22 pagesWe analyze numerically two macroscopic models of crowd dynamics: the classical Hughes model and the second order model being an extension to pedestrian motion of the Payne-Whitham vehicular traffic model. The desired direction of motion is determined by solving an eikonal equation with density dependent running cost, which results in minimization of the travel time and avoidance of congested areas. We apply a mixed finite volume-finite element method to solve the problems and present error analysis for the eikonal solver, gradient computation and the second order model yielding a first order convergence. We show that Hughes' model is incapable of reproducing complex crowd dynamics such as stop-and-go waves and clogging at bottleneck...
Roger Hughes proposed a macroscopic model for pedestrian dynamics, in which individuals seek to mini...
AbstractWe analyze numerically some macroscopic models of pedestrian motion to compare their capabil...
This paper deals with the mathematical modelling of crowd dynamics within the framework of continu...
22 pagesWe analyze numerically two macroscopic models of crowd dynamics: the classical Hughes model ...
Abstract. We analyze numerically two macroscopic models of crowd dynamics: the classical Hughes mode...
We analyse the results of a finite element simulation of a macroscopic model, which describes the mo...
We analyse the results of a finite element simulation of a macroscopic model, which describes the mo...
We analyse the results of a finite element simulation of a macroscopic model, which describes the mo...
AbstractWe analyze numerically some macroscopic models of pedestrian motion to compare their capabil...
International audienceWe analyze numerically some macroscopic models of pedestrian motion to compare...
International audienceWe analyze numerically some macroscopic models of pedestrian motion to compare...
International audienceWe analyze numerically some macroscopic models of pedestrian motion to compare...
In recent years, there has been an increasing interest in modeling crowd and evacuation dynamics. Pe...
This paper develops a higher-order macroscopic model of pedestrian crowd dynamics derived from fluid...
In this article we deal with numerical solution of macroscopic models of pedestrian movement. From a...
Roger Hughes proposed a macroscopic model for pedestrian dynamics, in which individuals seek to mini...
AbstractWe analyze numerically some macroscopic models of pedestrian motion to compare their capabil...
This paper deals with the mathematical modelling of crowd dynamics within the framework of continu...
22 pagesWe analyze numerically two macroscopic models of crowd dynamics: the classical Hughes model ...
Abstract. We analyze numerically two macroscopic models of crowd dynamics: the classical Hughes mode...
We analyse the results of a finite element simulation of a macroscopic model, which describes the mo...
We analyse the results of a finite element simulation of a macroscopic model, which describes the mo...
We analyse the results of a finite element simulation of a macroscopic model, which describes the mo...
AbstractWe analyze numerically some macroscopic models of pedestrian motion to compare their capabil...
International audienceWe analyze numerically some macroscopic models of pedestrian motion to compare...
International audienceWe analyze numerically some macroscopic models of pedestrian motion to compare...
International audienceWe analyze numerically some macroscopic models of pedestrian motion to compare...
In recent years, there has been an increasing interest in modeling crowd and evacuation dynamics. Pe...
This paper develops a higher-order macroscopic model of pedestrian crowd dynamics derived from fluid...
In this article we deal with numerical solution of macroscopic models of pedestrian movement. From a...
Roger Hughes proposed a macroscopic model for pedestrian dynamics, in which individuals seek to mini...
AbstractWe analyze numerically some macroscopic models of pedestrian motion to compare their capabil...
This paper deals with the mathematical modelling of crowd dynamics within the framework of continu...