AbstractWe study evacuation processes of pedestrian crowds with differently interacting groups using an extended floor field cellular automaton model. For homogeneous crowds floor field automaton models introduce a mutual dynamic floor field and apply an equal set of update rules. We use an extended model with group-specific floor fields inducing attraction and herding behaviour within respective groups only. As another approach we introduce group-related update rules to form couples with one pedestrian leading the other. We use these approaches to model groups with symmetric and asymmetric group interactions and study the impact of such groups on evacuation dynamics
We propose a potential field cellular automata model with a pushing force field to simulate the pede...
This paper proposes a discrete field cellular automaton (CA) model that integrates pedestrian hetero...
AbstractAn improved cellular automaton model is proposed to simulate the evacuation processes in a l...
AbstractWe study evacuation processes of pedestrian crowds with differently interacting groups using...
For numerical simulations of crowd dynamics in an evacuation we need a computationally light environ...
A new static floor field method for simulations of evacuation processes based on cellular automaton ...
Crowd evacuation under emergency is an important task of world public security research and practice...
In order to effectively depict the group evacuation behavior in the complicated three-dimensional sp...
Observations conducted by researchers revealed that the group interaction within crowds is a common ...
We present a 2-dimensional cellular automaton model for the simulation of pedestrian dynamics. Inspi...
ABSTRACT: This paper presents a microdiscrete evacuation model which emphasizes the human behavior a...
Abstract. Using a cellular automata approach we create models of peo-ple movement within buildings. ...
The sense of safety in public facilities for pedestrians can be shown by the availability of good in...
Pedestrian crowds often include social groups, i.e. pedestrians that walk together because of social...
In order to enhance the authenticity and accuracy simulation of passengers’ evacuation in ships, a n...
We propose a potential field cellular automata model with a pushing force field to simulate the pede...
This paper proposes a discrete field cellular automaton (CA) model that integrates pedestrian hetero...
AbstractAn improved cellular automaton model is proposed to simulate the evacuation processes in a l...
AbstractWe study evacuation processes of pedestrian crowds with differently interacting groups using...
For numerical simulations of crowd dynamics in an evacuation we need a computationally light environ...
A new static floor field method for simulations of evacuation processes based on cellular automaton ...
Crowd evacuation under emergency is an important task of world public security research and practice...
In order to effectively depict the group evacuation behavior in the complicated three-dimensional sp...
Observations conducted by researchers revealed that the group interaction within crowds is a common ...
We present a 2-dimensional cellular automaton model for the simulation of pedestrian dynamics. Inspi...
ABSTRACT: This paper presents a microdiscrete evacuation model which emphasizes the human behavior a...
Abstract. Using a cellular automata approach we create models of peo-ple movement within buildings. ...
The sense of safety in public facilities for pedestrians can be shown by the availability of good in...
Pedestrian crowds often include social groups, i.e. pedestrians that walk together because of social...
In order to enhance the authenticity and accuracy simulation of passengers’ evacuation in ships, a n...
We propose a potential field cellular automata model with a pushing force field to simulate the pede...
This paper proposes a discrete field cellular automaton (CA) model that integrates pedestrian hetero...
AbstractAn improved cellular automaton model is proposed to simulate the evacuation processes in a l...