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M/G/c/c state dependent queuing model for a road traffic system of two sections in tandem

机译:两段式道路交通系统的M / G / c / c状态相关排队模型

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We propose in this article a M/G/c/c state dependent queuing model for road traffic flow. The model is based on finite capacity queuing theory which captures the stationary density-flow relationships. It is also inspired from the deterministic Godunov scheme for the road traffic simulation. We first present a reformulation of the existing linear case of M/G/c/c state dependent model, in order to use flow rather than speed variables. We then extend this model in order to consider upstream traffic demand and downstream traffic supply. After that, we propose the model for two road sections in tandem where both sections influence each other. In order to deal with this mutual dependence, we solve an implicit system given by an algebraic equation. Finally, we derive some performance measures (throughput and expected travel time). A comparison with results predicted by the M/G/c/c state dependent queuing networks shows that the model we propose here captures really the dynamics of the road traffic. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们在本文中提出了一种M / G / c / c状态相关的道路交通流排队模型。该模型基于有限容量排队理论,该理论捕获了固定的密度-流量关系。它也受到用于道路交通模拟的确定性Godunov方案的启发。为了使用流量而不是速度变量,我们首先提出对M / G / c / c状态相关模型的线性实例的重新表述。然后,我们扩展此模型,以考虑上游交通需求和下游交通供应。此后,我们提出了两个道路段串联的模型,两个路段都相互影响。为了处理这种相互依赖性,我们求解了由代数方程式给出的隐式系统。最后,我们得出一些性能指标(吞吐量和预期的旅行时间)。与由M / G / c / c状态相关的排队网络预测的结果进行比较,结果表明,我们在此提出的模型实际上捕获了道路交通的动态。 (C)2017 Elsevier Ltd.保留所有权利。

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