TY - JOUR
T1 - Cellular automaton simulation of counter flow with paired pedestrians
AU - Xiong, Hui
AU - Guo, Xuedong
AU - Wang, Wuhong
AU - Tan, Huachun
AU - Wei, Heng
PY - 2011/12
Y1 - 2011/12
N2 - Knowledge on pedestrian behavior is the basis to build decision support system for crowd evacuation management in emergency. In this paper, the impact of paired walking behavior on pedestrian counter flow in a channel is studied. The pedestrian walking behaviors are simulated by the cellular automaton model and the pedestrians are classified as single right walker, single left walker, paired right walker, and paired left walker. Single walker can move forward, leftward, rightward or stand still. The paired pedestrians are considered as a combined unit similar to the single walker in terms of route choice and they can move to the same direction simultaneously. It is found that flow and velocity decrease with increase of the paired rate in case of stable density. Simulation results reveal the phase transitions in terms of density from free flow to the unstable flow and from the unstable flow to the congestion flow. However, the critical densities of phase transition are unaffected by the channel size.
AB - Knowledge on pedestrian behavior is the basis to build decision support system for crowd evacuation management in emergency. In this paper, the impact of paired walking behavior on pedestrian counter flow in a channel is studied. The pedestrian walking behaviors are simulated by the cellular automaton model and the pedestrians are classified as single right walker, single left walker, paired right walker, and paired left walker. Single walker can move forward, leftward, rightward or stand still. The paired pedestrians are considered as a combined unit similar to the single walker in terms of route choice and they can move to the same direction simultaneously. It is found that flow and velocity decrease with increase of the paired rate in case of stable density. Simulation results reveal the phase transitions in terms of density from free flow to the unstable flow and from the unstable flow to the congestion flow. However, the critical densities of phase transition are unaffected by the channel size.
KW - cellular automaton
KW - counter flow
KW - decision support system
KW - paired pedestrians
UR - http://www.scopus.com/inward/record.url?scp=84860857416&partnerID=8YFLogxK
U2 - 10.1080/18756891.2011.9727893
DO - 10.1080/18756891.2011.9727893
M3 - Article
AN - SCOPUS:84860857416
SN - 1875-6891
VL - 4
SP - 1415
EP - 1421
JO - International Journal of Computational Intelligence Systems
JF - International Journal of Computational Intelligence Systems
IS - 6
ER -