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A multi-intersection model and signal timing plan algorithm for urban traffic signal control

机译:城市交通信号控制的多路口模型及信号定时方案算法

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The urban traffic signal control system is complex, non-linear and non-equilibrium in real conditions. The existing methods could not satisfy the requirement of real-time and dynamic control. In order to solve these difficulties and challenges, this paper proposes a novel Multi-Intersection Model (MIM) based on Cellular Automata (CA) and a Multi-Intersection Signal Timing Plan Algorithm (MISTPA), which can reduce the delay time at each intersection and effectively alleviate the traffic pressure on each intersection in the urban traffic network. Our work is divided into several parts: (1) a multi-intersection model based on CA is defined to build the dynamic urban traffic network; (2) MISTPA is proposed, which truly reflects the real-time demand degree to green time of the traffic flow at each intersection. The MISTPA is composed Single Intersection Volume Algorithm (SIVA), Single-Lane Volume Algorithm (SLVA) and single intersection signal timing plan algorithm (SISTPA). Extensive experiments show that when the saturation is greater than 0.3, the MIM and the MISTPA achieve good performance, and can significantly reduce the vehicle delay time at each intersection. The average delay time of the traffic flow at each intersection can obviously be reduced. Finally, a practical case study demonstrates that the proposed model and the corresponding algorithm are correct and effective. First published online: 28 Aug 2014.
机译:在实际条件下,城市交通信号控制系统是复杂的,非线性的和非平衡的。现有方法不能满足实时和动态控制的要求。为了解决这些困难和挑战,本文提出了一种基于元胞自动机(CA)和多路口信号定时计划算法(MISTPA)的新型多路口模型(MIM),可以减少每个路口的延误时间。有效缓解城市交通网络各路口的交通压力。我们的工作分为以下几个部分:(1)定义了基于CA的多路口模型,以建立动态的城市交通网络。 (2)提出了MISTPA,它真实地反映了每个交叉路口的交通流的实时需求度到绿灯时间。 MISTPA由单路口体积算法(SIVA),单车道体积算法(SLVA)和单路口信号时序计划算法(SISTPA)组成。大量实验表明,当饱和度大于0.3时,MIM和MISTPA可获得良好的性能,并且可以显着减少每个交叉路口的车辆延迟时间。每个交叉路口的交通流平均延迟时间可以明显减少。最后,通过实例分析证明了所提模型和相应算法的正确性和有效性。首次在线发布:2014年8月28日。

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