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A rolling-horizon quadratic-programming approach to the signal control problem in large-scale congested urban road networks

机译:大规模拥挤城市道路网络信号控制问题的滚动水平二次编程方法

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The paper investigates the efficiency of a recently developed signal control methodology, which offers a computationally feasible technique for real-time network-wide signal control in large-scale urban traffic networks and is applicable also under congested traffic conditions. In this methodology, the traffic flow process is modeled by use of the store-and-forward modeling paradigm, and the problem of network-wide signal control (including all constraints) is formulated as a quadratic-programming problem that aims at minimizing and balancing the link queues so as to minimize the risk of queue spillback. For the application of the proposed methodology in real time, the corresponding optimization algorithm is embedded in a rolling-horizon (model-predictive) control scheme. The control strategy's efficiency and real-time feasibility is demonstrated and compared with the Linear-Quadratic approach taken by the signal control strategy TUC (Traffic-responsive Urban Control) as well as with optimized fixed-control settings via their simulation-based application to the road network of the city centre of Chania, Greece, under a number of different demand scenarios. The comparative evaluation is based on various criteria and tools including the recently proposed fundamental diagram for urban network traffic.
机译:本文研究了最近开发的信号控制方法的效率,该方法为大规模城市交通网络中的全网实时信号控制提供了一种计算上可行的技术,并且也适用于交通拥堵的情况。在这种方法中,使用存储转发建模范例对交通流过程进行建模,并将网络范围内的信号控制(包括所有约束)问题表述为旨在最小化和平衡的二次编程问题。链接队列,以最大程度地减少队列溢出的风险。为了实时应用所提出的方法,将相应的优化算法嵌入滚动水平(模型预测)控制方案中。演示了控制策略的效率和实时可行性,并将其与信号控制策略TUC(交通响应城市控制)采用的线性二次方方法以及通过基于仿真的应用优化的固定控制设置进行了比较。在许多不同的需求情景下,希腊干尼亚市中心的公路网。比较评估基于各种标准和工具,包括最近提出的城市网络流量基本图。

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