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Optimizing Offsets in Signalized Traffic Networks: A Case Study

机译:在信号交通网络中优化偏移:一个案例研究

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We evaluate the performance of an algorithm, developed by [1], that formulates offset optimization for a traffic network with arbitrary topology as a quadratically constrained quadratic program. The algorithm adjusts the offset values of traffic signals in urban networks to reduce delay and the number of stops. The performance of two real-world networks using the offsets obtained by the algorithm and those obtained using Synchro, a popular software package for traffic signal timing, is compared via simulation using the VISSIM microscopic traffic simulator. The offsets obtained by the algorithm reduce the average number of stops and total delay that vehicles experience along the major routes in both networks and under several traffic profiles as compared with offsets obtained from Synchro. In addition, the original model assumed infinite storage capacity for links, we eliminate this assumption to make the model more realistic. In this paper we show theoretical work of adding storage capacity constrains to the original optimization problem, along with an example of the results from modified version of the algorithm.
机译:我们评估由[1]开发的算法的性能,其为具有任意拓扑的交通网络的偏移优化为二次约束的二次程序。该算法调整城市网络中交通信号的偏移值,以减少延迟和停止次数。使用Vissim微观流量模拟器的仿真比较了使用算法获得的两个现实网络的性能和使用Synchro获得的流行信号定时的流行软件包的性能。通过算法获得的偏移量减少了车辆沿着网络中的主要路线以及在几个流量配置文件中经历的平均停止和总延迟的平均延迟数,而同步从同步获得的偏移量相比。此外,原始模型假设有限的Links存储容量,我们消除了这种假设使模型更加现实。在本文中,我们显示了将存储容量添加到原始优化问题的理论工作,以及算法的修改版本的结果的示例。

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