The Negative Dependence of Evacuation Time on Group Size Under a Binding Mechanism

Author:

Wang Tianyi,Chen Yu

Abstract

This paper initiates the analysis of the relation between evacuation time and group size by applying an extended floor-field cellular automaton model. Multi-speed-agents, a group structure containing leaders and followers, and a local-density-dependent dynamic field are implemented all together in the model. Most importantly, a complete binding mechanism which includes leaders waiting for followers is brought up for the first time. A counterintuitive negative relation between evacuation time and group size is discovered in one-group-type simulations, which corresponds to a previous experimental finding. An entropy-like quantity, namely the mixing index, is constructed to analyze the cause of that relation. It is found that under the binding mechanism, the higher degree of group mixing, the longer the evacuation time will be. Moreover, through a constant scale transformation, it is shown that the mixing index can be a key indicator that contains useful information about the evacuation system.

Publisher

Frontiers Media SA

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy,Mathematical Physics,Materials Science (miscellaneous),Biophysics

Reference23 articles.

1. Simulation of Evacuation Processes Using a Bionics-Inspired Cellular Automaton Model for Pedestrian Dynamics;Kirchner;Physica A: Stat Mech its Appl,2002

2. Update Schemes of Multi-Velocity Floor Field Cellular Automaton for Pedestrian Dynamics;Luo;Physica A: Stat Mech its Appl,2018

3. A Review of Cellular Automata Models for Crowd Evacuation;Li;Physica A: Stat Mech its Appl,2019

4. Social Force Model for Pedestrian Dynamics;Helbing;Phys Rev E,1995

5. Abnormal Crowd Behavior Detection Using Social Force Model;Mehran

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