International audienceWe study a system of self-propelled particles which interact with their neighbors via alignment and repulsion. The particle velocities result from self-propulsion and repulsion by close neighbors. The direction of self-propulsion is continuously aligned to that of the neighbors, up to some noise. A continuum model is derived starting from a mean-field kinetic description of the particle system. It leads to a set of non conservative hydrodynamic equations. We provide a numerical validation of the continuum model by comparison with the particle model. We also provide comparisons with other self-propelled particle models with alignment and repulsion
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
International audienceWe derive macroscopic dynamics for self-propelled particles in a fluid. The st...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...
International audienceWe study a system of self-propelled particles which interact with their neighb...
International audienceIn this paper, we review recent developments on the derivation and properties ...
In this paper, we review recent developments on the derivation and properties of macroscopic models ...
The goal of these lecture notes is to present in a unified way various models for the dynamics of al...
We study at particle and kinetic level a collective behavior model based on three phenomena: self-pr...
Abstract. We argue that the model introduced by Vicsek et al. in which self-propelled particles alig...
A continuum model for a population of self-propelled particles interacting through nematic alignment...
International audienceIn this paper, we review recent developments on the derivation and properties ...
International audienceWhen particles move at a constant speed and have the tendency to align their d...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
International audienceWe derive macroscopic dynamics for self-propelled particles in a fluid. The st...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...
International audienceWe study a system of self-propelled particles which interact with their neighb...
International audienceIn this paper, we review recent developments on the derivation and properties ...
In this paper, we review recent developments on the derivation and properties of macroscopic models ...
The goal of these lecture notes is to present in a unified way various models for the dynamics of al...
We study at particle and kinetic level a collective behavior model based on three phenomena: self-pr...
Abstract. We argue that the model introduced by Vicsek et al. in which self-propelled particles alig...
A continuum model for a population of self-propelled particles interacting through nematic alignment...
International audienceIn this paper, we review recent developments on the derivation and properties ...
International audienceWhen particles move at a constant speed and have the tendency to align their d...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...
International audienceWe derive macroscopic dynamics for self-propelled particles in a fluid. The st...
39pInternational audienceWe study at particle and kinetic level a collective behavior model based on...