Multiclass first-order traffic model using stochastic fundamental diagrams

D. Ngoduy
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引用次数: 116

Abstract

The first-order continuum traffic model has been extensively studied in the state-of-the-art of traffic flow theory due to its simplicity and capability to represent many real traffic problems, such as a shock-wave formation. Furthermore, recent extension of the first-order model to multiclass traffic dynamics has revealed some interesting non-linear traffic phenomena such as hysteresis and capacity drop. However, most of the existing first-order continuum models do not display the widely scattered flow–density relationship. We argue in this article that the widely scattered flow–density relationship might be caused by the random variations in driving behaviour. It is shown that both of the hysteresis transitions and the wide scattering can be reproduced by a multiclass first-order model with a stochastic setting in the model parameters. The simulation results support our findings and are in good agreement with the real data.
基于随机基本图的多类一阶交通模型
一阶连续交通模型由于其简单且能够反映许多实际交通问题,如冲击波的形成,在交通流理论中得到了广泛的研究。此外,最近将一阶模型推广到多类交通动力学中,揭示了一些有趣的非线性交通现象,如迟滞和容量下降。然而,现有的一阶连续介质模型大多没有表现出广泛分散的流密度关系。本文认为,广泛分散的流密度关系可能是由驱动行为的随机变化引起的。结果表明,在模型参数设置为随机的多类一阶模型中,滞回跃迁和宽散射都可以被再现。仿真结果支持了我们的研究结果,与实际数据吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Transportmetrica
Transportmetrica 工程技术-运输科技
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