Comparing first order microscopic and macroscopic crowd models for an increasing number of massive agents
Analysis of PDEs
2016-03-22 v3 Dynamical Systems
Adaptation and Self-Organizing Systems
Abstract
In this paper a comparison between first order microscopic and macroscopic differential models of crowd dynamics is established for an increasing number of pedestrians. The novelty is the fact of considering massive agents, namely particles whose individual mass does not become infinitesimal when grows. This implies that the total mass of the system is not constant but grows with . The main result is that the two types of models approach one another in the limit , provided the strength and/or the domain of pedestrian interactions are properly modulated by at either scale. This is consistent with the idea that pedestrians may adapt their interpersonal attitudes according to the overall level of congestion.
Keywords
Cite
@article{arxiv.1306.2472,
title = {Comparing first order microscopic and macroscopic crowd models for an increasing number of massive agents},
author = {Alessandro Corbetta and Andrea Tosin},
journal= {arXiv preprint arXiv:1306.2472},
year = {2016}
}
Comments
26 pages, 8 figures