures of re-timing, re-ordering, cancelling, flexible stopping and flexible short-turning trains, handles rolling stock circulations at both short-turning and terminal stations of trains, and takes station capacity into account. To solve the model efficiently, an Adapted Fix-and-Optimize (AFaO) algorithm is developed. Numerical experiments were carried out to a part of the Dutch railways. The results show that the proposed passenger-oriented timetable rescheduling model is able to shorten generalized travel times significantly compared to an operator-oriented timetable rescheduling model that does not consider passenger responses. By allowing only 10 min more train delay than an optimal operator-oriented rescheduling solution, the passenger-oriented model is able to shorten the generalized travel times over all passengers by thousands of minutes in all considered disruption scenarios. With a passenger-oriented rescheduled timetable, more passengers continue their train travels after a disruption started, compared to a rescheduled timetable from the operator-oriented model. The AFaO algorithm obtains high-quality solutions to the passenger-oriented model in up to 300 s. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:在铁路中断期间,大多数乘客可能无法找到首选的替代列车服务,因为目前的处理中断的方式不考虑到乘客应对的扰动。本文为乘客提供更好的替代品,提出了一种新的乘客导向时间表重新安排模型,其将时间表重新安排和乘客重新分配集成到混合整数线性编程模型中,目的是最小化广义旅行时间:车载时间,等待时间起源/转移站和转移的数量。该模型应用重新定时,重新订购,取消,灵活停止和灵活的短路列车的调度措施,在列车的短路和终端站处理滚动股票环节,并考虑到站点的驻地容量。为了有效地解决模型,开发了一种适应的修复和优化(AFAO)算法。对荷兰铁路的一部分进行数值实验。结果表明,所提出的乘客的时间表重新安排模型能够与不考虑乘客反应的操作员的时间表重新安排模型相比,缩短广义旅行时间。通过仅允许10分钟的火车延迟而不是最佳的操作员的重新安排解决方案,乘客导向的模型能够在所有被认为的中断场景中通过数千分钟缩短所有乘客的广义旅行时间。与乘客导向的重新安排时间表,更多的乘客在中断开始后继续他们的火车行进,与来自操作员为导向的模型的重新安排的时间表相比。 AFAO算法为高达300秒的乘客型模型获得高质量解决方案。 (c)2020提交人。 elsevier有限公司出版

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