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首页> 外文期刊>The European physical journal, B. Condensed matter physics >Analysis of stability and density waves of traffic flow model in an ITS environment
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Analysis of stability and density waves of traffic flow model in an ITS environment

机译:ITS环境下交通流模型的稳定性和密度波分析

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摘要

By introducing relative velocities of arbitrary number of cars ahead into the full velocity difference models (FVDM), we present a forward looking relative velocity model (FLRVM) of cooperative driving control system. To our knowledge, the model is an improvement over the similar extension in the forward looking optimal velocity models (FLOVM), because it is more reasonable and realistic in implement of incorporating intelligent transportation system in traffic. Then the stability criterion is investigated by the linear stability analysis with finding that new consideration theoretically lead to the improvement of the stability of traffic flow, and the validity of our theoretical analysis is confirmed by direct simulations. In addition, nonlinear analysis of the model shows that the three waves: triangular shock wave, soliton wave and kink-antikink wave appear respectively in stable, metastable and unstable regions. These correspond to the solutions of the Burgers equation, Korteweg-de Vries (KdV) equation and modified Korteweg-de Vries (mKdV) equation.
机译:通过将任意数量汽车的相对速度引入全速差模型(FVDM),我们提出了一种协同驾驶控制系统的前瞻性相对速度模型(FLRVM)。就我们所知,该模型是对前瞻性最佳速度模型(FLOVM)中类似扩展的改进,因为在实现将智能交通系统纳入交通量方面,该模型更为合理和现实。然后通过线性稳定性分析研究了稳定性判据,发现从理论上讲,新的考虑导致了交通流稳定性的提高,而直接仿真验证了我们理论分析的有效性。此外,对该模型的非线性分析表明,三角波,孤子波和扭结-抗扭波这三种波分别出现在稳定,亚稳态和不稳定区域。这些对应于Burgers方程,Korteweg-de Vries(KdV)方程和改进的Korteweg-de Vries(mKdV)方程的解。

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