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Optimization of single-line bus timetables considering time-dependent travel times: A case study of Beijing, China

机译:考虑时间依赖旅行时间的单线总线时间表优化:以北京,中国为例

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摘要

Bus timetables play an important role in improving the level of service and reducing operations costs of a bus transit system. Without dedicated bus lanes, bus travel times, which are important input data for bus timetabling, are usually time-dependent due to recurrent traffic congestion. However, few studies on bus timetabling have explicitly considered such travel time time-dependency in creating timetables. This paper addresses the problem of how to optimally modify an existing single-line bus timetable by slightly shifting vehicle departure times at the departure terminal and holding vehicles at other stops taking into account time-dependent travel times. The problem is mathematically formulated as a nonlinear programming model. According to the special structure and properties of the model, a derivative-free constrained compass search algorithm with revised step-size updating rule is applied to solve it. A case study of a bus line in Beijing, China is conducted to demonstrate the effectiveness and efficiency of the proposed model and solution algorithm. The case study results show that by utilizing the proposed methodology the optimized bus timetable can significantly reduce the total passenger travel time and improve ridership comfort, while rarely increasing the average vehicle cycle time. This study offers a promising and practical methodology for optimizing single-line bus service taking into account time-dependent travel times.
机译:总线时间表在提高服务水平和降低总线运输系统的运营成本方面发挥着重要作用。没有专用的公共汽车车道,总线旅行时间,这是总线时间表的重要输入数据,通常由于经常性的交通拥堵而受到时间。但是,很少有关于总线时间表的研究已经明确地考虑了创建时间表的这种行程时间依赖性。本文解决了如何通过在出发终端的略微移位车辆出发时间并在其他停止的时间依赖于时间依赖的旅行时间来解决现有单线总线时间表的问题。问题在数学上配制为非线性编程模型。根据模型的特殊结构和属性,应用了一个无衍生的约束罗盘搜索算法,并应用了修改的阶梯大小更新规则来解决它。中国北京公交线路的案例研究展示了拟议模型和解决方案算法的有效性和效率。案例研究结果表明,利用所提出的方法,优化的总线时间表可以显着减少总客车的时间,并提高乘客舒适,同时很少增加平均车辆周期时间。本研究提供了优化单线巴士服务的有前途和实用的方法,以考虑时间依赖的旅行时间。

著录项

  • 来源
    《Computers & Industrial Engineering》 |2021年第8期|107444.1-107444.15|共15页
  • 作者单位

    Key Laboratory of Transport Industry of Big Data Application Technologies for Comprehensive Transport Ministry of Transport Beijing Jiaotong University Beijing 100044 China;

    Key Laboratory of Transport Industry of Big Data Application Technologies for Comprehensive Transport Ministry of Transport Beijing Jiaotong University Beijing 100044 China;

    National Engineering Laboratory of Integrated Transportation Big Data Application Technology School of Transportation and Logistics Southwest Jiaotong University Chengdu 611756 China;

    China TransInfo Technology Co. Ltd. Beijing 100085 China;

    Key Laboratory of Transport Industry of Big Data Application Technologies for Comprehensive Transport Ministry of Transport Beijing Jiaotong University Beijing 100044 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Public transport; Bus timetabling; Time-dependent travel time; Multi-objective optimization; Compass search algorithm;

    机译:公共交通;总线时间表;时间依赖的旅行时间;多目标优化;罗盘搜索算法;

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