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Lattice hydrodynamic model for traffic flow on curved road

机译:弯道交通流的格子水动力模型

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摘要

Considering topography conditions, economic factors and driving safety, in real traffic, a road may be built as curved road. Traffic flow on curved road is different from the one on straight road. And it is worth to investigate the influencing mechanism of traffic flow on curved road. In order to investigate traffic flow on curved road analytically, in this paper, an extended one-dimensional lattice hydrodynamic model for traffic flow on curved road is proposed. The stability condition is obtained by the use of linear stability analysis. It is shown that the stability of traffic flow varies with the radian, friction coefficient and curvature radius of curved road. The Burgers, Korteweg-de Vries and modified Korteweg-de Vries equations are derived to describe the nonlinear density waves in the stable, metastable and unstable regions, respectively. The simulations are given to verify the analytical results. The results, which obtained from the theoretical analysis and numerical simulations, show that traffic flow may be affected by the angle going into curved road, the increment of angle, friction coefficient and curvature radius of curved road. And the maximal theoretical flux and velocity of traffic flow are influenced by the above factors as well.
机译:考虑到地形条件,经济因素和行车安全,在实际交通中,道路可能会被构建为弯曲道路。弯道上的交通流量不同于直道上的流量。因此,有必要研究弯道交通流量的影响机理。为了分析弯道上的交通流,本文提出了一种扩展的弯道上交通流的一维网格流体力学模型。通过使用线性稳定性分析获得稳定性条件。结果表明,交通流量的稳定性随弯道的弧度,摩擦系数和曲率半径的变化而变化。推导了Burgers,Korteweg-de Vries和修正的Korteweg-de Vries方程,分别描述了稳定,亚稳态和不稳定区域的非线性密度波。通过仿真可以验证分析结果。通过理论分析和数值模拟得到的结果表明,交通流量可能会受到进入弯道的角度,弯道的增量,摩擦系数和弯道曲率半径的影响。而最大理论通量和交通流速度也受到上述因素的影响。

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