基于排队网络的铁路路网断面建模方法

IF 2.6 Q3 TRANSPORTATION
Alexander Kazakov, Anna Lempert, Maxim Zharkov
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引用次数: 0

摘要

本文致力于铁路网区段运营的研究和长期预测。我们把一个铁路网段称为几个相互作用的火车站和它们之间的线路。我们提出了一种基于排队理论的铁路网列车交通数学建模方法。由此产生的模型是对进入的列车交通和系统内运行的列车的一组数学描述。几个马尔可夫到达过程用于描述来自不同方向的列车到达。这样的描述可以考虑单独列车流的参数,这些参数取决于列车类别及其方向。所有节点都具有有限容量的排队网络模拟列车在系统中的移动。该数学装置使我们能够考虑铁路网的非线性结构、车站的运营特征、铁路线路的容量以及随机因素的影响。为了应用该方法,我们选择了两个在基础设施和列车流特性方面不同的对象。第一家位于俄罗斯东部,主要为货运列车提供服务。第二个位于德国,靠近比利时和荷兰边境。其特点是客运量占主导地位。我们构建数学模型并进行数值模拟。根据获得的结果,估计了最大允许载荷,并发现了运输系统结构中的瓶颈。此外,我们还就如何长期提高产能提出了一些建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An approach to railway network sections modeling based on queuing networks

The paper is devoted to the study and long-term forecasting of railway network sections operating. We call a railway network section a set of several railway stations interacting with each other and lines between them. We propose a methodology for mathematical modeling of train traffic on the railway network based on the queuing theory. The resulting models are a set of mathematical descriptions of the incoming train traffic and the train running within the system. Several Markovian Arrival Process are used to describe train arrivals from different directions. Such a description makes it possible to take into account the parameters of separate train flows, which depend on the category of trains and their directions. A queuing network in which all nodes have a finite capacity simulates the movement of trains through the system. This mathematical apparatus allows us to consider the nonlinear structure of the railway network, the operation features of stations, the capacity of railway lines, and the influence of random factors. To apply the methodology, we have chosen two objects that differ in infrastructure and properties of train flows. The first is located in the east of Russia and focused on servicing freight trains. The second is located in Germany, close to Belgium and The Netherlands borders. It is characterized by the predominance of passenger traffic. We construct mathematical models and perform numerical simulations. Based on the results obtained, the maximum allowable load is estimated, and bottlenecks in the structure of transport systems are found. Besides, we give some recommendations on how to increase capacity in the long term.

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来源期刊
CiteScore
7.10
自引率
8.10%
发文量
41
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