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Transit signal priority: Simulation-based modeling, evaluation and improvement.

机译:公交信号优先级:基于仿真的建模,评估和改进。

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摘要

Traffic congestion is an increasing problem in most urban areas in the United States. One of the sources of this problem is the automobile-oriented development that encourages automobile use and suppresses other transportation modes. A good transit system can satisfy most of the requirements of a transportation system user. A transit system must be efficient, safe, comfortable, and competitive to private cars in order to attract more riders. Transit Signal Priority (TSP) is an operational strategy that facilitates transit vehicles at signalized intersections. It improves transit efficiency and helps transit offer travel times competitive to private cars. A lot of studies conducted in the past 40 years show the major possibilities and benefits of TSP.;The goal of this research is to develop a simulation-based methodology for the evaluation and improvement of TSP strategies. The objectives consist of evaluating existing and future TSP systems, and developing field-ready algorithms that provide adaptive ways for achieving different levels of TSP and improving its operation. The focus of the research is on using traffic microsimulation to evaluate and improve TSP, but it also looks into some field-based implementations and evaluations for additional support.;The analysis of different TSP strategies is performed on existing and future rapid transit mode implementations, namely Bus Rapid Transit (BRT) and Light Rail Transit (LRT). The results from the presented studies show the major benefits of TSP implementations for transit operations and small disruptions for vehicular traffic. Depending on the selected strategies and level of TSP, the travel time savings for transit can be between 10% and 30%, the reduction in intersection delay can exceed 60%, while running time reliability and headway adherence are greatly improved. These improvements in transit operations can make transit more efficient and competitive to private cars, justifying the TSP implementation.;This research offers significant contributions to the state of TSP practice and research. It provides detailed insights into TSP operations, develops methods for its evaluation, and describes algorithms for achieving different levels of TSP. A significant part of the research is dedicated to the use of Software-in-the-Loop (SIL) traffic controllers in microsimulation. Through this research, SIL is proven to be a powerful tool for simulating complex traffic signal operations and TSP.
机译:在美国大多数城市地区,交通拥堵是一个日益严重的问题。这个问题的根源之一是鼓励汽车使用并抑制其他运输方式的以汽车为导向的发展。一个好的运输系统可以满足运输系统用户的大多数需求。为了吸引更多的骑手,公交系统必须高效,安全,舒适并且与私家车竞争。过境信号优先级(TSP)是一种操作策略,可方便信号交叉口处的过境车辆。它提高了运输效率,并帮助运输提供了与私家车竞争的旅行时间。在过去的40年中进行的许多研究表明了TSP的主要可能性和好处。该研究的目标是开发一种基于仿真的方法来评估和改进TSP策略。目标包括评估现有和将来的TSP系统,以及开发现场可用的算法,这些算法为实现不同级别的TSP和改善其运行提供了自适应方法。研究的重点是使用交通微仿真来评估和改进TSP,但同时也研究了一些基于现场的实施和评估以提供额外的支持。;对各种TSP策略的分析是在现有和未来的快速运输模式实施中进行的,即快速公交(BRT)和轻轨公交(LRT)。提出的研究结果表明,TSP实施对过境运营的主要好处以及对交通的小干扰。根据选择的策略和TSP的级别,运输的旅行时间节省可以在10%到30%之间,交叉路口延误的减少可以超过60%,同时大大改善了行驶时间的可靠性和行进距离。运输操作方面的这些改进可以使运输效率更高,更具竞争力,从而更有利于TSP实施。本研究为TSP实践和研究的状态做出了重要贡献。它提供了对TSP操作的详细见解,开发了评估方法,并描述了实现不同级别TSP的算法。该研究的重要部分致力于在微观仿真中使用软件在环(SIL)流量控制器。通过这项研究,SIL被证明是模拟复杂交通信号灯操作和TSP的强大工具。

著录项

  • 作者

    Zlatkovic, Milan.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 228 p.
  • 总页数 228
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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