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An analysis of double-track railway line capacity

机译:复线铁路通行能力分析

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In Sweden, rail traffic is almost never separated according to speed. On several double-track lines the mix of heavy freight, regional and high speed trains imposes severe capacity problems. In order to evaluate the capacity for different traffic mixes, a combinatorial model - Timetable Variant Evaluation Model (TVEM) - has been developed. In this model both infrastructure and timetable are modelled as variables. Traffic is divided into train patterns according to a presumed regular timetable and then scheduled systematically in different time locations. The timetable variants are evaluated with regard to: mean values of capacity that give the number of trains/hr for the required mix, variance measures that show how the capacity depends on the timetable and scheduled delays that show the extension of run times imposed by overtaking. The paper shows how the important distance between adjacent overtaking stations can be sampled from Weibull distributions. TVEM has been used to evaluate three different operational cases with mixed traffic. The analysis shows that the impact on capacity from the infrastructure increases with speed difference and frequency of operation for passenger trains, while the importance of the infrastructure decreases when traffic is more heterogeneous. The impact from the timetable is strongest when the speed differences are low and/or the frequency of passenger trains is low. Capacity loss due to increased speed differences can be compensated for by additional overtaking stations. The slower trains suffer from a considerable increase in scheduled delays when speed differences increase.
机译:在瑞典,铁路运输几乎永远不会根据速度分开。在多条双线铁路上,重货运,区域火车和高速火车的混合会带来严重的运力问题。为了评估不同流量混合的容量,已开发了组合模型-时间表变体评估模型(TVEM)。在此模型中,基础架构和时间表都被建模为变量。根据假定的定期时间表将交通划分为火车模式,然后在不同的时间位置系统地进行调度。对时间表的变化进行评估:能力平均值给出所需混合列车的列车数量/小时;方差度量表明能力如何取决于时间表;计划的延误表明超车导致的运行时间延长。本文显示了如何从威布尔分布中采样相邻超车站之间的重要距离。 TVEM已用于评估三种混合流量的不同运营案例。分析表明,基础设施对容量的影响随着旅客列车的速度差异和运行频率的增加而增加,而当交通更加多样化时,基础设施的重要性降低。当速度差较低和/或旅客列车的频率较低时,时间表的影响最大。速度差增加导致的容量损失可以通过额外的超车站来弥补。当速度差异增加时,速度较慢的火车的计划延误会大大增加。

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