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Emergent Fundamental Pedestrian Flows from Cellular Automata Microsimulation

Victor J. BlueJeffrey L. Adler

Abstract

In recent years cellular automata (CA) have been successfully applied to modeling traffic flow. Use of a CA for modeling pedestrian flows is examined here. A particle hopping model for a single-directional pedestrian flow over a multilane walkway is presented. This model offers the advantage of effectively capturing the behaviors of pedestrians at the micro-level while attaining realistic macro-level activity. The emergent group behavior is an outgrowth of the interaction of the rule set in simulation. The results indicate that a heuristically derived minimal rule set produces flow patterns that closely resemble the accepted fundamental diagrams. Important parameters for determining the shape of the fundamental diagrams are examined. Key rules used in a vehicular traffic CA are tested for their applicability to the pedestrian CA model.

Traffic control and managementEvacuation and Crowd DynamicsTraffic Prediction and Management TechniquesCellular automatonPedestrianMicrosimulationSet (abstract data type)Computer scienceTraffic flow (computer networking)Key (lock)AutomatonFlow (mathematics)Macro
Citations
277
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10.80
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Cited by
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References
Two lane traffic simulations using cellular automata
Physica A Statistical Mechanics and its Applications · 1996 · 469 citations
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Emergent Fundamental Pedestrian Flows from Cellular Automata Microsimulation · Scinovex