The purpose of this paper is to study the properties of kinetic models for traffic flow described by a Boltzmann-type approach and based on a continuous space of microscopic velocities. In our models, the particular structure of the collision kernel allows one to find the analytical expression of a class of steady-state distributions, which are characterized by being supported on a quantized space of microscopic speeds. The number of these velocities is determined by a physical parameter describing the typical acceleration of a vehicle and the uniqueness of this class of solutions is supported by numerical investigations. This shows that it is possible to have the full richness of a kinetic approach with the simplicity of a space of microsc...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
Abstract. This paper discusses (gas) kinetic models in vehicular traffic flow theory. In analogy to ...
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...
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...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
A system of vehicular traffic can be modeled in various ways, such as microscopic, macroscopic, and ...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
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...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
Abstract. This paper discusses (gas) kinetic models in vehicular traffic flow theory. In analogy to ...
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...
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...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
A system of vehicular traffic can be modeled in various ways, such as microscopic, macroscopic, and ...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...
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...
A way to derive consistently kinetic models for vehicular traffic from microscopic follow the leader...
Abstract. This paper discusses (gas) kinetic models in vehicular traffic flow theory. In analogy to ...
In this work we extend a recent kinetic traffic model [G. Puppo, M. Semplice, A. Tosin, G. Visconti,...