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A Simulation-Based Traffic Signal Control for Congested Urban Traffic Networks

机译:基于仿真的拥挤城市交通网络交通信号控制

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Traffic congestion in urban networks may lead to strong degradation in the utilization of the network infrastructure, which can be mitigated via suitable control strategies. This paper studies and analyzes the performance of an adaptive traffic-responsive strategy that controls the traffic light parameters in an urban network to reduce traffic congestion. A nearly optimal control formulation is adopted to avoid the curse of dimensionality occurring in the solution of the corresponding Hamilton-Jacobi-Bellman (HJB) optimal control problem. First, an (approximate) solution of the HJB is parametrized via an appropriate Lyapunov function; then, the solution is updated at each iteration in such a way to approach the nearly optimal solution, using a close-to-optimality index and information coming from the simulation model of the network (simulation-based design). Simulation results obtained using a traffic simulation model of the network Chania, Greece, an urban traffic network containing many varieties of junction staging, demonstrate the efficiency of the proposed approach, as compared with alternative traffic strategies based on a simplified linear model of the traffic network. It is shown that the proposed strategy can adapt to different traffic conditions and that low-complexity parametrizations of the optimal solution, a linear and a bimodal piecewise linear strategy, respectively, provide a satisfactory trade-off between computational complexity and network performance.
机译:城市网络中的交通拥堵可能会导致网络基础设施利用率的严重下降,这可以通过适当的控制策略来缓解。本文研究和分析了自适应交通响应策略的性能,该策略控制城市网络中的交通信号灯参数以减少交通拥堵。为了避免在相应的汉密尔顿-雅各比-贝尔曼(HJB)最优控制问题的解中出现维数的诅咒,采用了接近最优的控制公式。首先,通过适当的Lyapunov函数对HJB的(近似)解进行参数化;然后,使用接近最佳的索引和来自网络模拟模型(基于模拟的设计)的信息,以接近最佳解决方案的方式在每次迭代中更新解决方案。使用基于希腊Chania网络的交通仿真模型获得的仿真结果,该城市交通网络包含许多不同的交叉路口阶段,与基于简化的交通网络线性模型的替代交通策略相比,该方法具有较高的效率。结果表明,所提出的策略可以适应不同的流量条件,最优解的低复杂度参数化,线性和双峰分段线性策略分别在计算复杂度和网络性能之间提供了令人满意的折衷。

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