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Modeling Pedestrian Behavior in Rail Transit Terminal

Applied mechanics and materials, v.567, 2014년, pp.742 - 748  

Zanariah, Abd Rahman (Universiti Teknologi MARA) ,  Mustafa, Masria (Universiti Teknologi MARA) ,  Ashaari, Yasmin (Universiti Teknologi MARA) ,  Sadullah, Ahmad Farhan Mohd (Universiti Sains Malaysia)

Abstract AI-Helper 아이콘AI-Helper

This paper concerns a review of the existing research in pedestrian behavior in rail transit terminal. A comprehensive review of the existing method and model are looking at the parameters of the pedestrian behavior and flow in relation to the pedestrian interaction and evacuation planning in rail t...

참고문헌 (28)

  1. Agrawal. A. W., Schlossberg. M. and Irvin. K. (2008). How Far, by Which Route and Why? A Spatial Analysis of Pedestrian Preference. Journal of Urban Design, Vol 13. No 1. 10.1080/13574800701804074 

  2. Tipakornkiat C., Limanond T. and Kim H. (2012). Determining and Influencing Area Affecting Walking Speed on Footpath: A Case Study of a Footpath in CBD Bangkok, Thailand. Physica A 391 (2012) 5453-5464. 10.1016/j.physa.2012.06.001 

  3. IISD. (2012). What is Sustainable Development?, Retrieved 29/11/12 from http: /www. iisd. org/sd. 

  4. Campanella, M. C., Hoogendoorn, S. P. and Daamen, W. (2011). A methodology to Calibrate Pedestrian Walker Models Using Multiple-Objectives. New York: Springer (pp.755-759). 10.1007/978-1-4419-9725-8_69 

  5. Teknomo, K. (2002). Microscopic Pedestrian Flow Characteristics: Development of an Image Processing Data Collection and Simulation Model. Graduate School of Information Sciences, Tohoku University, Japan. 

  6. Daamen, W. and Hoogendoorn, S.P. (2012). Calibration of Pedestrian Simulation Model for Emergency Doors for Different Pedestrian Types. TRB Annual Meeting Technical Papers (pp.1-12). Washington DC Transportation Research Board. 10.3141/2316-08 

  7. Campanella, M. C., Hoogendoorn, S. P. and Dameen, W. (2011). Calibrating Walker Models: Variations of Parameter Due to Traffic Regimes. European Conference on Mathematical and Theoretical Biology. 

  8. Hongfei, J., Lili, Y. and Ming, T. (2009). Pedestrian Flow Characteristic Analysis and Model Parameter Calibration in Comprehensive Transport Terminal. J Transpn Sys Eng & IT, 9(5), 117-123. 

  9. PED. (2012). 6th International Conference on Pedestrian and Evacuation Dynamics Retrieved 30/11/12, from http: /www. ped2012. org. 

  10. Daamen, W. and Hoogendoorn, S.P. (2003). Research on PedestrianTraffic Flows in Netherlands. Procceding Walk 21 IV (pp.101-117). Portland, Oregon, United States. 

  11. O'Sullivan. S. and Morral. J. (1996). Walking Distance to and from Light Rail Transit System. Transportation Research Recod (TRR) Journal-1538. 

  12. Schadschneider, A., Klingsch, W., Klüpfel, H., Kretz, T., Rogsch, C., & Seyfried, A. (2008). Evacuation Dynamics: Empirical Results, Modeling and Applications. 10.1007/978-1-4419-7695-6_29 

  13. Oxley J., Fildes B., Ihsen E., Charlton J., and Day R., (1997). Differences in Traffic Judgements Between Young and Old Adult Pedestrians. Accident Analysis and Prevention, Volume 29, No. 6, p.839 - 847. 10.1016/s0001-4575(97)00053-5 

  14. Xu, S. and Duh, H. B. L. (2010). A Simulation of Bonding Effect and Their Impacts on Pedestrian Dynamics. IEEE Transaction on Intelligent Transportation Systems. Vol 11. No 1. 

  15. National Land Public Transport Masterplan Final Draft (2012). Suruhanjaya Pengangkutan Awam Darat (SPAD) Malaysia. 

  16. Cheng H. and Yang X., (2012). Emergency Evacuation Capacity of Subways Station. Social and Behavioral Sciences 43 (2012) 339 - 348. 10.1016/j.sbspro.2012.04.107 

  17. Lei W., Li A., Gao R., Hao X. and Deng B., (2012). Simulation of Pedestrian Crowds' Evacuation in a Huge Transit Terminal Subway Station. Physica A 391 (2012) 5355 - 5365. 10.1016/j.physa.2012.06.033 

  18. Davidich, M and Koster, G. (2012). Towards Automatic and Robust Adjustment of Human Behavioral Parameters in a Pedestrian Stream Model to Measured Data. Safety Science. Volume 50 (2012). Pp 1253-1260. 10.1016/j.ssci.2011.12.024 

  19. Helbing, D. and Molnar, P. (1995). Social Force Model for Pedestrian Dynamics. Physical Review E. Volume 51, No. 5, p.4282 - 4286. 10.1103/physreve.51.4282 

  20. Bauer, D., Seer, S. and Brandle, N. (2007). Macroscopic Pedestrian Flow Simulation for Designing Crowd Control Measures in Public Transport After Special Events. Summer Computer Simulation Conference (SCSC). ISBN 1-56555-316-0. 

  21. 10.1016/j.physa.2010.10.029 Qi, Z. and Baoming, H. (2011). Simulation Model of Pedestrian Interactive Behavior. Physica A 390 (2011) 636 - 646. 

  22. Shiwakoti, N., Sarvi, M. and Rose, G. (2008). Modeling Pedestrian Behavior Under Emergency Conditions - State of the Art and Future Directions. 31st Australasian Transport Research Forum. Pp 457-473. 

  23. Zainuddin, Z., Thinakaran, K., & Abu-Sulyman, I. M. (2009). Simulating the Circumambulation of the Ka'aba using SimWalk. © EuroJournals Publishing, Inc. 2009, Vol. 38 No. 3 (2009), pp.454-464. 

  24. Sahaleh, A.S., Bierlaire, M., Farooq, B., Danalet, A., Hänseler, F.S. (2012). Scenario Analysis of Pedestrian Flow in Public. STRC (2012). 

  25. Hoogendoorn, S. P., Daamen, W. and Bovy, P. H. L. (2003). Extracting Microscopic Pedestrian Characteristic from Video Data. TRB Annual Meeting. 

  26. Johansson, A., Helbing, D., Al-Abideen, H. Z., and Al-Bosta, S. (2008). From Crowd Dynamics to Crowd Safety. World Scientific Publishing Company (WPSC). 10.1142/s0219525908001854 

  27. 10.1049/ecej:19950106 Davies, A. C., Yin, J. H. and Velastin, S. A. (1995). Crowd Monitoring Using Image Processing. IEE Electronic and Communications Engineering Journal. Vol 7. No 1. pp.37-47. 

  28. Lam, W. H. K. and Cheung, C. Y. (2000). Pedestrian Speed/Flow Relationships for Walking Facilities in Hong Kong. Journal Transportation Engineering. 126: 343-349. 10.1061/(asce)0733-947x(2000)126:4(343) 

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