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Stopped and control delay at signalized intersections.

机译:在信号交叉口停车并控制延迟。

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摘要

This document discusses an investigation into the relationship between stopped and control delay for through lane groups at actuated signalized intersections. The research was motivated by potential inconsistencies in the level-of-service thresholds between the 1994 and 1997 Highway Capacity Manuals. The research identified four existing analytical models that describe the stopped to control delay relationship, Reilly-Gardner, Akcelik, Teply, and Quigora-Bullock.; The research also identified five variables as having an impact on the stopped to control delay relationship, namely the delay magnitude, controller type, number of lanes, percent split, and approach speed. Focusing on actuated controllers, a comprehensive simulation-based dataset was developed using CORSIM that allowed for direct comparison of the existing analytical models noted above. None of the four models proved capable of describing all the factors that affect the stopped to control delay relationship. The CORSIM dataset was also used to test the consistency of the 1994 and 1997 level-of-service thresholds, which were found to be inconsistent. Using control delay and the 1997 thresholds tended toward a worse level-of-service than using stopped delay with the 1994 thresholds.; Using the same CORSIM dataset, three new analytical models describing the stopped to control delay relationship were developed. Both the existing and the newly developed analytical models were validated using field data. The validation steps showed that one of the newly developed models, called the Multivariate-Linear Model, provided the best overall description of the stopped to control delay relationship. This model was used to develop a new set of level-of-service thresholds for use with control delay. This new set of thresholds was shown to be more consistent with the 1994 Highway Capacity Manual stopped delay thresholds than the 1997 Highway Capacity Manual control delay thresholds.
机译:该文件讨论了在激活的信号交叉口处直通车道组的停车与控制延迟之间的关系的研究。这项研究是出于1994年和1997年《公路通行能力手册》之间服务水平阈值的潜在不一致之处。该研究确定了描述停止与控制延迟关系的四个现有分析模型:Reilly-Gardner,Akcelik,Teply和Quigora-Bullock。研究还确定了五个变量,这些变量对停止与控制的延迟关系有影响,即延迟大小,控制器类型,通道数,分割百分比和进近速度。专注于致动控制器,使用CORSIM开发了基于仿真的综合数据集,该数据集可用于直接比较上述现有分析模型。四个模型均未证明能够描述影响停止与控制延迟关系的所有因素。 CORSIM数据集还用于测试1994年和1997年服务水平阈值的一致性,发现这两个阈值不一致。使用控制延迟和1997年的阈值倾向于比使用1994年阈值的停止延迟更糟糕的服务水平。使用相同的CORSIM数据集,开发了三种新的分析模型,它们描述了停止与控制延迟之间的关系。现有和新开发的分析模型均使用现场数据进行了验证。验证步骤表明,一个新开发的模型(称为多元线性模型)提供了从停止到控制延迟关系的最佳总体描述。该模型用于开发一组新的服务水平阈值,用于控制延迟。与1997年《公路通行能力手册》控制延迟阈值相比,这套新的阈值与1994年《公路通行能力手册》停止延迟阈值更加一致。

著录项

  • 作者

    Click, Steven Michael.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 313 p.
  • 总页数 313
  • 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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