Periodic timetabling with integrated track choice for railway construction sites

Berenike Masing , Niels Lindner , Christian Liebchen
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引用次数: 3

Abstract

We propose a mixed-integer linear programming model to generate and optimize periodic timetables with integrated track choice in the context of railway construction sites. When a section of a railway network becomes unavailable, the nearby areas are typically operated close to their capacity limits, and hence carefully modeling headways and allowing flexible routings becomes vital. We therefore discuss first how to integrate headway constraints into the Periodic Event Scheduling Problem (PESP) that do not only prevent overtaking, but also guarantee conflict-free timetables in general and particularly inside stations. Secondly, we introduce a turn-sensitive event-activity network, which is able to integrate routing alternatives for turnarounds at stations, e.g., turning at a platform vs. at a pocket track for metro-like systems. We propose several model formulations to include track choice, and finally evaluate them on six real construction site scenarios on the S-Bahn Berlin network.

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铁路施工现场综合轨道选择的定期调度
我们提出了一个混合整数线性规划模型,以在铁路施工现场的背景下生成和优化具有综合轨道选择的周期性时间表。当铁路网的一段变得不可用时,附近地区的运营通常接近其容量限制,因此仔细建模车头时距并允许灵活的路线选择变得至关重要。因此,我们首先讨论了如何将车头时距约束集成到周期性事件调度问题(PESP)中,该问题不仅可以防止超车,而且可以保证一般情况下,特别是车站内的无冲突时间表。其次,我们引入了一个转弯敏感事件活动网络,该网络能够集成车站转弯的路线选择,例如,对于类似地铁的系统,在站台转弯与在口袋轨道转弯。我们提出了几个包括轨道选择的模型公式,并最终在S-Bahn Berlin网络的六个实际施工现场场景中对其进行了评估。
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来源期刊
CiteScore
7.10
自引率
8.10%
发文量
41
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