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Integration of Timetable Planning and Rolling Stock in Rapid Transit Networks

机译:快速公交网络中的时间表计划和机车车辆的集成

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摘要

The aim of this paper is to propose an integrated planning model to adequate the offered capacity and system frequencies to attend the increased passenger demand and traffic congestion around urban and suburban areas. The railway capacity is studied in line planning, however, these planned frequencies were obtained without accounting for rolling stock flows through the rapid transit network.ududIn order to provide the problem more freedom to decide rolling stock flows and therefore better adjusting these flows to passenger demand, a new integrated model is proposed, where frequencies are readjusted. Then, the railway timetable and rolling stock assignment are also calculated, where shunting operations are taken into account. These operations may sometimes malfunction, causing localized incidents that could propagate throughout the entire network due to cascading effects. This type of operations will be penalized with the goal of selectively avoiding them and ameliorating their high malfunction probabilities. Swapping operations will also be ensured using homogeneous rolling stock material and ensuring parkings in strategic stations.ududWe illustrate our model using computational experiments drawn from RENFE (the main Spanish operator of suburban passenger trains) in Madrid, Spain. The results show that through this integrated approach a greater robustness degree can be obtained
机译:本文的目的是提出一种综合规划模型,以适应所提供的容量和系统频率,以应对城市和郊区日益增长的乘客需求和交通拥堵。铁路容量是在线路规划中研究的,但是,这些规划的频率是在不考虑通过快速运输网络的机车车辆流量的情况下获得的。 ud ud为了提供更大的自由度来决定机车车辆流量并因此更好地调整这些流量针对乘客需求,提出了一种新的集成模型,其中对频率进行了调整。然后,还计算了铁路时刻表和机车车辆分配,其中考虑了调车作业。这些操作有时可能会发生故障,导致局部事件,由于级联效应,这些事件可能会在整个网络中传播。此类操作将受到惩罚,其目的是有选择地避免操作并改善其高故障率。 ud ud我们将使用来自西班牙马德里的RENFE(西班牙主要的郊区客运列车运营商)得出的计算实验来说明我们的模型。结果表明,通过这种集成方法可以获得更高的鲁棒性。

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