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Continuous Approximation for Skip-Stop Operation in Rail Transit

机译:轨道交通中的跳停操作的连续逼近

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Operating speed of a transit corridor is a key characteristic and has many consequences on its performance. It is generally accepted that an increased operating speed for a given fleet leads to reduced operating costs (per kilometer), travel and waiting times (three changes that can be computed precisely), an improved comfort and level of service, which can attract new passengers who are diverted from automobile (items harder to estimate precisely). That is why several operation schemes which aim to increase the operating speed are studied in the literature, such as deadheading, express services, stop skipping, etc. A novel category of solutions to this problem for one-way single-track rail transit is to perform accelerated transit operations with fixed stopping schedules. The concept is quite simple: as the time required for stopping at each station is an important part of travel time, reducing it would be a great achievement. Particular operations that take advantage of this idea already exist. This paper focuses on one of them: the skip-stop operation for rail transit lines using a single one-way track. It consists in defining three types of stations: AB stations where all the trains stop, and A and B stations where only half of the trains stop (stations type A and B are allocated interchangeably). This mode of operation is already described in the literature and has been successfully implemented in the Metro system of Santiago, Chile. This work tackles the problem with a continuous approximation approach. The problem is described with a set of geographically dependent continuous parameters like the density of stations for a given line. Cost functions are built for a traditional (all-stop) operation and for skip-stop operation as described above. A simple example is presented to support this discussion. Finally, a discussion about the type of scenarios in which skip-stop operations are more beneficial is presented.
机译:过境走廊的运行速度是关键特性,对其性能有很多影响。人们普遍接受的是,给定机队的更高运行速度会降低运营成本(每公里),旅行和等待时间(可以精确计算出三个变化),更高的舒适度和服务水平,从而可以吸引新乘客从汽车改行的人(很难精确估算的项目)。这就是为什么在文献中研究了几种旨在提高运行速度的运行方案的方法,例如无人驾驶,快递服务,停站等。单向单轨铁路运输解决这一问题的一种新颖方法是:以固定的停车时间表执行加速的公交运营。这个概念很简单:因为在每个车站停车所需的时间是旅行时间的重要组成部分,因此减少停车时间将是一项巨大的成就。利用这种思想的特殊操作已经存在。本文重点介绍其中之一:使用单向轨道的铁路运输线路的跳停操作。它由定义三种类型的站点组成:AB站点,所有火车都在此停止; A和B站点,其中只有一半的火车在此停止(A和B类型的站点是可互换分配的)。在文献中已经描述了这种操作模式,并且已经在智利圣地亚哥的地铁系统中成功实现了这种操作模式。这项工作采用连续逼近方法解决了这个问题。使用一组与地理位置相关的连续参数(例如给定线路的站点密度)来描述该问题。如上所述,成本函数是为传统(全停)操作和跳过停操作而构建的。给出了一个简单的示例来支持此讨论。最后,提出了一种有关跳过停止操作更有益的方案类型的讨论。

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