[1]

Cai Z, Zhou R, Cui Y, Wang Y, Jiang J. 2022. Influencing factors for exit selection in subway station evacuation. Tunnelling and Underground Space Technology 125:104498

doi: 10.1016/j.tust.2022.104498
[2]

Kallianiotis A, Papakonstantinou D, Arvelaki V, Benardos A. 2018. Evaluation of evacuation methods in underground metro stations. International Journal of Disaster Risk Reduction 31:526−34

doi: 10.1016/j.ijdrr.2018.06.009
[3]

Huang Z, Cao S, Fang Z, Ye R, Wang Z, et al. 2021. Effect of voice alarms on temporal characteristics of the evacuation process inside metro train carriages: an experiment study. Safety Science 142:105403

doi: 10.1016/j.ssci.2021.105403
[4]

Jin B, Wang J, Wang Y, Gu Y, Wang Z. 2020. Temporal and spatial distribution of pedestrians in subway evacuation under node failure by multi-hazards. Safety Science 127:104695

doi: 10.1016/j.ssci.2020.104695
[5]

Xie W, Lee EWM, Cheng Y, Shi M, Cao R, et al. 2020. Evacuation performance of individuals and social groups under different visibility conditions: Experiments and surveys. International Journal of Disaster Risk Reduction 47:101527

doi: 10.1016/j.ijdrr.2020.101527
[6]

Ren J, Mao Z, Zhang D, Gong M, Zuo S. 2022. Experimental study of crowd evacuation dynamics considering small group behavioral patterns. International Journal of Disaster Risk Reduction 80:103228

doi: 10.1016/j.ijdrr.2022.103228
[7]

Wang Y, Ding N, Dong D, Zhu Y. 2024. Simulation of crowd evacuation under attack considering emotion spreading. Chinese Physics B 33(12):128901

doi: 10.1088/1674-1056/ad84c7
[8]

Wang J, Jin B, Li J, Chen F, Wang Z, et al. 2019. Method for guiding crowd evacuation at exit: the buffer zone. Safety Science 118:88−95

doi: 10.1016/j.ssci.2019.05.014
[9]

Ding N, Sun C. 2020. Experimental study of leader-and-follower behaviours during emergency evacuation. Fire Safety Journal 117:103189

doi: 10.1016/j.firesaf.2020.103189
[10]

Saloma C, Perez GJ, Tapang G, Lim M, Palmes-Saloma C. 2003. Self-organized queuing and scale-free behavior in real escape panic. Proceedings of the National Academy of Sciences of the United States of America 100(21):11947−52

doi: 10.1073/pnas.2031912100
[11]

Wang S, Song W. 2016. Experimental study of ant movement in a straight passageway under stress conditions. Journal of Insect Behavior 29(6):735−43

doi: 10.1007/s10905-016-9593-x
[12]

Zhang T, Huang SS, Zhang XL, Lu SX, Li CH. 2019. Effect of exit location on flow of mice under emergency condition. Chinese Physics B 28(1):010505

doi: 10.1088/1674-1056/28/1/010505
[13]

Qiao Y, Li Q, Liu Q, Wang J. 2024. A simulation study of the influence of dedicated building exits on the evacuation patterns of vulnerable populations. Emergency Management Science and Technology 4:e013

doi: 10.48130/emst-0024-0013
[14]

Ronchi E, Nilsson D. 2014. Modelling total evacuation strategies for high-rise buildings. Building Simulation 7(1):73−87

doi: 10.1007/s12273-013-0132-9
[15]

Lovreglio R, Ronchi E, Nilsson D. 2016. An Evacuation Decision Model based on perceived risk, social influence and behavioural uncertainty. Simulation Modelling Practice and Theory 66:226−42

doi: 10.1016/j.simpat.2016.03.006
[16]

Helbing D, Farkas I, Vicsek T. 2000. Simulating dynamical features of escape panic. Nature 407:487−90

doi: 10.1038/35035023
[17]

Zhou R, Cui Y, Wang Y, Jiang J. 2021. A modified social force model with different categories of pedestrians for subway station evacuation. Tunnelling and Underground Space Technology 110:103837

doi: 10.1016/j.tust.2021.103837
[18]

Yuan Z, Jia H, Zhang L, Bian L. 2018. A social force evacuation model considering the effect of emergency signs. Simulation-Transactions of The Society For Modeling And Simulation International 94:723−37

doi: 10.1177/0037549717741350
[19]

Hou L, Liu JG, Pan X, Wang BH. 2014. A social force evacuation model with the leadership effect. Physica A: Statistical Mechanics and Its Applications 400:93−99

doi: 10.1016/j.physa.2013.12.049
[20]

Huang P, Chen M, Chen K, Ye S, Yu L. 2022. Study on an emergency evacuation model considering information transfer and rerouting: Taking a simplified H-shape metro station hall as an example. Tunnelling and Underground Space Technology 124:104485

doi: 10.1016/j.tust.2022.104485
[21]

Zhang D, Huang G, Ji C, Liu H, Tang Y. 2021. Pedestrian evacuation modeling and simulation in multi-exit scenarios. Physica A: Statistical Mechanics and Its Applications 582:126272

doi: 10.1016/j.physa.2021.126272
[22]

Wang L, Zheng JH, Zhang XS, Zhang JL, Wang QZ, et al. 2016. Pedestrians' behavior in emergency evacuation: Modeling and simulation. Chinese Physics B 25(11):118901

doi: 10.1088/1674-1056/25/11/118901
[23]

Zainuddin Z, Shuaib M. 2010. Modification of the decision-making capability in the social force model for the evacuation process. Transport Theory and Statistical Physics 39(1):47−70

doi: 10.1080/00411450.2010.529979
[24]

Ma J, Song WG, Fang ZM, Lo SM, Liao GX. 2010. Experimental study on microscopic moving characteristics of pedestrians in built corridor based on digital image processing. Building and Environment 45(10):2160−69

doi: 10.1016/j.buildenv.2010.03.015
[25]

Cai ZY, Zhou R, Cui YK, Wang Y, Jiang JC. 2023. Simulation based on a modified social force model for sensitivity to emergency signs in subway station. Chinese Physics B 32(2):020507

doi: 10.1088/1674-1056/ac7550