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首页> 外文期刊>Journal of Transportation Technologies >Performance Evaluation of Intelligent Adaptive Traffic Control Systems: A Case Study
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Performance Evaluation of Intelligent Adaptive Traffic Control Systems: A Case Study

机译:智能自适应交通控制系统的性能评估:一个案例研究

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摘要

Mashhad, the second largest city in Iran, like many other big cities, is faced with increasing traffic congestion owing to rapidly increasing population and annual pilgrimage. In recent years, Mashhad traffic and transportation authorities have been challenged with how to manage the increasing congestion with limited budgets for major roadway construction projects. Mashhad has recognized the need to improve the existing system capacity to get the most out of their cur- rent transportation system infrastructures. Since most of the delay times occur at signalized intersections, using an intelligent control system with proper capabilities to overcome the growing traffic requirements is recommended. Following comprehensive studies carried out with the aim of developing the Mashhad traffic control center, the SCATS adaptive traffic control system was introduced as the selected intelligent control system for integrating signalized intersections. The first intersection was equipped with this system in 2005. This paper describes the results of a field evaluation in which fixed actuated-coordinated signal timings are compared with those dynamically computed by SCATS. The ef- fects of this system on optimizing fuel consumption as well as reducing air pollutants are fully discussed. It is found that SCATS consistently reduced travel times and the average delay per stopped or approaching vehicle. The positive impact of adaptive traffic control systems on fuel consumption and air pollution are also highlighted.
机译:与其他许多大城市一样,伊朗第二大城市马什哈德(Mashhad)由于人口迅速增加和每年朝圣而面临日益严重的交通拥堵。近年来,马什哈德(Mashhad)交通和运输当局面临着如何在主要道路建设项目的预算有限的情况下应对日益严重的交通拥堵的挑战。马什哈德(Mashhad)认识到有必要提高现有系统容量,以充分利用其当前的交通运输系统基础设施。由于大多数延迟时间都发生在信号交叉路口,因此建议使用具有适当功能的智能控制系统来克服不断增长的交通需求。为了发展马什哈德交通控制中心而进行的全面研究之后,引入了SCATS自适应交通控制系统作为用于集成信号交叉口的智能控制系统。 2005年,第一个交叉路口配备了该系统。本文描述了现场评估的结果,其中将固定的驱动协调信号时序与SCATS动态计算的时序进行了比较。充分讨论了该系统对优化燃油消耗以及减少空气污染物的影响。结果发现,SCATS持续减少了旅行时间,并且减少了每辆停下或接近的车辆的平均延迟时间。还强调了自适应交通控制系统对燃料消耗和空气污染的积极影响。

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