DocumentCode
1603357
Title
A practical approach to individual thermal comfort and energy optimization problem
Author
Ari, S. ; Wilcoxen, P. ; Khalifa, H.E. ; Dannenhoffer, J.F. ; Isik, C.
Author_Institution
Syracuse Univ., Syracuse, NY
fYear
2008
Firstpage
1
Lastpage
6
Abstract
This paper presents an intelligent modeling approach to individual thermal comfort and energy optimization problem, which aims to minimize energy consumption and improve thermal environmental conditions for human occupancy. In our previous study, this optimization problem was solved under the assumption of the existence of information about the thermal comfort preferences of individuals. A traditional optimization method is used to calculate off-line optimum solutions to this problem at numerous operating points. These solutions are used to train an intelligent system such as a fuzzy logic system under the same assumption resulting in a control system which encapsulates the behavior of the collection of optimum solutions. This methodology is named "intelligent modeling of optimized systems" (IMOS) in this paper. However, it is hard to gather information about individuals\´ thermal comfort preferences in practice. The sensitivity analysis on the optimization problem and its approximation with fuzzy logic system regarding individual thermal comfort preferences has been investigated in this paper.
Keywords
energy conservation; fuzzy logic; power consumption; energy consumption minimization; energy optimization problem; fuzzy logic system; human occupancy; intelligent modeling approach; intelligent modeling of optimized systems; thermal comfort; thermal comfort preferences; Buildings; Control systems; Employment; Energy consumption; Fuzzy logic; Humans; ISO standards; Intelligent systems; Optimization methods; Productivity;
fLanguage
English
Publisher
ieee
Conference_Titel
Fuzzy Information Processing Society, 2008. NAFIPS 2008. Annual Meeting of the North American
Conference_Location
New York City, NY
Print_ISBN
978-1-4244-2351-4
Electronic_ISBN
978-1-4244-2352-1
Type
conf
DOI
10.1109/NAFIPS.2008.4531261
Filename
4531261
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