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Effect of Bicycles on the Saturation Flow Rate of Turning Vehicles at Signalized Intersections

机译:信号交叉口自行车对转弯车辆饱和流量的影响

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摘要

This paper studies the effect of bicycles on intersection operations for those intersections where bicycle traffic causes the most disturbances to vehicular traffic. By studying different states of bicycles crossing a signalized intersection, this paper divides the conflicts between bicycles and turning vehicles into multiple stages and models the saturation flow rate of turning vehicles under the bicycles' influence for each stage. For right-turn vehicles, in the first stage, previously queued turning vehicles and bicycles are released at the onset of green, and right-turn vehicles are blocked by through bicycles; in the second stage, bicycles arriving at the intersection randomly after initial queues are discharged, and gap acceptance consideration is used to analyze the conflict between the right-turn vehicles and bicycles to obtain the saturation flow reduction factor for right-turn vehicles. In the first stage, left-turn vehicles wait while the opposing through vehicles discharge from the queue; in the second-stage, the left-turn vehicles cross opposing randomly arriving vehicular flow and may be blocked by the bicycles in queue discharge mode and in the third stage, left-turn vehicles cross randomly arriving opposing through bicycles. The saturation flow rates of right-turn and left-turn vehicles under the bicycles' influence are modeled considering differences in these stages. The model results are compared with real-world observations and show a better match than those from the Highway Capacity Manual (HCM) model. The results of this study can supplement the content of the signalized intersection capacity analysis method in the HCM and provide the basis for design of intersection signal timing and capacity calculation under mixed traffic conditions at signalized intersections.
机译:本文研究了自行车对交叉路口操作的影响,在这些交叉路口,自行车交通对车辆交通的干扰最大。通过研究自行车穿越信号交叉口的不同状态,将自行车与转弯车辆之间的冲突分为多个阶段,并在每个阶段的影响下对转弯车辆的饱和流量进行建模。对于右转车辆,在第一阶段,在绿色开始时释放先前排队的转弯车辆和自行车,右转车辆被自行车挡住;在第二阶段,将初始队列放出后随机到达交叉路口的自行车,并采用间隙接受考虑,分析右转弯车辆与自行车之间的冲突,以获得右转弯车辆的饱和流量减小因子。在第一阶段,左转车辆等待,对方直通车从队列中驶出;在第二阶段中,左转车辆越过随机到达的车辆,并且可能在排卸模式下被自行车阻挡;在第三阶段中,左转车辆越过随机到达的车辆而通过自行车而被阻挡。考虑到这些阶段之间的差异,对在自行车影响下的右转和左转车辆的饱和流速进行了建模。将模型结果与实际观察结果进行比较,并显示出比“公路通行能力手册”(HCM)模型更好的匹配结果。研究结果可以补充HCM中信号交叉口通行能力分析方法的内容,为信号交叉口混合交通条件下的交叉口信号配时设计和通行能力计算提供依据。

著录项

  • 来源
    《Journal of Transportation Engineering》 |2012年第1期|p.21-30|共10页
  • 作者单位

    Transportation Research Center of Beijing Univ. of Technology, Beijing, China, 100124;

    Transportation Research Center of Beijing Univ. of Technology, Beijing, China, 100124;

    Zachry Dept. of Civil Engineering, Texas A&M Univ., College Station, TX 77843;

    Transportation Research Center of Beijing Univ. of Technology, Beijing, China, 100124;

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

    bicycle; HCM algorithm; saturation flow rate;

    机译:自行车;HCM算法;饱和流量;

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