Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions
A pedestrian evacuation under fire-spreading conditions is simulated by using a two-dimensional cellular automaton model.The proposed model presents a non-static fire-spreading behavior to avoid considerable discrepancies between reality and simulation.The proposed model adopts a circular fire front...
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my.uum.repo.240752018-04-29T01:43:44Z http://repo.uum.edu.my/24075/ Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions Alidmat, Omar Khair Alla Khader, Ahamad Tajudin Hassan, Fadratul Hafinaz QA75 Electronic computers. Computer science A pedestrian evacuation under fire-spreading conditions is simulated by using a two-dimensional cellular automaton model.The proposed model presents a non-static fire-spreading behavior to avoid considerable discrepancies between reality and simulation.The proposed model adopts a circular fire front shape based on spiral fire movement.Moreover, four dynamic parameters are introduced to simplify the decision-making process of a pedestrian’s movement inside the layout during fire spreading.In addition, the proposed model includes the number of victims (i.e., caught in the fire) and the number of pedestrians who were evacuated safely.By analyzing these variables, a suitable evacuation plan enabling the control of crowd movements in different situations such as fire disasters can be consequently designed. Universiti Utara Malaysia Press 2016-06 Article PeerReviewed application/pdf en http://repo.uum.edu.my/24075/1/JICT%2015%201%202016%2083%E2%80%93105.pdf Alidmat, Omar Khair Alla and Khader, Ahamad Tajudin and Hassan, Fadratul Hafinaz (2016) Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions. Journal of Information and Communication Technology, 15 (1). ISSN 2180-3862 http://jict.uum.edu.my/index.php/previous-issues/148-journal-of-information-and-communication-technology-jict-vol-15-no1-june-2016 |
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QA75 Electronic computers. Computer science Alidmat, Omar Khair Alla Khader, Ahamad Tajudin Hassan, Fadratul Hafinaz Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
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A pedestrian evacuation under fire-spreading conditions is simulated by using a two-dimensional cellular automaton model.The proposed model presents a non-static fire-spreading behavior to avoid considerable discrepancies between reality and simulation.The proposed model adopts a circular fire front shape based on spiral fire movement.Moreover, four dynamic parameters are introduced to simplify the decision-making process of a pedestrian’s movement inside the layout during fire spreading.In addition, the proposed model includes the number of victims (i.e., caught in the fire) and the number of pedestrians who were evacuated safely.By analyzing these variables, a suitable evacuation plan enabling the control of crowd movements in different situations such as fire disasters can be consequently designed. |
format |
Article |
author |
Alidmat, Omar Khair Alla Khader, Ahamad Tajudin Hassan, Fadratul Hafinaz |
author_facet |
Alidmat, Omar Khair Alla Khader, Ahamad Tajudin Hassan, Fadratul Hafinaz |
author_sort |
Alidmat, Omar Khair Alla |
title |
Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
title_short |
Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
title_full |
Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
title_fullStr |
Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
title_full_unstemmed |
Two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
title_sort |
two-dimensional cellular automation model to simulate pedestrian evacuation under fire-spreading conditions |
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Universiti Utara Malaysia Press |
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2016 |
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http://repo.uum.edu.my/24075/1/JICT%2015%201%202016%2083%E2%80%93105.pdf http://repo.uum.edu.my/24075/ http://jict.uum.edu.my/index.php/previous-issues/148-journal-of-information-and-communication-technology-jict-vol-15-no1-june-2016 |
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