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A Network Optimization Framework for the Analysis and Control of Traffic Dynamics and Intersection Signaling

机译:用于交通动态和交叉口信号分析与控制的网络优化框架

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This paper proposes a simplified version of classical models for urban transportation networks, and studies the problem of controlling intersections with the goal of optimizing network-wide congestion. Differently from traditional approaches to control traffic signaling, our simplified framework allows a more tractable analysis of the network dynamics and, yet, accurately captures the behavior of traffic flows along roads and in proximity of intersections in regimes of free flow. We cast an optimization problem to describe the goal of optimally controlling automated intersections, and relate congestion objectives with the problem of optimizing a metric of controllability of the associated dynamical system. We characterize the system performance in relation to (sub)optimal configurations, and identify conditions that guarantee network stability. Lastly, we assess the benefits of the proposed modeling and optimization framework through a microscopic simulator.
机译:本文提出了城市交通网络经典模型的简化版本,并研究了控制交叉口的问题,以优化网络范围内的交通拥堵为目标。与传统的控制交通信号的方法不同,我们的简化框架允许对网络动力学进行更易分析的分析,但仍可以准确地捕获沿道路以及在自由流动状态下交叉路口附近的交通流量的行为。我们提出了一个优化问题来描述优化控制自动交叉口的目标,并将拥堵目标与优化相关动力系统的可控性度量问题联系起来。我们根据(次)最佳配置来表征系统性能,并确定保证网络稳定性的条件。最后,我们通过微观模拟器评估了建议的建模和优化框架的好处。

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