We study spatially non-homogeneous kinetic models for vehicular traffic ow. Classical formulations, as for instance the BGK equation, lead to unconditionally unstable solutions in the congested regime of traffic. We address this issue by deriving a modified formulation of the BGK-type equation. The new kinetic model allows to reproduce conditionally stable nonequilibrium phenomena in traffic ow. In particular, stop and go waves appear as bounded backward propagating signals occurring in bounded regimes of the density where the model is unstable. The BGK-type model introduced here also offers the mesoscopic description between the microscopic follow-the-leader model and the macroscopic Aw-Rascle and Zhang model
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
Starting from microscopic interaction rules we derive kinetic models of Fokker--Planck type for veh...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
Starting from interaction rules based on two levels of stochasticity we study the influence of the m...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
Starting from interaction rules based on two levels of stochasticity we study the influence of the m...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
Starting from microscopic interaction rules we derive kinetic models of Fokker--Planck type for veh...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
Starting from interaction rules based on two levels of stochasticity we study the influence of the m...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
The purpose of this paper is to study the properties of kinetic models for traffic flow described by...
Starting from interaction rules based on two levels of stochasticity we study the influence of the m...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
Starting from microscopic interaction rules we derive kinetic models of Fokker--Planck type for veh...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...