Crowd modelling behaviour based on modified microscopic models in panic situation

There are many models lies under microscopic level that can serve as a basis to simulate crowd in more realistic and believable. The purpose of crowd simulation is to model the motions of objects within a specific environment. Applications of crowd simulation are numerous such as in computer science...

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主要作者: Sharbini, Hamizan
格式: Thesis
语言:English
出版: 2010
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在线阅读:http://eprints.utm.my/id/eprint/11079/6/HamizanSharbiniMFSKSM2010.pdf
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spelling my-utm-ep.110792017-09-26T01:08:39Z Crowd modelling behaviour based on modified microscopic models in panic situation 2010-04 Sharbini, Hamizan QA75 Electronic computers. Computer science There are many models lies under microscopic level that can serve as a basis to simulate crowd in more realistic and believable. The purpose of crowd simulation is to model the motions of objects within a specific environment. Applications of crowd simulation are numerous such as in computer science that includes study of crowd behaviour under different environmental conditions like panic situation. Therefore, this project will focus on analysis via available literature and to produce more realistic simulation based the microscopic models, namely Social Force Model (SF) that can reproduce individual and collective behaviours observed in real emergency evacuation situation. The modification of the model element will only pertain to crowd movement behaviour modelling in order to find an exit from a room in panic situation. This also incorporates simple visualization such that it has only a single point per object, whereby the people in crowd will be modeled using particle. 2010-04 Thesis http://eprints.utm.my/id/eprint/11079/ http://eprints.utm.my/id/eprint/11079/6/HamizanSharbiniMFSKSM2010.pdf application/pdf en public masters Universiti Teknologi Malaysia, Faculty of Computer Science and Information Systems Faculty of Computer Science and Information System
institution Universiti Teknologi Malaysia
collection UTM Institutional Repository
language English
topic QA75 Electronic computers
Computer science
spellingShingle QA75 Electronic computers
Computer science
Sharbini, Hamizan
Crowd modelling behaviour based on modified microscopic models in panic situation
description There are many models lies under microscopic level that can serve as a basis to simulate crowd in more realistic and believable. The purpose of crowd simulation is to model the motions of objects within a specific environment. Applications of crowd simulation are numerous such as in computer science that includes study of crowd behaviour under different environmental conditions like panic situation. Therefore, this project will focus on analysis via available literature and to produce more realistic simulation based the microscopic models, namely Social Force Model (SF) that can reproduce individual and collective behaviours observed in real emergency evacuation situation. The modification of the model element will only pertain to crowd movement behaviour modelling in order to find an exit from a room in panic situation. This also incorporates simple visualization such that it has only a single point per object, whereby the people in crowd will be modeled using particle.
format Thesis
qualification_level Master's degree
author Sharbini, Hamizan
author_facet Sharbini, Hamizan
author_sort Sharbini, Hamizan
title Crowd modelling behaviour based on modified microscopic models in panic situation
title_short Crowd modelling behaviour based on modified microscopic models in panic situation
title_full Crowd modelling behaviour based on modified microscopic models in panic situation
title_fullStr Crowd modelling behaviour based on modified microscopic models in panic situation
title_full_unstemmed Crowd modelling behaviour based on modified microscopic models in panic situation
title_sort crowd modelling behaviour based on modified microscopic models in panic situation
granting_institution Universiti Teknologi Malaysia, Faculty of Computer Science and Information Systems
granting_department Faculty of Computer Science and Information System
publishDate 2010
url http://eprints.utm.my/id/eprint/11079/6/HamizanSharbiniMFSKSM2010.pdf
_version_ 1747814806958637056