排
火车
调度(生产过程)
线性化
交通拥挤
运输工程
计算机科学
北京
工程类
运筹学
模拟
非线性系统
人工智能
控制(管理)
地理
法学
中国
物理
量子力学
地图学
运营管理
政治学
作者
Simin Chai,Jiateng Yin,Andrea D’Ariano,Marcella Samà,Tao Tang
标识
DOI:10.1177/03611981221109175
摘要
In recent years the concept of virtual coupling, where multiple train units are virtually coupled into a platoon with very short following distances, has received considerable attention in the railway transportation field. This study introduces this concept into the train scheduling problem to improve line capacity and reduce congestion in urban metro networks. With consideration of the time-dependent passenger demand, train (platoon) loading capacity, and limited rolling stock resources, specifically, a mixed integer linear programming model is developed to simultaneously generate the platoon (de)coupling strategies, orders of trains, and their arrival/departure times at each station in the metro network. Several model improvement strategies, for example, model linearization and determination of big-[Formula: see text] values, are proposed to enhance the computational efficiency of the model. Finally, numerical experiments based on historical passenger data from the Beijing metro network are implemented to verify the effectiveness of the approach. The results demonstrate that the introduction of train platoons of different sizes can evidently reduce station congestion, while the percentage improvement greatly depends on the distribution of passenger demand.
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