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Designing alternative railway timetables under infrastructure maintenance possessions

机译:在基础设施维护权下设计替代铁路时间表

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摘要

Increasing supply in railway networks comes at the cost of an increased need for infrastructure maintenance. This also means adjusting the timetable due to long maintenance or constructions' possessions. In this article, we introduce the Train Timetable Adjustment Problem (TTAP), which for given station and open-track possessions, finds an alternative timetable that minimizes the deviation from the original timetable. We propose a mixed integer linear programming (MILP) model for solving TTAP, and apply retiming, reordering, short-turning and cancellation to generate alternative timetables. The model represents an extended periodic event scheduling problem (PESP) formulation and introduces new constraints for cancelling and retiming train lines, while short-turning is being applied in a preprocessing step. In order to solve larger and more complex instances, we use a row generation approach to add station capacity constraints. The model solves real-life instances with multiple possessions for a large area of the Dutch railway network in reasonable time, and could be up-scaled to the complete Dutch network. Additionally, it may be applicable for disruption management after some modifications. Operators and infrastructure managers could use it to automatically generate optimal alternative timetables on the macroscopic level in case of maintenance or construction works and thus, coordinate traffic for the complete network. (C) 2017 Elsevier Ltd. All rights reserved.
机译:铁路网络供应的增加是以对基础设施维护的需求增加为代价的。这也意味着由于长期维护或拥有建筑而调整时间表。在本文中,我们介绍了火车时刻表调整问题(TTAP),该问题对于给定的车站和露天轨道拥有者,找到了一种替代性的时刻表,该时刻表使与原始时刻表的偏差最小化。我们提出用于解决TTAP的混合整数线性规划(MILP)模型,并应用重新定时,重新排序,短转和取消来生成替代时间表。该模型代表了扩展的周期性事件调度问题(PESP)公式,并引入了取消和重定时列车路线的新约束,同时在预处理步骤中应用了短弯。为了解决更大和更复杂的实例,我们使用行生成方法来添加站点容量约束。该模型可以在合理的时间内解决荷兰铁路网大面积拥有多个资产的现实情况,并且可以扩展到完整的荷兰网络。此外,在进行一些修改后,它可能适用于中断管理。运营商和基础设施经理可以使用它在维护或建筑工程的情况下自动在宏观级别上生成最佳替代时间表,从而协调整个网络的流量。 (C)2017 Elsevier Ltd.保留所有权利。

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