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On the continuum approximation of the on-and-off signal control on dynamic traffic networks

机译:动态交通网络中通断信号控制的连续逼近

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摘要

In the modeling of traffic networks, a signalized junction is typically treated using a binary variable to model the on-and-off nature of signal operation. While accurate, the use of binary variables can cause problems when studying large networks with many intersections. Instead, the signal control can be approximated through a continuum approach where the on-and-off control variable is replaced by a continuous priority parameter. Advantages of such approximation include elimination of the need for binary variables, lower time resolution requirements, and more flexibility and robustness in a decision environment. It also resolves the issue of discontinuous travel time functions arising from the context of dynamic traffic assignment. Despite these advantages in application, it is not clear from a theoretical point of view how accurate is such continuum approach; i.e., to what extent is this a valid approximation for the on-and-off case. The goal of this paper is to answer these basic research questions and provide further guidance for the application of such continuum signal model. In particular, by employing the Lighthill-Whitham-Richards model (Lighthill and Whitham, 1955; Richards, 1956) on a traffic network, we investigate the convergence of the on-and-off signal model to the continuum model in regimes of diminishing signal cycles. We also provide numerical analyses on the continuum approximation error when the signal cycles are not infinitesimal. As we explain, such convergence results and error estimates depend on the type of fundamental diagram assumed and whether or not vehicle spillback occurs to the signalized intersection in question. Finally, a traffic signal optimization problem is presented and solved which illustrates the unique advantages of applying the continuum signal model instead of the on-and-off model.
机译:在交通网络建模中,通常使用二进制变量来处理信号化路口,以对信号操作的通断特性进行建模。虽然准确,但在研究具有多个交叉点的大型网络时,使用二进制变量会引起问题。取而代之的是,可以通过一种连续方法来近似信号控制,其中,将开和关控制变量替换为连续的优先级参数。这种近似的优点包括消除了对二进制变量的需求,更低的时间分辨率要求以及决策环境中更高的灵活性和可靠性。它还解决了由于动态交通分配而引起的旅行时间函数不连续的问题。尽管在应用中具有这些优点,但从理论角度来看,这种连续方法的准确性如何尚不清楚。即,对于开/关情况,这在多大程度上是有效的近似值。本文的目的是回答这些基础研究问题,并为此类连续信号模型的应用提供进一步指导。特别是,通过在交通网络上采用Lighthill-Whitham-Richards模型(Lighthill和Whitham,1955年; Richards,1956年),我们研究了在信号减弱的情况下,通断信号模型到连续体模型的收敛性。周期。当信号周期不是无限小时,我们还提供了关于连续近似误差的数值分析。正如我们所解释的,这种收敛结果和误差估计取决于所假定的基本图的类型以及所讨论的信号交叉口是否发生车辆回弹。最后,提出并解决了交通信号优化问题,该问题说明了应用连续信号模型而不是开关模型的独特优势。

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