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Multiobjective Optimal Formulations for Bus Fleet Size of Public Transit under Headway-Based Holding Control

机译:公共交通公交车队总线大型持有控制的多目标最优配方

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摘要

In recent years, with the development of advanced technologies for data collection, real-time bus control strategies have been implemented to improve the daily operation of transit systems, especially headway-based holding control which is a proven strategy to reduce bus bunching and improve service reliability for high-frequency bus routes, with the concept of regulating headways between successive buses. This hot topic has inspired the reconsideration of the traditional issue of fleet size optimization and the integrated bus holding control strategy. The traditional headway-based control method only focused on the regulation of bus headways, without considering the number of buses on the route. The number of buses is usually assumed as a given in advance and the task of the control method is to regulate the headways between successive buses. They did not consider the bus fleet size problem integrated with headway-based holding control method. Therefore, this work has presented a set of optimal control formulations to minimize the costs for the passengers and the bus company through calculating the optimal number of buses and the dynamic holding time, taking into account the randomness of passenger arrivals. A set of equations were formulated to obtain the operation of the buses with headway-based holding control or the schedule-based control method. The objective was to minimize the total cost for the passengers and the bus company in the system, and a Monte Carlo simulation based solution method was subsequently designed to solve the optimization model. The effects of this optimization method were tested under different operational settings. A comparison of the total costs was conducted between the headway-based holding control and the schedule-based holding control. It was found that the model was capable of reducing the costs of the bus company and passengers through utilizing headway-based bus holding control combined with optimization of the bus fleet size. The proposed optimization model could minimize the number of buses on the route for a guaranteed service level, alleviating the problem of redundant bus fleet sizes caused by bus bunching in the traditional schedule-based control method.
机译:近年来,随着数据收集的先进技术的发展,已经实施了实时总线控制策略,以改善运输系统的日常运行,特别是基于前进的控股控制,这是一种减少总线束缚和改善服务的经过验证的战略高频总线路线的可靠性,具有调节在连续公共汽车之间的通道的概念。这种热门话题启发了重新考虑舰队规模优化的传统问题和集成的总线持有控制策略。基于传统的进展控制方法仅重点关注公共汽车头部的调节,而不考虑路线上的公共汽车数量。通常假设总线数量作为预先给定的,控制方法的任务是调节连续总线之间的头部。他们没有考虑与基于前进的保持控制方法集成的总线舰队规模问题。因此,这项工作介绍了一套最佳的控制配方,以最大限度地减少乘客和公共汽车公司的成本,通过计算乘客到达的随机性,以计算最佳的公共汽车和动态控股时间。配制了一组方程,以获得具有基于前沿的保持控制的总线的操作或基于时间表的控制方法。目的是最大限度地减少乘客和系统总线公司的总成本,随后设计了一种基于蒙特卡罗仿真的解决方案方法来解决优化模型。在不同的操作设置下测试了这种优化方法的效果。在基于前往的持有控制和基于时间表的保持控制之间进行总成本的比较。有人发现,该模型能够通过利用基于前沿的总线持有控制来降低总线公司和乘客的成本,并加上总线舰队尺寸的优化。所提出的优化模型可以最大限度地减少保证服务水平的路线上的总线数量,减轻了在传统的基于时间表的控制方法中乘坐总线束缚引起的冗余总线舰队尺寸的问题。

著录项

  • 来源
    《Journal of Advanced Transportation》 |2019年第1期|81-94|共14页
  • 作者单位

    Univ Shanghai Sci & Technol Sch Business Shanghai Peoples R China;

    Shanghai Univ Engn Sci Coll Automobile Engn Shanghai Peoples R China;

    Univ Shanghai Sci & Technol Sch Business Shanghai Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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