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http://dx.doi.org/10.9709/JKSS.2011.20.4.149

Evacuation Analysis for a Passenger Ship Using a Cellular Automata Model with Group Behavior  

Cha, Ju-Hwan (목포대학교 해양시스템공학과)
Ha, Sol (서울대학교 대학원 조선해양공학과)
Lee, Kyu-Yeul (서울대학교 조선해양공학과 및 해양시스템공학연구소)
Abstract
This paper presents simulations of advance evacuation analysis using a cellular automata model for passenger behavior in an emergency of passenger ship. The proposed cellular automata model divides the space in a uniform grid called "cell." Each passenger is located in a cell and moves to another cell according to a set of local rules assumed to be associated with the individual and crowd behaviors of the passengers. To verify the usefulness of the proposed cellular automata model, 11 tests, all of which are specified in International Maritime Organization Maritime Safety Committee/ Circulation 1238 (IMO MSC/Circ. 1238), were implemented, and it was confirmed that all the requirements of these tests had been met.
Keywords
Advanced Evacuation Analysis; Passenger Ship; Cellular Automata; Crowd Behavior;
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Times Cited By KSCI : 1  (Citation Analysis)
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1 박광필, 조윤옥, 하솔, 이규열(2010), "평면상 승객의 회전 자세를 고려한 가속도 기반의 승객 탈출 분석 시뮬레이션", 한국CAD/CAM학회 논문집, 제15권, 제4호, pp. 306-313.
2 정채윤, 박광필, 하솔, 이규열(2010), "2차원 3자유도 인체모델을 이용한 가속도 기반의 여객선 승객 탈출 분석 시뮬레이션", 2010년 한국CAD/CAM학회 학술대회 논문집, pp. 69-76.
3 정채윤, 하솔, 이규열, 박광필(2009), "장애물 회피에 Penalty Walking Velocity 알고리즘을 적용한 여객선 승객 탈출 시뮬레이션", 2009년도 한국시뮬레이션학회 추계학술대회, 서울, pp. 152-160.
4 조윤옥, 차주환, 구남국, 박광필, 함승호, 이찬영, 이규열 (2010), "보행 방향 포텐셜 함수를 이용한 승객 탈출 최적보행 방향 결정 및 탈출 시뮬레이션 구현", 2010년도 대한조선학회 추계학술대회, 창원, pp. 646-653.
5 조윤옥, 하솔, 박광필, 차주환, 이규열(2010), "손상 선박의 자세로 인한 물리적인 외력을 고려한 여객선 승객 탈출 시뮬레이션", 2010년도 대한조선학회 춘계학술대회, 제주, pp. 860-868.
6 Burstedde, C., Klauck, K., Schadschneider, A., and Zittartz, J. (2001), "Simulation of pedestrian dynamics using a two-dimensional cellular automation", Physica A, Vol. 195, pp. 507-525.
7 Galea, E.R., Lawrence, P., Gwynne , S., Filippidis, L., Blackshields, Sharp, D., G., Hurst, N., Wang, Z., and Ewer, J. (2003), "Simulating ship evacuation under fire conditions", Proceeding of Second International Pedestrian and Evacuation Dynamics Conference, CMS Press, Greenwich, pp. 159-172.
8 Helioevarra, S. (2007), Computational Models for Human Behavior in Fire Evacuation, Master's Thesis, Helsinki University of Technology.
9 International Maritime Organization (2007), Guidelines for Evacuation Analysis For new and Existing Passenger Ship, IMO MSC/Circ.1238.
10 Korhonen, T. and Hostikka, S. (2009), Fire Dynamics Simulator with Evacuation: FDS+ Evac-Technical Reference and User's Guide, VTT Technical Research Centre of Finland.
11 Kuligowski, E. D. and Peacock, R. D. (2005), A review of building evacuation models, Technical report, National Institute of Standards and Technology, Fire Research Division, Building and Fire Research Laboratory.
12 Vassalos, D., Kim, H. S., Christiansen, G., and Majumder, J. (2001), "A mesoscopic model for passenger evacuation in a virtual ship-sea environment and performance based evaluation", Conference on Pedestrian and Evacuation Dynamics.
13 Owen, M., Galea, E., and Lawrence, P. (1996), "The EXODUS evacuation model applied to building evacuation scenarios", Journal of Fire Protection Engineering, Vol. 8, No. 2, pp. 65-84.   DOI   ScienceOn
14 Reynolds, C. W. (1987), "Flocks, herds and schools; A distributed behavioral model", Proceedings of the 14th annual conference on Computer graphics and interactive techniques, pp. 25-34.
15 Schadschneider, A., Krichner, A., and Nishinari, K. (2002), "CA Approach to Collective Phenomena in Pedestrian Dynamics", Lecture Note in Computer Science, Vol. 2493, pp. 239-248.