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Development and testing of computational procedures for signal timing design at isolated intersections.

机译:开发和测试隔离交叉口信号定时设计的计算程序。

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摘要

Traffic control signals are an important element of urban street systems. While they are not, in themselves, the cause of delay and other problems perceived by the motorist, their operation has a very strong influence on the performance of these systems. There are several elements of the signal operation that may be addressed to improve the performance at any given location. One of the key elements is the accuracy of performance estimators themselves. Another is the manner in which the performance estimators are used to achieve the “best” signal-timing plan. Both of these elements are addressed in this dissertation.; The Highway Capacity Manual (HCM) describes a procedure for evaluating the performance of a signal in terms of control delay, defined as the amount of delay that would be eliminated for a given traffic movement if the signal control were eliminated from that movement. The HCM signalized intersection model represents the state of current knowledge of traffic signal operation. This dissertation explores the potential for advancement by addressing three specific shortcomings of the HCM model and its application: (1) the accuracy of the estimation procedure for the average green times for traffic actuated control, (2) the need for an iterative technique that can achieve the “best” performance of an intersection as evaluated by the HCM procedure and (3) potential improvements to the HCM model structure through the use of a “time-scan” technique to represent queue accumulation and departure. The following activities are described in the dissertation: (1) The functional and computational requirements for a formal optimization model were proposed, and an algorithm to meet those requirements was developed and tested. The optimization procedure used a hybrid genetic algorithm, involving a combination of a pure genetic algorithm and a “hill-climbing” approach. (2) The HCM procedure for average phase-length estimation was modified to improve its performance. Comparisons were made between the signal timings designed by the existing and proposed methods. (3) A time-scan procedure for representing the accumulation and discharge of queues on an approach to a signalized intersection was developed and tested using a hypothetical example involving permitted left turns.; The proposed enhancements were evaluated using the CORSIM simulation model as a surrogate for field data collection. The results indicated that the proposed optimization scheme was able to achieve its design objectives, the green time estimation procedures were improved by the proposed enhancements, and the accuracy of the delay estimates for approaches involving permitted left turns was improved by the proposed time-scan model structure.
机译:交通控制信号是城市街道系统的重要组成部分。尽管它们本身并不是造成驾驶员感觉到的延迟和其他问题的原因,但它们的操作对这些系统的性能却具有非常重要的影响。可以解决信号操作的几个要素,以改善在任何给定位置的性能。关键要素之一是性能估算器本身的准确性。另一个是使用性能估计器来实现“最佳”信号计时计划的方式。本文对这两个要素进行了论述。 《高速公路通行能力手册》(HCM)描述了一种根据控制延迟评估信号性能的程序,该控制延迟定义为如果从该运动中消除了信号控制,对于给定的交通运动将消除的延迟量。 HCM信号交叉口模型表示交通信号灯操作的当前知识状态。本论文通过解决HCM模型及其应用的三个特定缺陷,探索了前进的潜力:(1)交通致动控制的平均绿灯时间估计程序的准确性,(2)需要一种能够迭代的迭代技术通过使用“时间扫描”技术表示队列的累积和偏离,实现了由HCM程序评估的交叉路口的“最佳”性能,以及(3)对HCM模型结构的潜在改进。论文描述了以下活动:(1)提出了形式优化模型的功能和计算要求,并开发并测试了满足这些要求的算法。优化过程使用了混合遗传算法,其中包括纯遗传算法和“爬坡”方法的组合。 (2)修改了用于平均相长估计的HCM程序以提高其性能。比较了现有方法和提议方法设计的信号时序。 (3)使用涉及允许的左转弯的假设示例开发并测试了一种时间扫描程序,该程序用于表示信号交叉口进近时队列的累积和释放。拟议的增强功能是使用CORSIM仿真模型作为现场数据收集的替代产品进行评估的。结果表明,所提出的优化方案能够实现其设计目标,所提出的增强措施改进了绿色时间估计程序,并且所提出的时间扫描模型提高了涉及允许左转弯的方法的延迟估计的准确性。结构体。

著录项

  • 作者

    Kim, Jin-Tae.;

  • 作者单位

    University of Florida.;

  • 授予单位 University of Florida.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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