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An Improved Adaptive Signal Control Method for Isolated Signalized Intersection Based on Dynamic Programming

机译:基于动态规划的隔离信号交叉口自适应信号控制方法的改进

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摘要

The performance of an adaptive signal control system largely depends on the embedded traffic flow prediction and control algorithm. This paper proposes an improved adaptive control method, comprised of a vehicle arrival estimation model and a signal optimization algorithm. Firstly, a microscopic model was developed to capture vehicle arrival dynamics both in red and green durations. Based on the upstream detection information, vehicle arrival time is predicted taking account of signal timing, vehicle trajectory and variable queue length. The real-time signal control algorithm was formulated based on a Dynamic Programming (DP) procedure, supporting NEMA phase configuration. Three objective functions were considered respectively, namely minimization of delay, queue length and maximization of throughput. The proposed adaptive control method was implemented in VISSIM on a real signalized intersection. It is shown that DP with NEMA generally outperforms DP with 4-phase and the signal timings generated by SYNCHRO. Different objective functions lead to different control performance in terms of various demands and planning horizons. It is reasonably believed that the model has potential applicability in real time traffic adaptive signal control systems.
机译:自适应信号控制系统的性能很大程度上取决于嵌入式交通流量预测和控制算法。本文提出了一种改进的自适应控制方法,该方法包括车辆到达估计模型和信号优化算法。首先,建立了微观模型以捕获红色和绿色持续时间内的车辆到达动态。基于上游检测信息,考虑信号时间,车辆轨迹和可变队列长度来预测车辆到达时间。实时信号控制算法是基于动态编程(DP)程序制定的,支持NEMA相位配置。分别考虑了三个目标函数,即延迟的最小化,队列长度的最大化和吞吐量的最大化。所提出的自适应控制方法是在VISSIM中的真实信号交叉口上实现的。结果表明,带有NEMA的DP通常比带有4相的DP和SYNCHRO生成的信号时序要好。在各种需求和计划范围方面,不同的目标函数会导致不同的控制性能。有理由相信,该模型在实时交通自适应信号控制系统中具有潜在的适用性。

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