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Research on critical characteristics of highway traffic flow based on three phase traffic theory

机译:基于三相交通理论的公路交通流量的关键特性研究

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In this paper, based on further development of the rules of Kerner-Klenov-Wolf (KKW) cellular automaton (CA) traffic flow model, we propose a Cellular Automaton model for single and two lane highway traffic flow in the framework of Kerner's three-phase traffic theory. This model divides the traffic running process into two parts: speed adaption behavior under safety conditions and vehicle disturbances. The free flow, synchronized flow, wide moving jams and different first-order phases between them can be simulated. The results are verified in accordance with the fundamental hypothesis and results of the three-phase flow theory after analyzing the data measured by the virtual probe. In the lane changing possibility and road density figures, it is found that the lane changing possibility of free flow is always greater than that in the synchronized flow. And the lane changing possibility is randomly distributed in a two dimensional region which is consistent with the synchronized flow features. In the areas of the wide moving jams, the lane changing possibility is gradually reduced to 0. The results show that there is a close correlation between phase change and the significant reduction of the lane changing possibility. The lane changing behavior has the dual effect of maintaining the vehicle's current driving state and inducing the phase transition. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本文中,基于对克纳-Klenov - 沃尔夫(KKW)元胞自动机(CA)交通流模型的规则进一步的发展,我们建议在克纳的三框架内的单,双车道的高速公路交通流元胞自动机模型相交通理论。该模型将流量运行过程分为两部分:安全条件和车辆干扰下的速度适应行为。可以模拟自由流动,同步流动,宽移动的卡纸和不同的一阶阶段。在分析虚拟探测器测量的数据后,根据三相流理论的基本假设和结果验证结果。在车道改变的可能性和道路密度数据中,发现车道改变自由流动的可能性总是大于同步流程中的通道。并且车道改变的可能性是随机分布在与同步流特征一致的二维区域中。在宽移动的卡纸的区域中,车道改变的可能性逐渐降低到0.结果表明相变与车道变化可能性的显着降低之间存在紧密相关性。车道改变行为具有维护车辆电流驱动状态并诱导相变的双重效果。 (c)2019 Elsevier B.v.保留所有权利。

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