MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN
The role of uncertainty management is increasingly being recognized in the design of complex systems that require multi-level multidisciplinary analyses. Most previous studies in this direction have only dealt with aleatory uncertainty (i.e., natural or physical variability). However, various modeli...
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ndltd-VANDERBILT-oai-VANDERBILTETD-etd-07202010-1459092013-01-08T17:16:41Z MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN Zaman, A.K.M. Kais Civil Engineering The role of uncertainty management is increasingly being recognized in the design of complex systems that require multi-level multidisciplinary analyses. Most previous studies in this direction have only dealt with aleatory uncertainty (i.e., natural or physical variability). However, various modeling errors, assumptions and approximations, measurement errors, and sparse and imprecise information introduce additional epistemic uncertainty in model prediction. Therefore, an approach to multidisciplinary uncertainty analysis and system design that addresses both aleatory and epistemic uncertainty is needed. The objective of this dissertation is to develop a methodology that provides decision support to engineers for multidisciplinary design and analysis of systems under aleatory uncertainty (i.e., natural or physical variability) and epistemic uncertainty (due to sparse and imprecise data). Specifically, the dissertation accomplishes this objective through: (1) Development of a probabilistic approach for the representation of epistemic uncertainty; (2) Development of a probabilistic framework for the propagation of both aleatory and epistemic uncertainty; (3) Development of formulations and algorithms for design optimization under aleatory and epistemic uncertainty, from the perspective of system robustness and reliability; (4) Development of a framework for uncertainty propagation in multidisciplinary system analysis; and (5) Development of formulations and algorithms for design optimization under aleatory and epistemic uncertainty for multidisciplinary systems, from the perspective of system robustness and reliability. The methodology developed in this dissertation is illustrated through problems related to spacecraft design and analysis, such as the conceptual upper-stage design of a two-stage-to-orbit vehicle, and design and analysis of a fire detection satellite. Sankaran Mahadevan Mark McDonald Mark Ellingham Prodyot K. Basu VANDERBILT 2010-08-02 text application/pdf http://etd.library.vanderbilt.edu//available/etd-07202010-145909/ http://etd.library.vanderbilt.edu//available/etd-07202010-145909/ en unrestricted I hereby certify that, if appropriate, I have obtained and attached hereto a written permission statement from the owner(s) of each third party copyrighted matter to be included in my thesis, dissertation, or project report, allowing distribution as specified below. I certify that the version I submitted is the same as that approved by my advisory committee. I hereby grant to Vanderbilt University or its agents the non-exclusive license to archive and make accessible, under the conditions specified below, my thesis, dissertation, or project report in whole or in part in all forms of media, now or hereafter known. I retain all other ownership rights to the copyright of the thesis, dissertation or project report. I also retain the right to use in future works (such as articles or books) all or part of this thesis, dissertation, or project report. |
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Civil Engineering Zaman, A.K.M. Kais MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN |
description |
The role of uncertainty management is increasingly being recognized in the design of complex systems that require multi-level multidisciplinary analyses. Most previous studies in this direction have only dealt with aleatory uncertainty (i.e., natural or physical variability). However, various modeling errors, assumptions and approximations, measurement errors, and sparse and imprecise information introduce additional epistemic uncertainty in model prediction. Therefore, an approach to multidisciplinary uncertainty analysis and system design that addresses both aleatory and epistemic uncertainty is needed. The objective of this dissertation is to develop a methodology that provides decision support to engineers for multidisciplinary design and analysis of systems under aleatory uncertainty (i.e., natural or physical variability) and epistemic uncertainty (due to sparse and imprecise data).
Specifically, the dissertation accomplishes this objective through: (1) Development of a probabilistic approach for the representation of epistemic uncertainty; (2) Development of a probabilistic framework for the propagation of both aleatory and epistemic uncertainty; (3) Development of formulations and algorithms for design optimization under aleatory and epistemic uncertainty, from the perspective of system robustness and reliability; (4) Development of a framework for uncertainty propagation in multidisciplinary system analysis; and (5) Development of formulations and algorithms for design optimization under aleatory and epistemic uncertainty for multidisciplinary systems, from the perspective of system robustness and reliability.
The methodology developed in this dissertation is illustrated through problems related to spacecraft design and analysis, such as the conceptual upper-stage design of a two-stage-to-orbit vehicle, and design and analysis of a fire detection satellite.
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author2 |
Sankaran Mahadevan |
author_facet |
Sankaran Mahadevan Zaman, A.K.M. Kais |
author |
Zaman, A.K.M. Kais |
author_sort |
Zaman, A.K.M. Kais |
title |
MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN |
title_short |
MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN |
title_full |
MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN |
title_fullStr |
MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN |
title_full_unstemmed |
MODELING AND MANAGEMENT OF EPISTEMIC UNCERTAINTY FOR MULTIDISCIPLINARY SYSTEM ANALYSIS AND DESIGN |
title_sort |
modeling and management of epistemic uncertainty for multidisciplinary system analysis and design |
publisher |
VANDERBILT |
publishDate |
2010 |
url |
http://etd.library.vanderbilt.edu//available/etd-07202010-145909/ |
work_keys_str_mv |
AT zamanakmkais modelingandmanagementofepistemicuncertaintyformultidisciplinarysystemanalysisanddesign |
_version_ |
1716570346926112768 |