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Evaluation of service reliability impacts of traffic signal priority strategies for bus transit.

机译:评估公交车交通信号优先策略对服务可靠性的影响。

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摘要

Recent progress in technology has facilitated the design, testing, and deployment of traffic signal priority strategies for transit buses. However, a clear consensus has not emerged regarding the evaluation of these strategies. Each agency implementing these strategies can have differing goals, and there are often conflicting issues, needs, and concerns among the various stakeholders. This research attempts to assist in the evaluation of such strategies by presenting an evaluation framework and plan that provides a systematic method to assess potential impacts. The results of the research include the development of specific measures corresponding to particular objectives, with descriptions to facilitate their use by agencies evaluating traffic signal priority. The use of this framework and plan is illustrated on the Columbia Pike corridor in Arlington, Virginia with the use of the INTEGRATION simulation package. In building upon prior efforts on this corridor, this work presents a method of simulating conditional granting of priority to late buses in an attempt to investigate the impacts of priority on service reliability. Using the measures developed in this research, statistically significant improvements of 3.2% were found for bus service reliability and 0.9% for bus efficiency, while negative other traffic-related impacts were found in the form of increases in overall delay to the corridor of 1.0% on a vehicle basis or 0.6% on a person basis. Areas identified for future research include extensions to INTEGRATION to permit consideration of real-time conditional priority, further exploration of the relationship between components of bus travel times, and examination of the role of passenger loads on priority operation and impacts.
机译:技术的最新进展促进了公交公交车交通信号优先策略的设计,测试和部署。但是,关于这些策略的评估还没有达成明确的共识。实施这些策略的每个机构可以有不同的目标,并且各个利益相关者之间经常存在矛盾的问题,需求和关注点。这项研究试图通过提供评估框架和计划来协助评估此类策略,该评估框架和计划提供了一种评估潜在影响的系统方法。研究结果包括制定与特定目标相对应的具体措施,并进行描述,以方便评估交通信号优先级的机构使用。在弗吉尼亚州阿灵顿的哥伦比亚派克走廊上,通过使用集成模拟程序包,说明了此框架和计划的使用。在此通道的先前工作的基础上,这项工作提出了一种方法,以模拟有条件的优先权授予晚车,以调查优先权对服务可靠性的影响。使用这项研究中开发的措施,在统计上显着改善了公交服务可靠性3.2%,改善了公交效率0.9%,同时发现其他与交通相关的负面影响,包括到走廊的总体延误增加1.0%以车辆为基础,或以人为基础计算为0.6%。确定用于未来研究的领域包括扩展集成,以允许考虑实时条件优先级,进一步探索公交车出行时间各组成部分之间的关​​系,以及研究客运负载对优先运行和影响的作用。

著录项

  • 作者

    Chang, James.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Civil.; Transportation.; Operations Research.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;综合运输;运筹学;
  • 关键词

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