Subcritical Hopf bifurcations in a car-following model with reaction-time delay

Author:

Orosz Gábor1,Stépán Gábor2

Affiliation:

1. Bristol Centre for Applied Nonlinear Mathematics, Department of Engineering Mathematics, University of BristolQueen's Building, University Walk, Bristol BS8 1TR, UK

2. Department of Applied Mechanics, Budapest University of Technology and EconomicsPO Box 91, Budapest 1521, Hungary

Abstract

A nonlinear car-following model of highway traffic is considered, which includes the reaction-time delay of drivers. Linear stability analysis shows that the uniform flow equilibrium of the system loses its stability via Hopf bifurcations and thus oscillations can appear. The stability and amplitudes of the oscillations are determined with the help of normal-form calculations of the Hopf bifurcation that also handles the essential translational symmetry of the system. We show that the subcritical case of the Hopf bifurcation occurs robustly, which indicates the possibility of bistability. We also show how these oscillations lead to spatial wave formation as can be observed in real-world traffic flows.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference27 articles.

1. Dynamical model of traffic congestion and numerical simulation

2. Analysis of optimal velocity model with explicit delay

3. Analytical and symbolically-assisted investigations of Hopf bifurcations in delay-differential equations;Campbell S.A;Can. Appl. Math. Q,1995

4. Modifications of the optimal velocity traffic model to include delay due to driver reaction time

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