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A Multilane Traffic Flow Model Accounting for Lane Width, Lane-Changing and the Number of Lanes

机译:考虑车道宽度,车道变更和车道数量的多车道交通流模型

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Multilane widely exists in the urban traffic system and its traffic flow is more complex than the single-lane traffic flow since it may be affected by each lane's width, the number of lanes and lane-changing. In this paper, we first use empirical data to study the impacts of lane width and the number of lanes on multilane traffic flow, then propose a new multilane traffic flow model and finally use numerical tests to explore the influences of the variation of lane width, closing lane and changing the number of lanes on each lane's traffic flow. The numerical results show that the new model can qualitatively reproduce the complex traffic phenomena resulted by the variation of lane width, closing lane and changing the number of lanes and that changing each lane's width, closing lane and changing the number of lanes may reduce the reliability of the multilane traffic system. In addition, some numerical results are qualitatively consistent with the phenomena that are resulted by the heavy rain in Beijing on July 21, 2012, which shows that our model can perfectly reproduce some complex traffic phenomena in multilane system from the qualitative perspective.
机译:多车道广泛存在于城市交通系统中,其交通流比单车道交通流更为复杂,因为它可能会受到每个车道的宽度,车道数和车道变换的影响。在本文中,我们首先使用经验数据来研究车道宽度和车道数量对多车道交通流的影响,然后提出一种新的多车道交通流模型,最后使用数值试验来探讨车道宽度变化的影响,关闭车道并更改每条车道的车流数量。数值结果表明,新模型可以定性地再现由于车道宽度变化,关闭车道和改变车道数量而导致的复杂交通现象,而改变每个车道的宽度,关闭车道和改变车道数量可能会降低可靠性。多车道交通系统。此外,一些数值结果与2012年7月21日北京大雨造成的现象在质量上是一致的,这表明从定性的角度来看,我们的模型可以完美地再现多车道系统中的一些复杂交通现象。

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