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AVL-based transit operations control.

机译:基于AVL的运输运营控制。

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摘要

This dissertation studies three public transit operations control strategies with automatic vehicle location (AVL) data available. Specifically, holding control, stop-skipping control and vehicle dispatching with swapping are investigated. Moreover, AVL data from Tucson, Arizona are employed to investigate the methodologies for deriving vehicle operating parameters.; The problem of holding vehicles at multiple holding stations can be modeled as a convex mathematical programming problem which can be solved to near optimality by a proposed heuristic. A simulation study on the holding problem suggests that holding control based on the proposed problem formulation can effectively reduce the total passenger cost. Also, multiple holding stations may offer more opportunities to regularize vehicle headways so that holding vehicles at multiple stations can further reduce the passenger cost compared to holding vehicles only at a single station.; Stop-skipping is investigated to respond more rapidly to vehicle disruptions occurring in the middle of a route. Based on a preliminary analysis of the basic stop-skipping policy, a policy alternative is constructed. The stop-skipping strategy is formulated separately for both policies as a nonlinear integer programming problem. The problem solution relies on an exhaustive search method. Another simulation study is conducted to examine how the performance of the two policies change with the passenger distribution pattern, the vehicle disruption location and length, and the vehicle travel time variability. The simulation result suggests selective superiority of the two policies.; The vehicle dispatching problem investigates the potential of integrating real-time swapping into the vehicle dispatching strategies at a transit transfer terminal. With a hypothetical study design, simulation is employed again to evaluate the significance of real-time swapping by comparing the performance of a swapping-holding combined strategy with the holding-only strategy. A sensitivity analysis is also employed to compare these two strategies among key transit operating factors.; Finally, using three different understandings (assumptions) of vehicle operating behavior, regression methods are proposed for using AVL data to derive the vehicle running speeds and passenger boarding rates, which serve as inputs to the operations control models. The regression results show that the day-specific operating behavior may not be appropriate, and that operating behavior combining both trip-specific and day-specific effects seems to be slightly superior to the trip-specific behavior overall.
机译:本文研究了三种具有自动车辆定位(AVL)数据的公交运营控制策略。具体地,研究了保持控制,停步控制和有交换的车辆调度。此外,来自亚利桑那州图森的AVL数据被用于研究得出车辆运行参数的方法。可以将车辆在多个保持站的保持问题建模为凸的数学规划问题,可以通过提出的启发式方法将其求解到接近最佳状态。对托运问题的仿真研究表明,基于提出的问题表述的托运控制可以有效降低总乘客成本。同样,多个停靠站可能会提供更多机会来规范车辆的行驶距离,因此与仅在单个站点停靠的车辆相比,在多个站点停靠的车辆可以进一步降低乘客成本。调查了跳行以更快地响应路线中间发生的车辆中断。在对基本的跳过站点策略进行初步分析的基础上,构建了一种策略选择。两种策略的停跳策略分别制定为非线性整数规划问题。问题解决方案依赖于穷举搜索方法。进行了另一项模拟研究,以检验这两种策略的性能如何随乘客分布模式,车辆中断位置和长度以及车辆行驶时间的变化而变化。仿真结果表明了这两种政策的选择性优势。车辆调度问题研究了在公交转运站将实时交换集成到车辆调度策略中的潜力。在假设的研究设计中,通过将交换-持有-合并组合策略与仅持有策略的性能进行比较,再次使用仿真来评估实时交换的重要性。还使用敏感性分析来比较这两种策略在关键公交运营因素之间的比较。最后,利用对车辆运行行为的三种不同理解(假设),提出了使用AVL数据得出车辆运行速度和乘客登机率的回归方法,这些数据可作为运行控制模型的输入。回归结果表明,特定于一天的操作行为可能不合适,并且结合了特定于行程的行为和特定于一天的效果的操作行为似乎总体上优于特定于行程的行为。

著录项

  • 作者

    Sun, Aichong.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Transportation.; Operations Research.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 242 p.
  • 总页数 242
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 综合运输;运筹学;建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:42:41

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