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Supporting tools for automated timetable planning

机译:支持自动时间表规划的工具

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摘要

To satisfy the growing demand in railway transportation, infrastructure managers have the necessity to design more effective timetables. To this aim it is necessary to rely on automatic timetabling support tools that can provide feasible timetables with improved performance. In this paper we propose a hierarchical framework for timetable design that includes a microscopic, mesoscopic and macroscopic model of the network. These three models interact with each other in a closed-loop in order to generate an optimal timetable that is feasible at the level of track detection sections. An iterative adjustment of train running and minimum headway times is performed in the framework which stops when a feasible timetable is generated. Different from the other approaches in literature, this framework always guarantees timetable feasibility. Additional timetable performance is also realized in terms of stability, robustness, and energy efficiency. The application to an area of the Dutch railway network shows the ability of the framework in checking the feasibility of a timetable and evaluating its stability by determining the corresponding capacity occupation. In this sense practitioners can use this framework either for effective timetabling and post-evaluation of existing timetables.
机译:为了满足铁路运输中不断增长的需求,基础设施管理人员必须设计更有效的时间表。为此目的,有必要依靠自动时间表支持工具,可以提供具有改进性能的可行时间表。在本文中,我们向时间表设计提出了一种分层框架,其包括网络的显微镜,介观和宏观模型。这三个模型在闭环中彼此相互作用,以产生在轨道检测部分的水平下可行的最佳时间表。在框架中执行列车运行和最小头路时间的迭代调整,该框架在生成可行的时间表时停止。与文献中的其他方法不同,此框架总是保证时间表可行性。在稳定性,稳健性和能效方面也实现了额外的时间表性能。在荷兰铁路网络的一个区域的应用显示框架在检查时间表的可行性以及通过确定相应的容量占用来评估其稳定性的能力。在这个义务中,从业者可以使用此框架来实现现有时间表的有效时间表和后期评估。

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