DocumentCode
1065533
Title
A hybrid nonlinear model for the annual maximum simultaneous electric power demand
Author
G, Hamed Shakouri ; Rastad, Mahdi ; Nazarzadeh, Jalal
Author_Institution
Dept. of Ind. Eng., Tehran Univ.
Volume
21
Issue
3
fYear
2006
Firstpage
1069
Lastpage
1078
Abstract
As far as the electricity market is considered, both governments and private sector are interested in energy supply industry and so consider it essential to predict energy demand. Solution of the problem depends on availability of a model. This paper proposes a systematically developed model. It is based on a previously performed exogeneity investigation of various quantified variables. A certain nonlinear model among a collection of 100 models with different inputs is chosen as the most appropriate model. Structure of all nonlinear competing models is established according to logical conjunctive and disjunctive relationships between variables. Different combinations of the exogenous variables generate these models. At first, unacceptable models are put away applying coefficient sign significance criterion and error validity. An automated fuzzy decision-making process determines the winner model, which is a hybrid nonlinear model, among the other remaining models
Keywords
decision making; fuzzy systems; nonlinear systems; power markets; annual maximum simultaneous electric power demand; automated fuzzy decisionmaking process; coefficient sign significance criterion; electricity market; energy supply market; error validity; hybrid nonlinear model; nonlinear competing models; Availability; Decision making; Econometrics; Economic forecasting; Electricity supply industry; Fuzzy systems; Government; Nonlinear dynamical systems; Power generation economics; Power system modeling; Decision-making; dynamics; energy models; fuzzy systems; modeling; nonlinear systems; power demand; smoothing methods;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2006.873105
Filename
1664940
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