Agent-based Modeling of Emergency Building Evacuation
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[1] Dirk Helbing,et al. How simple rules determine pedestrian behavior and crowd disasters , 2011, Proceedings of the National Academy of Sciences.
[2] M. G. Cosenza,et al. Local versus global interactions in nonequilibrium transitions: A model of social dynamics. , 2006, Physical review. E, Statistical, nonlinear, and soft matter physics.
[3] Dirk Helbing,et al. Self-Organizing Pedestrian Movement , 2001 .
[4] Karen Boyce,et al. A study of evacuation from large retail stores , 2000 .
[5] S. Fortunato,et al. Statistical physics of social dynamics , 2007, 0710.3256.
[6] Vicsek,et al. Freezing by heating in a driven mesoscopic system , 1999, Physical review letters.
[7] F. Schweitzer,et al. Decelerating microdynamics can accelerate macrodynamics in the voter model. , 2007, Physical review letters.
[8] May Lim,et al. Self-organized queuing and scale-free behavior in real escape panic , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[9] Daniel Nilsson,et al. Social influence during the initial phase of a fire evacuation—Analysis of evacuation experiments in a cinema theatre , 2009 .
[10] J. Sime. Crowd psychology and engineering , 1995 .
[11] Michael Batty,et al. Predicting where we walk , 1997, Nature.
[12] T. Geisel,et al. The scaling laws of human travel , 2006, Nature.
[13] Dirk Helbing,et al. From Crowd Dynamics to Crowd Safety: a Video-Based Analysis , 2008, Adv. Complex Syst..
[14] Panagiotis D. Kaklis,et al. VELOS: A VR platform for ship-evacuation analysis , 2010, Comput. Aided Des..
[15] Xiaoping Zheng,et al. Simulation of evacuation processes in a square with a partition wall using a cellular automaton model for pedestrian dynamics , 2010 .
[16] C. Dorso,et al. Microscopic dynamics of pedestrian evacuation , 2005 .
[17] M. Macy,et al. FROM FACTORS TO ACTORS: Computational Sociology and Agent-Based Modeling , 2002 .
[18] Serge P. Hoogendoorn,et al. Simulation of pedestrian flows by optimal control and differential games , 2003 .
[19] S. Vogt,et al. Braking Reaching Movements: A Test of the Constant Tau-Dot Strategy Under Different Viewing Conditions , 2004, Journal of motor behavior.
[20] Katsuhiro Nishinari,et al. Simulation for pedestrian dynamics by real-coded cellular automata (RCA) , 2007 .
[21] A. Schadschneider,et al. Simulation of pedestrian dynamics using a two dimensional cellular automaton , 2001 .
[22] Michael Schreckenberg,et al. A cellular automaton model for freeway traffic , 1992 .
[23] S. Maniccam,et al. Traffic jamming on hexagonal lattice , 2003 .
[24] Luca Bruno,et al. Crowd-structure interaction in lively footbridges under synchronous lateral excitation: A literature review. , 2009, Physics of life reviews.
[25] Hauke Reuter,et al. Individual-based models as tools for ecological theory and application: Understanding the emergence of organisational properties in ecological systems , 2006 .
[26] Helbing,et al. Social force model for pedestrian dynamics. , 1995, Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics.
[27] Siuming Lo,et al. An evacuation model: the SGEM package , 2004 .
[28] A. Seyfried,et al. Basics of Modelling the Pedestrian Flow , 2005, physics/0506189.
[29] Baba,et al. Cellular Automaton Model for Random Walkers. , 1996, Physical review letters.
[30] V. A. Oven,et al. Modelling the evacuation of a high-rise office building in Istanbul , 2009 .
[31] Dirk Helbing,et al. Application of statistical mechanics to collective motion in biology , 1999 .
[32] N. R. Johnson. Panic at “The Who Concert Stampede”: An Empirical Assessment , 1987 .
[33] D. Helbing. A Mathematical Model for the Behavior of Individuals in a Social Field , 1994, cond-mat/9805194.
[34] J. Banavar,et al. Computer Simulation of Liquids , 1988 .
[35] T. Cova,et al. Microsimulation of Neighborhood Evacuations in the Urban–Wildland Interface , 2002 .
[36] Lubos Buzna,et al. Self-Organized Pedestrian Crowd Dynamics: Experiments, Simulations, and Design Solutions , 2005, Transp. Sci..
[37] T. Nagatani,et al. Jamming transition in pedestrian counter flow , 1999 .
[38] Paul R. Schrater,et al. Mechanisms of visual motion detection , 2000, Nature Neuroscience.
[39] Dirk Helbing,et al. Simulating dynamical features of escape panic , 2000, Nature.
[40] Taras I. Lakoba,et al. Modifications of the Helbing-Molnár-Farkas-Vicsek Social Force Model for Pedestrian Evolution , 2005, Simul..
[41] T. Nagatani,et al. Jamming transition of pedestrian traffic at a crossing with open boundaries , 2000 .
[42] I. Couzin,et al. Social interactions, information use, and the evolution of collective migration , 2010, Proceedings of the National Academy of Sciences.
[43] Vi Ha,et al. Agent-based modeling of a multi-room multi-floor building emergency evacuation , 2012 .
[44] T. Nagatani. The physics of traffic jams , 2002 .
[45] D. C. Rapaport,et al. The Art of Molecular Dynamics Simulation , 1997 .
[46] Eric Bonabeau,et al. Agent-based modeling: Methods and techniques for simulating human systems , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[47] Shaobo Liu,et al. Evacuation from a classroom considering the occupant density around exits , 2009 .
[48] Alan Penn,et al. Encoding Natural Movement as an Agent-Based System: An Investigation into Human Pedestrian Behaviour in the Built Environment , 2002 .
[49] Virginia P Sisiopiku,et al. Application of Traffic Simulation Modeling for Improved Emergency Preparedness Planning , 2007 .
[50] Berend Smit,et al. Understanding molecular simulation: from algorithms to applications , 1996 .
[51] Awdhesh Gupta,et al. SAFE-R: a new model to study the evacuation profile of a building , 2004 .
[52] Constantinos I. Siettos,et al. Escape Dynamics in Office Buildings: Using Molecular Dynamics to Quantify the Impact of Certain Aspects of Human Behavior During Emergency Evacuation , 2010 .
[53] Yoshihiro Ishibashi,et al. Self-Organized Phase Transitions in Cellular Automaton Models for Pedestrians , 1999 .
[54] I. Couzin,et al. Inferring the structure and dynamics of interactions in schooling fish , 2011, Proceedings of the National Academy of Sciences.