J Shanghai Jiaotong Univ Sci ›› 2021, Vol. 26 ›› Issue (4): 522-533.doi: 10.1007/s12204-021-2287-3
• Computer & Communication Engineering • Previous Articles Next Articles
CHEN Feier *(陈飞儿), ZHAO Qiyuan (赵祺源), CAO Mingming (曹明明), CHEN Jiayi (陈嘉屹), FU Guiyuan (傅桂元)
Online:
2021-08-28
Published:
2021-06-13
Contact:
CHEN Feier *(陈飞儿)
E-mail:chenfeier@sjtu.edu.cn
CLC Number:
CHEN Feier (陈飞儿), ZHAO Qiyuan (赵祺源), CAO Mingming (曹明明), CHEN Jiayi (陈嘉屹), FU Guiyuan (傅桂元). Adaptive Agent-Based Modeling Framework for Collective Decision-Making in Crowd Building Evacuation[J]. J Shanghai Jiaotong Univ Sci, 2021, 26(4): 522-533.
[1] | GWYNNE S, GALEA E R, OWEN M, et al. A review of the methodologies used in the computer simulation of evacuation from the built environment [J]. Building and Environment, 1999, 34(6): 741-749. |
[2] | TEKNOMO K, TAKEYAMA Y, INAMURA H. Review on microscopic pedestrian simulation model[C]//Proceedings Japan Society of Civil EngineeringConference. Morioka, Japan: Japan Society of CivilEngineering, 2000: 1-2. |
[3] | KOK V J, LIM M K, CHAN C S. Crowd behavior analysis: A review where physics meets biology [J].Neurocomputing, 2016, 177: 342-362. |
[4] | ADRIAN J, BODE N, AMOS M, et al. A glossary for research on human crowd dynamics [J]. Collective Dynamics, 2019, 4: A19. |
[5] | ZHENG X P, ZHONG T K, LIU M T. Modeling crowd evacuation of a building based on seven methodological approaches [J]. Building and Environment, 2009,44(3): 437-445. |
[6] | AL-NABHAN N, AL-ABOODY N, ALIM AL ISLAM A B M. A hybrid IoT-based approach for emergency evacuation [J]. Computer Networks, 2019, 155: 87-97. |
[7] | HELBING D, MOLN′AR P. Social force model for pedestrian dynamics [J]. Physical Review E, 1995,51(5): 4282. |
[8] | HELBING D, TILCH B. Generalized force model of traffic dynamics [J]. Physical Review E, 1998, 58(1):133. |
[9] | FREDKIN E, TOFFOLI T. Conservative logic [J].International Journal of Theoretical Physics, 1982,21(3/4): 219-253. |
[10] | BLUE V J, ADLER J L. Cellular automata microsimulation for modeling bi-directional pedestrian walkways[J]. Transportation Research Part B: Methodological,2001, 35(3): 293-312. |
[11] | HENDERSON L F. The statistics of crowd fluids [J].Nature, 1971, 229(5284): 381-383. |
[12] | HA V, LYKOTRAFITIS G. Agent-based modeling of a multi-room multi-floor building emergency evacuation[J]. Physica A: Statistical Mechanics and Its Applications,2012, 391(8): 2740-2751. |
[13] | LO S M, HUANG H C, WANG P, et al. A game theory based exit selection model for evacuation [J]. Fire Safety Journal, 2006, 41(5): 364-369. |
[14] | SALOMA C, PEREZ G J, TAPANG G, et al. Selforganized queuing and scale-free behavior in real escape panic [J]. Proceedings of the National Academy of Sciences of the United States of America, 2003,100(21): 11947-11952. |
[15] | LEWIN K. Field theory in social science [J]. The American Catholic Sociological Review, 1951, 12(2):103-104. |
[16] | JOHANSSON F, PETERSON A, TAPANI A.Waiting pedestrians in the social force model [J]. Physica A:Statistical Mechanics and Its Applications, 2015, 419:95-107. |
[17] | LI W H, GONG J H, YU P, et al. Simulation and analysis of congestion risk during escalator transfers using a modified social force model [J]. Physica A: Statistical Mechanics and Its Applications, 2015, 420: 28-40. |
[18] | HAN Y B, LIU H. Modified social force model based on information transmission toward crowd evacuation simulation [J]. Physica A: Statistical Mechanics and Its Applications, 2017, 469: 499-509. |
[19] | FARINA F, FONTANELLI D, GARULLI A, et al.Walking ahead: The headed social force model [J].PLoS One, 2017, 12(1): e0169734. |
[20] | LIU B, LIU H, ZHANG H, et al. A social force evacuation model driven by video data [J]. Simulation Modelling Practice and Theory, 2018, 84: 190-203. |
[21] | PELECHANO N, ALLBECK J M, BADLER N I.Controlling individual agents in high-density crowd simulation [C]//ACM SIGGRAPH/Eurographics Symposium on Computer Animation. San Diego, USA:ACM, 2007: 99-108. |
[22] | HAGHANI M, SARVI M. Crowd behaviour and motion:Empirical methods [J]. Transportation Research Part B: Methodological, 2018, 107: 253-294. |
[23] | KRETZ T. On oscillations in the social force model [J].Physica A: Statistical Mechanics and Its Applications,2015, 438: 272-285. |
[24] | WENG W G, CHEN T, YUAN H Y, et al. Cellular automaton simulation of pedestrian counter flow with different walk velocities [J]. Physical Review E, 2006,74: 036102. |
[25] | SONG W G, YU Y F, WANG B H, et al. Evacuation behaviors at exit in CA model with force essentials: A comparison with social force model [J]. Physica A: Statistical Mechanics and Its Applications, 2006, 371(2):658-666. |
[26] | YANG L Z, ZHAO D L, LI J, et al. Simulation of evacuation behaviors in fire using spacial grid [J]. Progress in Natural Science, 2004, 14(7): 614-618. |
[27] | GUO Y W, MILEHAM A R, OWEN G W, et al. Operation sequencing optimization for five-axis prismatic parts using a particle swarm optimization approach[J]. Proceedings of the Institution of Mechanical Engineers,Part B: Journal of Engineering Manufacture,2009, 223(5): 485-497. |
[28] | LU L L, CHAN C Y, WANG J, et al. A study of pedestrian group behaviors in crowd evacuation based on an extended floor field cellular automaton model [J].Transportation Research Part C: Emerging Technologies,2017, 81: 317-329. |
[29] | PEREIRA L A, BURGARELLI D, DUCZMAL L H,et al. Emergency evacuation models based on cellular automata with route changes and group fields [J].Physica A: Statistical Mechanics and Its Applications,2017, 473: 97-110. |
[30] | CZERNIAK J M, ZARZYCKI H, APIECIONEK L, et al. A cellular automata-based simulation tool for real fire accident prevention [J]. Mathematical Problems in Engineering, 2018, 2018: 1-12. |
[31] | GOLDSTONE R L, JANSSEN M A. Computational models of collective behavior [J]. Trends in Cognitive Sciences, 2005, 9(9): 424-430. |
[32] | LUBA′S R, MYCEK M, PORZYCKI J, et al. Verification and validation of evacuation models-methodology expansion proposition [J]. Transportation Research Procedia, 2014, 2: 715-723. |
[33] | MACAL C M. Everything you need to know about agent-based modelling and simulation [J]. Journal of Simulation, 2016, 10(2): 144-156. |
[34] | MARZOUK M, MOHAMED B. Integrated agentbased simulation and multi-criteria decision making approach for buildings evacuation evaluation [J].Safety Science, 2019, 112: 57-65. |
[35] | BONABEAU E. Agent-based modeling: Methods and techniques for simulating human systems [J]. PNAS,2002, 99(Sup.3): 7280-7287. |
[36] | AL HATTAB M, HAMZEH F. Simulating the dynamics of social agents and information flows in BIM-based design [J]. Automation in Construction, 2018, 92: 1-22. |
[1] | Lu Pengli, Yang Peishi, Liao Yonggang. Deep Learning Framework for Predicting Essential Proteins with Temporal Convolutional Networks [J]. J Shanghai Jiaotong Univ Sci, 2025, 30(3): 510-520. |
[2] | ZHANG Lei, FENG Shaoxiong, TAN Kun, GUO Tao, SONG Chengguo, CHU Xiumin, MIAO Yang. A Design Method of Inland River Channel Based on Hydrodynamic Response of Ship [J]. Journal of Shanghai Jiao Tong University, 2025, 59(1): 89-98. |
[3] | ZHU Lan, ZHANG Xuehan, TANG Longjun, QIU Nianhang, TIAN Yingjie. A Combined Clearing Model of Electric Energy, Inertia, and Primary Frequency Regulation Considering Emergency Interruptible Load Service [J]. Journal of Shanghai Jiao Tong University, 2025, 59(1): 16-27. |
[4] | FU Hang1 (傅航),XU Jiangchang1 (许江长), LI Yinwei2,4* (李寅炜),ZHOU Huifang2,4 (周慧芳),CHEN Xiaojun1,3* (陈晓军). Augmented Reality Based Navigation System for Endoscopic Transnasal Optic Canal Decompression [J]. J Shanghai Jiaotong Univ Sci, 2025, 30(1): 34-42. |
[5] | ZHAO Yanfei1,2,3(赵艳飞), XIAO Peng4 (肖鹏), WANG Jingchuan1,2,3* (王景川), GUO Rui4*(郭锐). Semi-Autonomous Navigation Based on Local Semantic Map for Mobile Robot [J]. J Shanghai Jiaotong Univ Sci, 2025, 30(1): 27-33. |
[6] | XU Tongjie, LIU Zhenhua, JIN Huaiyu, LIU Jie, JIANG Xiuli, LI Zhe, LIU Yongsheng. Phase Transition, Magnetocaloric Effect, and Critical Behavior of Room Temperature Magnetic Refrigerant Material Mn5Ge2.7Zn0.3 [J]. Journal of Shanghai Jiao Tong University, 2025, 59(1): 131-138. |
[7] | BAI Wenchao, BAN Mingfei, SONG Meng, XIA Shiwei, LI Zhiyi, SONG Wenlong. Coordinate Scheduling Model of Electric Vehicle-Unmanned Aerial Vehicle Joint Rescue System [J]. Journal of Shanghai Jiao Tong University, 2024, 58(9): 1443-1453. |
[8] | HU Anfeng, CHEN Yiyang, XIAO Zhirong, CHEN Zheng. Horizontal Dynamic Response of Pile Group Foundation in Liquefied Soil Under Vertical Load [J]. Journal of Shanghai Jiao Tong University, 2024, 58(7): 1075-1085. |
[9] | LIU Yiling1 (刘怡伶), ZHANG Jingwei1 (张经纬), LIU Xuewen1∗ (刘学文), WANG Yansong1 (王岩松), ZHOU Yueting2 (周跃亭). Dynamic Train Vertical Sperling Index Evaluation Model Considering Wheel-Rail Contact Loss [J]. J Shanghai Jiaotong Univ Sci, 2024, 29(6): 1103-1115. |
[10] | XIAO Qianga, c∗ (肖强), HE Ruichunb (何瑞春), WANG Ziyia (王子怡). Random Regret Minimization Model of Carpool Travel Choice for Urban Residents Considering Perceived Heterogeneity and Psychological Distance [J]. J Shanghai Jiaotong Univ Sci, 2024, 29(6): 995-1008. |
[11] | ZHANG Jingjinga (张菁菁), ZHAO Jinchenga, b, c∗(赵金城), SONG Zhensena, b, c (宋振森), DUAN Lipinga, b, c(段立平). Experimental Study and Numerical Simulation of Evacuation in an Offshore Platform [J]. J Shanghai Jiaotong Univ Sci, 2024, 29(5): 747-758. |
[12] | TANG Jia, TIAN Chenzhi, SONG Min, HE Zhongmin, LI Quansheng. Research on Optimization Human-Computer Interaction Design in the AWACS Control System [J]. Air & Space Defense, 2024, 7(5): 90-96. |
[13] | XU Wenteng, LIU Lei, LIU Mengjue. Design for Combat Deduction System of Maritime Air and Missile Defense based on Hybrid Advancing Mechanism [J]. Air & Space Defense, 2024, 7(3): 111-116. |
[14] | WANG Zhiwei(王志伟), HE Yanping(何炎平), LI Mingzhi(李铭志), QIU Ming(仇明), HUANG Chao(黄超), LIU Yadong(亚东),WANG Zi(王梓). Numerical Investigation on Dynamic Response Characteristics of Fluid-Structure Interaction of Gas-Liquid Two-Phase Flow in Horizontal Pipe [J]. J Shanghai Jiaotong Univ Sci, 2024, 29(2): 237-244. |
[15] | GUO Tongbiao, ZHANG Ji, LI Xinliang. Direct Numerical Simulation of Strong Shock Wave and Boundary Layer Interactions in a Compression Corner [J]. Air & Space Defense, 2024, 7(2): 29-35. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||