城市轨道交通车辆优化利用模型与算法研究

Wenrong Wang, Y. Yue, Mingxin Li
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引用次数: 0

摘要

近年来,中国各大城市轨道交通的快速发展,对轨道车辆资源的需求日益增加。因此,优化车辆调度计划,提高车辆利用效率,既是优化交通资源配置的关键,也是提高城市轨道交通服务水平的重要组成部分。本文总结了车辆调度计划的基本原理,将该问题建模为多车辆段车辆路线问题。考虑中国轨道交通车辆的连接状况和双周维修情况,建立了以连接时间和维修费用最小为目标的轨道交通车辆调度优化模型。然后设计了一种基于最大最小蚁群系统(MMAS)的求解算法。以北京地铁5号线为例,得到了具有双周维修约束的车辆调度方案,并验证了该模型和MMAS算法的实用性和有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Optimal Utilization Model and Algorithm of Urban Rail Transit Rolling Stock
In recent years, the rapidly development of urban rail transit (URT) in many metropolises of China makes the increasing demand for rolling stock resources. Therefore, optimizing rolling stock scheduling plan and increasing rolling stock utilization efficiency are not only the key to optimize the distribution of transport resources, but also an important part of improving the urban rail transit service level. This paper summarizes the principles of rolling stock scheduling plan, modeling this problem into a multi-depot vehicle routing problem (MDVRP). Considering the connection condition and biweekly maintenance of URT rolling stock in China, a new rolling stock scheduling optimization model with the goal of minimum connection time and maintenance cost was established. Then a solution algorithm was designed based on the Maximum and Minimum Ant System (MMAS). Taking the No. 5 line of Beijing Metro as an example, the rolling stock scheduling plan with biweekly maintenance constraints was obtained, and the practicality and effectiveness of this model and MMAS algorithm was proved.
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