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Two-lane lattice hydrodynamic model considering the empirical lane-changing rate

机译:考虑经验巷改变率的双车道晶格流体动力学模型

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As a common behavior, lane changing has a significant influence on traffic flow. Lane changing is heavily dependent on the surrounding environment, so having a constant lane-changing rate in a traffic flow model would be unreasonable. Through an analysis of three empirical lane-changing datasets, we find that the lane-changing rate depends on traffic density. The structure of the lane-changing rate is similar to an optimization velocity function. We propose a new two-lane lattice model by modifying the lane-changing rate in the conservation equation. The linear stability of the new model and the effects of the parameters in the lane-changing rate on linear stability are analyzed through theory and simulation. Moreover, the new model and Nagatani's two-lane model are compared with actual observation results, which shows that the new model can better reproduce the observation results. (c) 2019 Elsevier B.V. All rights reserved.
机译:作为一种共同行为,车道改变对交通流量有重大影响。车道更换严重依赖于周围环境,因此在交通流量模型中具有恒定的车道变化率将是不合理的。通过分析三个经验性车道改变数据集,我们发现车道变化率取决于交通密度。车道改变速率的结构类似于优化速度函数。我们通过修改保护方程中的车道改变率来提出新的双车道格子模型。通过理论和仿真分析了新模型的线性稳定性和参数参数对线性稳定性的效果。此外,新模型和Nagatani的双线模型与实际观察结果进行了比较,表明新模型可以更好地再现观察结果。 (c)2019 Elsevier B.v.保留所有权利。

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