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An optimization model for line planning and timetabling in automated urban metro subway networks. A case study

机译:用于城市自动地铁网络中线路规划和时间表的优化模型。案例研究

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In this paper we present a Mixed Integer Linear Programming model that we developed as part of a pilot study requested by the R&D company METROLAB (R) in order to design tools for finding solutions for line planning and timetable situations in automated urban metro subway networks. Our model incorporates important factors in public transportation systems from both, a cost-oriented and a passenger-oriented perspective, as time-dependent demands, interchange stations, short-turns and technical features of the trains in use. The incoming flows of passengers are modeled by means of piecewise linear demand functions which are parameterized in terms of arrival rates and bulk arrivals. Decisions about frequencies, train capacities, short-turning and timetables for a given planning horizon are jointly integrated to be optimized in our model. Finally, a novel matheuristic approach is proposed to solve the problem. The results of extensive computational experiments are reported to show its applicability and effectiveness to handle real-world subway networks. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了混合整数线性规划模型,该模型是应研发公司METROLAB(R)要求进行的一项初步研究的一部分,旨在设计工具来寻找用于解决城市地铁地铁网络中线路规划和时间表问题的解决方案。我们的模型从成本导向和乘客导向两个角度考虑了公共交通系统中的重要因素,这些因素包括时效性需求,换乘站,转弯和所用列车的技术特性。旅客的来往流量是通过分段线性需求函数建模的,该函数按到达率和批量到达进行参数化。在给定的计划范围内,关于频率,列车容量,转弯时间和时间表的决策将整合在一起,以在我们的模型中进行优化。最后,提出了一种新颖的数学方法来解决该问题。据报道,大量的计算实验结果表明它在处理现实世界的地铁网络中的适用性和有效性。 (C)2019 Elsevier Ltd.保留所有权利。

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