A Novel Adaptive Signal Timing Control Approach for Signalized Intersections

Fan He, Longfei Zhou, Siyu Wu, Haoliang Liu, Zehang Li, Ke Xu, Yuliang Gai, Fei Teng, Pengfei Liu
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Abstract

Vehicular traffic congestion is a severe global problem, leading to a range of issues such as increased travel times, increased fuel consumption, and increased pollutant emissions. The signal timing of traffic lights is one of the major factors that we can change to reduce traffic congestion at signalized intersections. Most traffic lights used in real life are hard-coded which means the fixed timing is applied for traffic control. In these hard-coded signalized intersection models, we do not have much to do to deal with real-time congestion, especially for large traffic volumes. In this study, we propose an adaptive signal timing control approach to reduce traffic congestion according to real-time traffic flow situations. In this novel approach, the signal timing can be changed over time based on real-time information about traffic flows. The Eclipse SUMO is used to simulate traffic conditions at real-world intersections to optimize road traffic light control and reduce real-time traffic delays for signalized intersections. Simulation results show that the proposed method obtains better performance than typical traffic light timing control strategies.
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一种新的信号交叉口自适应信号配时控制方法
车辆交通拥堵是一个严重的全球性问题,导致了一系列问题,如旅行时间增加,燃料消耗增加,污染物排放增加。交通信号灯的信号配时是我们可以改变的主要因素之一,以减少信号交叉口的交通拥堵。现实生活中使用的交通灯大多是硬编码的,即采用固定的定时方式进行交通控制。在这些硬编码信号交叉口模型中,我们不需要做太多的事情来处理实时拥堵,特别是对于大交通量。在本研究中,我们提出一种自适应信号配时控制方法,以因应实时交通流情况,减少交通拥塞。在这种新颖的方法中,信号定时可以根据交通流量的实时信息随时间改变。Eclipse SUMO用于模拟现实世界十字路口的交通状况,以优化道路交通灯控制,减少信号交叉口的实时交通延迟。仿真结果表明,该方法比典型的交通灯定时控制策略具有更好的控制性能。
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