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Adaptive traffic signal control algorithms based on probe vehicle data

机译:基于探头车辆数据的自适应交通信号控制算法

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In this paper, two new adaptive traffic signal control algorithms are proposed based on data from probe vehicles to realize the coordinated signal control of arterial roads. One is an iterative signal control algorithm, and the other is an optimized signal control algorithm. The proportion of vehicles in the nonstop group is selected as the indicator of the traffic state. The value for this indicator can be accurately estimated by data from probe vehicles. Our goal is to ease traffic congestion and enhance the capacities of traffic networks. Compared with the Webster fixed-time signal control algorithm, these two new adaptive signal control algorithms are evaluated on a microscopic simulation platform. Simulation results show that the average travel time is reduced by 32% under the iterative signal control algorithm and by 23% under the optimized signal control algorithm, and the average delay times are reduced by 36% and 35%, respectively. In the meantime, the average number of stops under the iterative signal control algorithm is reduced by 43%, and under the optimized signal control algorithm, by 67%. They indicate that the two new adaptive signal control algorithms are effective for easing traffic congestion and achieve the adaptive signal control objectives using real-time traffic information.
机译:本文基于来自探针车辆的数据来实现两个新的自适应交通信号控制算法,以实现动脉道路的协调信号控制。一个是迭代信号控制算法,另一个是优化的信号控制算法。选择非级别组中的车辆的比例作为交通状态的指标。可以通过来自探头车辆的数据来准确地估计该指示器的值。我们的目标是缓解交通拥堵并增强交通网络的能力。与韦伯斯特固定时间信号控制算法相比,在微观仿真平台上评估这两个新的自适应信号控制算法。仿真结果表明,在迭代信号控制算法下,平均旅行时间减少了32%,在优化的信号控制算法下达到23%,平均延迟时间分别减少了36%和35%。同时,迭代信号控制算法下的平均停止次数减少了43%,并且在优化的信号控制算法下减少了67%。它们表明,两个新的自适应信号控制算法对于缓解交通拥堵并使用实时流量信息实现自适应信号控制目标。

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