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Simulation Studies on Dilemma Zone and Asymptotic Traffic Patterns in a Signalized Ring Road based on the Optimal Velocity Model.

机译:基于最优速度模型的信号化环形道路困境区和渐近交通方式的仿真研究。

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摘要

While traffic light is used to coordinate vehicular and pedestrian traffics in order to provide safety to drivers on streets, there are delays and accidents resulted from unorganized signal timing and poor network design. At every signalized intersection at the yellow light onset, drivers have to make an uncertain decision in an area called the dilemma zone. It is where the drivers have to decide whether he can stop safely by the stop line or clearly proceed through the intersection. Because of the potential safety issues from the dilemma zone, this thesis attempts to simulate traffic flow in a single-lane ring road with and without the presence of a traffic signal by using the Optimal Velocity (OV) car-following model. In particular, a beacon vehicle is selected as the first vehicle to stop, and all following vehicles have to stop accordingly. Using programs such as MATLAB and CodeSkulptor, the simulation demonstrates the leading and following vehicles' behavior with location and speed trajectory diagrams and it is found that the OV model produces a collision-free scenario even under the presence of a traffic signal. In addition, by observing a single vehicle's behavior, some asymptotic traffic patterns can be seen. This thesis can serve as a fundamental study to inspire and develop potential dilemma zone protection to promote intersection safety and prevent risks such as rear-end accidents and red light violations.
机译:尽管交通信号灯用于协调车辆和行人交通,以确保街道驾驶员的安全,但由于信号定时不正确和网络设计不佳,导致了交通延误和事故。在黄灯开始的每个信号交叉口,驾驶员必须在一个称为困境区的区域中做出不确定的决定。在这里,驾驶员必须决定他是否可以通过停车线安全地停车或清楚地通过交叉路口。由于两难区域存在潜在的安全问题,因此本文试图通过使用最优速度(OV)跟随模型来模拟有或没有交通信号的单车道环形道路上的交通流量。特别地,信标车辆被选为要停止的第一车辆,并且随后的所有车辆必须相应地停止。通过使用MATLAB和CodeSkulptor之类的程序,该仿真通过位置和速度轨迹图演示了领先和跟随车辆的行为,并且发现OV模型即使在交通信号存在的情况下也能产生无碰撞场景。此外,通过观察单个车辆的行为,可以看到一些渐近交通模式。本文可作为基础研究,激发和发展潜在的困境保护区,以促进交叉路口安全并防止发生诸如追尾事故和违反红灯之类的风险。

著录项

  • 作者

    Kwan, Candy.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Transportation.;Civil engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 52 p.
  • 总页数 52
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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