具有可扩展耦合/解耦机制的繁忙火车站列车路线调度低级建模

Q. Dang, T. Bourdeaud'huy, K. Mesghouni, A. Toguyéni
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引用次数: 2

摘要

摘要:本文研究了繁忙火车站的列车路线和调度问题。列车路线问题是给每列火车分配一条通过火车站和车站站台的路线。列车调度问题是确定所有列车在指定的列车路线上的时间和排序计划。我们的目标是让列车在接近饱和的密集地区行驶。与传统方法分配所有资源为列车设置路线直到路线被释放不同,我们的工作侧重于列车通过铁路节点时的资源使用。这种技术允许在一个铁路节点上同时路由更多的列车,从而降低了它们的电流饱和。在本文中,我们考虑列车可以耦合或解耦,并且列车可以不停靠任何站台而通过火车站。为了解决这一问题,本文提出了一个抽象模型和一个混合整数线性规划公式。通过一个教学实例说明了该方法。
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Low-Level Modeling for Routing and Scheduling Trains through Busy Railway Stations with Expandable Coupling/Decoupling Mechanism
Abstract—This paper studies train routing and scheduling problem for busy railway stations. The train routing problem is to assign each train to a route through the railway station and to a platform in the station. The train scheduling problem is to determine timing and ordering plans for all trains on the assigned train routes. Our objective is to allow trains to be routed in dense areas that are reaching saturation. Unlike traditional methods that allocate all resources to setup a route for a train until the route is freed, our work focuses on the use of resources as trains progress through the railway node. This technique allows a larger number of trains to be routed simultaneously in a railway node and thus reduces their current saturation. In this paper, we consider that trains can be coupled or decoupled and trains can pass through the railway station without stopping at any platform. To deal with this problem, this study proposes an abstract model and a mixed-integer linear programming formulation to solve it. The method is illustrated on a didactic example.
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