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Traffic flow optimisation in presence of vehicle automation and communication systems - Part I: A first-order multi-lane model for motorway traffic

机译:存在车辆自动化和通信系统时的交通流优化-第一部分:高速公路交通的一阶多车道模型

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摘要

Proposed or emerging vehicle automation and communication systems (VACS) may contribute to the mitigation of motorway traffic congestion on the basis of appropriate traffic control strategies. In this context, this paper presents,a novel first-order multi-lane macroscopic traffic flow model for motorways which is mainly intended for use within a related optimal control problem formulation. The model's starting point is close to the well-known CTM (cell-transmission model), which is modified and extended to consider additional aspects of the traffic dynamics, such as lane changing and the capacity drop, via appropriate procedures for computing lateral and longitudinal flows. The model has been derived with a view to combine realistic traffic flow description with a simple (linear or piecewise linear) mathematical form, which can be exploited for efficient optimal control problem formulations, as described in a companion (Part II) paper. Although the model has been primarily derived for use in future traffic conditions including VACS, it may also be used for conventional traffic flow representation. In fact, the accuracy of the proposed modelling approach is demonstrated through calibration and validation procedures using real data from an urban motorway located in Melbourne, Australia. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在适当的交通控制策略的基础上,拟议或正在出现的车辆自动化和通信系统(VACS)可能有助于缓解高速公路交通拥堵。在此背景下,本文提出了一种新颖的高速公路一阶多车道宏观交通流模型,该模型主要用于相关的最优控制问题表述。该模型的起点接近众所周知的CTM(信元传输模型),该模型经过适当的计算横向和纵向程序,对其进行了修改和扩展,以考虑交通动态的其他方面,例如车道变更和容量下降。流。得出该模型的目的是将现实的交通流描述与简单的(线性或分段线性)数学形式相结合,如随附的第二部分所述,可以将其用于有效的最优控制问题公式化。尽管该模型主要是为在未来的交通状况(包括VACS)中使用而推导的,但它也可以用于常规交通流表示。实际上,通过使用来自澳大利亚墨尔本市区高速公路的真实数据的校准和验证程序,证明了所提出建模方法的准确性。 (C)2015 Elsevier Ltd.保留所有权利。

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