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Novel Stochastic Procedure for Designing Yellow Intervals at Signalized Intersections

机译:在信号交叉口设计黄色区间的新随机过程

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摘要

Driver behavior while approaching high-speed signalized intersections at the onset of a yellow indication varies as a function of many parameters including age, gender, perception-reaction time, and acceptable deceleration levels. This paper develops a novel approach for computing the clearance interval duration that explicitly accounts for the reliability of the design (probability that drivers do not encounter a dilemma zone). Lookup tables are developed to assist practitioners in the design of yellow timings. The approach is demonstrated using data gathered along the Smart Road test facility for dry and clear weather conditions for two approach speeds: 72.4 km/h and 88.5 km/h. Each data set includes a complete tracking of the vehicle every decisecond within 150 m before and after the intersection. A total of 2016 signal stopping records were gathered. Using these data, models that characterize driver perception-reaction times and deceleration levels are developed. Based on these models, lookup table are developed to assist practitioners in the design of yellow timings that reflects the stochastic nature of driver perception-reaction time (PRT) and deceleration levels.
机译:黄色指示信号出现时,驾驶员接近高速信号交叉口时的行为随年龄,性别,感知反应时间和可接受的减速水平等许多参数而变化。本文开发了一种计算间隙间隔持续时间的新颖方法,该方法明确考虑了设计的可靠性(驾驶员未遇到困境区域的可能性)。查找表的开发是为了帮助从业人员设计黄色时序。使用沿着智能道路测试设施收集的,在两种进近速度:72.4 km / h和88.5 km / h的干燥和晴朗天气条件下的数据,演示了该方法。每个数据集都包括在交叉路口之前和之后的150 m内每十分之一秒对车辆进行的完整跟踪。总共收集了2016年的信号停止记录。利用这些数据,开发出表征驾驶员感知反应时间和减速水平的模型。在这些模型的基础上,开发了查找表,以帮助从业人员设计黄色正时,以反映驾驶员感知反应时间(PRT)和减速水平的随机性。

著录项

  • 来源
    《Journal of Transportation Engineering》 |2012年第6期|p.751-759|共9页
  • 作者单位

    Transportation Engineer, Vanasse Hangen Brustlin, Inc., 8300 Boone Blvd., Suite 700, Vienna, VA 22182-2626;

    Center for Sustainable Mobility, Virginia Tech Transportation Institute and The Charles Via, Jr. Dept. of Civil and Environmental Engineering, Virginia Tech., 3500 Transportation Research Plaza,Blacksburg, VA 24061;

    Ain-Shams Univ., Cairo, Egypt and Senior Research Associate, Center for Sustainable Mobility, Virginia Tech.Transportation Institute, Virginia Tech., 3500 Transportation Research Plaza, Blacksburg, VA 24061;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    driver behavior; traffic signals; traffic safety; traffic engineering;

    机译:驾驶员行为;交通信号;交通安全;交通工程;

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