DocumentCode
2832037
Title
Measuring Performance Electric Power Generations Using Artificial Neural Networks
Author
Azadeh, M.A. ; Ghaderi, S.F. ; Anvari, M. ; Saberi, M.
Author_Institution
Tehran Univ., Tehran
fYear
2006
fDate
15-17 Dec. 2006
Firstpage
7
Lastpage
12
Abstract
Efficiency frontier analysis has been an important approach of evaluating firms´ performance in private and public sectors. There have been many efficiency frontier analysis methods reported in the literature. However, the assumptions made for each of these methods are restrictive. Each of these methodologies has its strength as well as major limitations. This study proposes a non-parametric efficiency frontier analysis method based on the adaptive neural network technique for measuring efficiency as a complementary tool for the common techniques of the efficiency studies in the previous studies. The proposed computational method is able to find a stochastic frontier based on a set of input-output observational data and do not require explicit assumptions about the function structure of the stochastic frontier. In this algorithm, for calculating the efficiency scores, a similar approach to econometric methods has been used. Moreover, the effect of the return to scale of decision making unit (DMU) on its efficiency is included and the unit used for the correction is selected by notice of its scale (under constant return to scale assumption). An example using real data is presented for illustrative purposes, in the application to the power generation sector of Iran, we find that the neural network provide more robust results and identifies more efficient units than the conventional methods since better performance patterns are explored. Moreover, principle component analysis (PCA) and numerical taxonomy (NT) are used to verify the findings of the purposed algorithm.
Keywords
electric power generation; neural nets; power system analysis computing; power system measurement; principal component analysis; artificial neural networks; decision making unit; efficiency frontier analysis; electric power generations; numerical taxonomy; performance measurement; principle component analysis; stochastic frontier; Adaptive systems; Artificial neural networks; Decision making; Econometrics; Electric variables measurement; Neural networks; Performance analysis; Power generation; Power measurement; Stochastic processes;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Technology, 2006. ICIT 2006. IEEE International Conference on
Conference_Location
Mumbai
Print_ISBN
1-4244-0726-5
Electronic_ISBN
1-4244-0726-5
Type
conf
DOI
10.1109/ICIT.2006.372228
Filename
4237550
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