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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >An extended two-lane lattice hydrodynamic model for traffic flow on curved road with passing
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An extended two-lane lattice hydrodynamic model for traffic flow on curved road with passing

机译:交通流动延伸双车道格子流体动力学模型

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An extended two-lane lattice hydrodynamic model is proposed for the purpose of studying the effects of lane changing behavior and passing behavior on curved road. The main work of this paper is as follows. Firstly, the stability condition is acquired through the use of linear stability analysis and it reveals that passing effect as well as the angle of the curve road can affect the stability of traffic flow to some extent. Meanwhile, the stability of traffic flow varies greatly under different lane changing coefficients. The modified Korteweg de Vries (mKdV) equation is deduced to describe the characteristic of traffic jams near the critical point. Furthermore, the numerical simulations are performed and the results coincide well with the theoretical analysis. In conclusion, the angle of curved road and lane changing behavior have a positive impact on traffic flow stability, while passing effect, on the contrary, will aggravate traffic congestion. (C) 2019 Elsevier B.V. All rights reserved.
机译:提出了一种扩展的双车道格子动力学模型,以研究车道改变行为和传递行为在弯曲道路上的影响。本文的主要工作如下。首先,通过使用线性稳定性分析获取稳定性条件,并揭示了通过效果以及曲线道的角度可以影响交通流量的稳定性。同时,在不同的车道改变系数下交通流量的稳定性变化大。推导出修改的KorteWeg De VRIES(MKDV)方程来描述关键点附近的交通拥堵的特性。此外,执行数值模拟,并且结果与理论分析相一致。总之,弯曲道路和车道变化行为的角度对交通流量稳定性产生了积极影响,而通过效果,相反,将加剧交通拥堵。 (c)2019 Elsevier B.v.保留所有权利。

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