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A New Car Following Model: Comprehensive Optimal Velocity Model
引用本文:田钧方,贾斌,李新刚. A New Car Following Model: Comprehensive Optimal Velocity Model[J]. 理论物理通讯, 2011, 55(6): 1119-1126
作者姓名:田钧方  贾斌  李新刚
基金项目:*Supported by the National Natural Science Foundation of China under Grant Nos. 71071013, 71001004, and 71071012, Foundation of Beijing Jiaotong University under Grant No. 2009JBZ012-2
摘    要:

关 键 词:速度模型  综合优化  线性稳定性分析  新车  数值模拟  稳定性条件  非线性分析  跟车距离
收稿时间:2010-08-18

A New Car Following Model: Comprehensive Optimal Velocity Model
TIAN Jun-Fang,JIA Bin,LI Xing-Gang. A New Car Following Model: Comprehensive Optimal Velocity Model[J]. Communications in Theoretical Physics, 2011, 55(6): 1119-1126
Authors:TIAN Jun-Fang  JIA Bin  LI Xing-Gang
Affiliation:MOE Key Laboratory for Urban Transportation Complex Systems Theory;and Technology, Beijing Jiaotong University, Beijing 100044, China
Abstract:In this paper, we present a new car-following model, i.e. comprehensive optimal velocity model (COVM), whose optimal velocity function not only depends on the following distance of the preceding vehicle, but also depends on the velocity difference with preceding vehicle. Simulation results show that COVM is an improvement over the previous ones theoretically. Then, the stability condition of the model is obtained by the linear stability analysis, which has shown that the model could obtain a bigger stable region thanprevious models in the phase diagram. Through the nonlinear analysis, the Burgers, Korteweg-de Vries (KdV) and modified KdV (mKdV) equations are derived for the triangular shock wave, the soliton wave, and the kink-antikink soliton wave. At the same time, numerical simulations are also carried out to show that the model could simulate these density waves.
Keywords:car following   traffic flow
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