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Dilemma zone conflicts at isolated intersections controlled with fixed-time and vehicle actuated traffic signal systemsud

机译:在由固定时间和车辆启动的交通信号系统控制的隔离路口处,困境区域冲突 ud

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摘要

Installation of traffic signal control system at relatively high traffic volume intersections is expected to safeguard drivers at such intersections by providing a clear definition of right–of–way to drivers. However, a particular operational issue is the existence of dilemma zone conflicts if the type traffic signal system installed is not properly selected and designed. The problem is critical for isolated intersections on relatively high speed road sections. This paper describes result of a study carried out to investigate the existence of dilemma zone conflicts at isolated intersections installed with various types of traffic signal control systems. Three indicators of dilemma zone conflicts considered in the analysis are (i) stop abruptly; (ii) accelerate through amber period; and (iii) red–light running. Data pertaining to the analysis of dilemma zone conflicts was collected at eight isolated intersections with different types of traffic signal control systems using a video–recording technique. The data includes vehicles’ approaching speed, distance from the stop line at the onset of amber, the decision made by the drivers at onset of amber as well as the types of vehicles driven. The result shows that relatively large proportion of drivers did not willing to stop at onset of amber signal. A vehicle–actuated traffic signal system appears to perform better compared to other types of system in terms of reduction in dilemma zone conflicts at isolated signalized intersections.
机译:在交通量较高的十字路口安装交通信号控制系统,有望通过提供明确的驾驶员通行权来保护此类十字路口的驾驶员。但是,一个特殊的操作问题是,如果未正确选择和设计安装的交通信号系统类型,则存在困境区域冲突。对于相对高速路段上的孤立十字路口,该问题至关重要。本文介绍了一项研究的结果,以调查在安装有各种类型的交通信号控制系统的孤立路口处的困境区冲突的存在。分析中考虑的困境区域冲突的三个指标是:(i)突然停止; (ii)加速通过琥珀期; (iii)红灯运行。使用视频记录技术,在八个与不同类型交通信号控制系统隔离的交叉路口,收集了有关困境区冲突分析的数据。数据包括车辆的接近速度,琥珀色开始时与停车线的距离,驾驶员在琥珀色开始时做出的决定以及所驾驶车辆的类型。结果表明,相对较大比例的驾驶员不愿意在琥珀色信号开始时停车。在减少孤立的信号交叉口的困境区域冲突方面,车辆驱动的交通信号系统似乎比其他类型的系统性能更好。

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