Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation

Emergency situation required fast and accurate decision as every decision is very critical to save human lives. Naturally, during this situation humans made decision based on their past experiences by which their nerves and brain system will perceive the situation and mapped with their experiences...

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Main Authors: Wan Ishak, Wan Hussain, Ku-Mahamud, Ku Ruhana, Md. Norwawi, Norita
Format: Article
Language:English
Published: IJENS Publishers 2011
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Online Access:http://repo.uum.edu.my/3995/1/Wan_H3.pdf
http://repo.uum.edu.my/3995/
http://www.ijens.org/Vol%2011%20I%2002/111102-9393%20IJCEE-IJENS.pdf
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spelling my.uum.repo.39952013-01-16T02:54:18Z http://repo.uum.edu.my/3995/ Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation Wan Ishak, Wan Hussain Ku-Mahamud, Ku Ruhana Md. Norwawi, Norita QA75 Electronic computers. Computer science Emergency situation required fast and accurate decision as every decision is very critical to save human lives. Naturally, during this situation humans made decision based on their past experiences by which their nerves and brain system will perceive the situation and mapped with their experiences to produce action. This naturalistic decision making approach has been one of the attention in emergency management research.In this paper a conceptual model of Intelligent Decision Support System for reservoir operation during emergency situation is proposed.This model simulates human decision based on three models: situation assessment, expectancy forecasting, and decision modeling.Situation assessment is to extract the temporal data from the hydrological and operational databases.This data will be used in the forecasting module, to forecast the future event.The decision module will utilized the temporal and the forecasted data to produce the final decision. Artificial intelligence techniques are utilized in every model.The model is expected to assist reservoir operator in making decision during emergency situation; typically during heavy rainfall when early and fast decision is required to release the reservoir water in order to leave enough space for incoming water and to release the water in the save carrying capacity of the downstream channel.Thus avoiding flood in downstream areas. IJENS Publishers 2011-04-15 Article PeerReviewed application/pdf en http://repo.uum.edu.my/3995/1/Wan_H3.pdf Wan Ishak, Wan Hussain and Ku-Mahamud, Ku Ruhana and Md. Norwawi, Norita (2011) Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation. International Journal of Civil & Environmental Engineering , 11 (2). pp. 6-11. ISSN 2077-1258 http://www.ijens.org/Vol%2011%20I%2002/111102-9393%20IJCEE-IJENS.pdf
institution Universiti Utara Malaysia
building UUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Utara Malaysia
content_source UUM Institutionali Repository
url_provider http://repo.uum.edu.my/
language English
topic QA75 Electronic computers. Computer science
spellingShingle QA75 Electronic computers. Computer science
Wan Ishak, Wan Hussain
Ku-Mahamud, Ku Ruhana
Md. Norwawi, Norita
Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
description Emergency situation required fast and accurate decision as every decision is very critical to save human lives. Naturally, during this situation humans made decision based on their past experiences by which their nerves and brain system will perceive the situation and mapped with their experiences to produce action. This naturalistic decision making approach has been one of the attention in emergency management research.In this paper a conceptual model of Intelligent Decision Support System for reservoir operation during emergency situation is proposed.This model simulates human decision based on three models: situation assessment, expectancy forecasting, and decision modeling.Situation assessment is to extract the temporal data from the hydrological and operational databases.This data will be used in the forecasting module, to forecast the future event.The decision module will utilized the temporal and the forecasted data to produce the final decision. Artificial intelligence techniques are utilized in every model.The model is expected to assist reservoir operator in making decision during emergency situation; typically during heavy rainfall when early and fast decision is required to release the reservoir water in order to leave enough space for incoming water and to release the water in the save carrying capacity of the downstream channel.Thus avoiding flood in downstream areas.
format Article
author Wan Ishak, Wan Hussain
Ku-Mahamud, Ku Ruhana
Md. Norwawi, Norita
author_facet Wan Ishak, Wan Hussain
Ku-Mahamud, Ku Ruhana
Md. Norwawi, Norita
author_sort Wan Ishak, Wan Hussain
title Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
title_short Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
title_full Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
title_fullStr Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
title_full_unstemmed Conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
title_sort conceptual model of intelligent decision support system based on naturalistic decision theory for reservoir operation during emergency situation
publisher IJENS Publishers
publishDate 2011
url http://repo.uum.edu.my/3995/1/Wan_H3.pdf
http://repo.uum.edu.my/3995/
http://www.ijens.org/Vol%2011%20I%2002/111102-9393%20IJCEE-IJENS.pdf
_version_ 1644278646094954496
score 13.149126