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VALIDATION OF CA MODELS OF PEDESTRIAN DYNAMICS WITH FUNDAMENTAL DIAGRAMS 

Authors: A. Schadschneider a; A. Seyfried b
Affiliations:   a Institut fuumlr Theoretische Physik, Universitaumlt zu Koumlln, Koumlln, Germany
b Juumllich Supercomputing Centre, Forschungszentrum Juumllich GmbH, Juumllich, Germany
DOI: 10.1080/01969720902922400
Publication Frequency: 8 issues per year
Published in: journal Cybernetics and Systems, Volume 40, Issue 5 July 2009 , pages 367 - 389
Formats available: HTML (English) : PDF (English)
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Abstract

In recent years, several approaches for modelling pedestrian dynamics have been proposed. However, so far not much attention has been paid to their quantitative validation. Instead the focus has been on the reproduction of empirically observed collective phenomena like the dynamical formation of lanes. Although this gives an indication of the realism of the model, for practical applications as in safety analysis, reliable quantitative predictions are required. We discuss the experimental situation focusing on the fundamental diagram that is essential for calibration. Furthermore, we present a cellular automaton, the floor field model, which forms the basis for various multi-agent simulations. Apart from the properties of its fundamental diagram, we discuss the role of conflicts and friction effects and their influence on evacuation times.
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