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Traffic guiding method based on actuated control and phase jump

机译:基于驱动控制和相位跳跃的交通指导方法

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In the process of conventional traffic control, it often occurs that no vehicles run on a lane when the lane gets a right of way, which lengthens the vehicles' waiting time and brings down the guiding efficiency. To get rid of this drawback, this paper proposes a traffic guiding method based on actuated control and phase jump. Time to make a phase jump is decided by the obtained knowledge of queued vehicles. For a light traffic, this paper has deduced the dynamic green time, designed a detector and achieved signal timing by the actuated guiding algorithm. For an almost saturated traffic, the maximum green time and cycle length are restricted by Webster-Monte Carlo Simulation. From the comparison of principles and applications of different guiding strategies, it is found that the method proposed in this paper has a better performance in guiding traffic flow than the existing actuated guiding strategy and the adaptive guiding strategy.
机译:在传统的交通管制过程中,通常发生在车道获得道路上的车道上没有车辆,这延长了车辆的等待时间并带来了指导效率。 要摆脱此缺点,本文提出了一种基于致动控制和相位跳跃的流量指导方法。 通过获得的排队车辆的知识来确定阶段跳跃的时间。 对于轻型流量,本文推出了动态的绿色时间,设计了一种检测器并通过致动的引导算法实现了信号时序。 对于几乎饱和的流量,最大的绿色时间和循环长度受韦伯斯特蒙特卡罗模拟限制。 从不同指导策略的原理和应用的比较来看,发现本文提出的方法具有比现有的致动指导策略和自适应引导策略的引导交通流量更好的性能。

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