Cellular Automata Model of Emergent Collective Bi-Directional Pedestrian Dynamics
Author(s) -
Victor J. Blue,
Jeffrey L. Adler
Publication year - 2000
Publication title -
the mit press ebooks
Language(s) - English
Resource type - Book series
DOI - 10.7551/mitpress/1432.003.0061
Subject(s) - cellular automaton , pedestrian , dynamics (music) , computer science , automaton , artificial intelligence , sociology , engineering , transport engineering , pedagogy
∗ vjblue@gw.dot.state.ny.us ‡ adlerj@rpi.edu ABSTRACT This paper describes the application of an Artificial Life cellular automata (CA) microsimulation to model the emergent collective behavior of bi-directional pedestrian flows. Since pedestrian flow is inherently complex, even more so than vehicular flow, previous CA models developed for vehicle flow are not directly applicable. It is shown that a relatively small rule set is capable of effectively capturing the collective behaviors of pedestrians who are autonomous at the micro-level. The model provides for simulating three modes of bi-directional pedestrian flow: (a) flows in directionally separated lanes, (b) interspersed flow, and (c) dynamic multi-lane flow. The emergent behavior that arises from the model is consistent with well-established fundamental properties of pedestrian flows.
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