DocumentCode
268140
Title
Simplified Cross-Entropy Based Approach for Generating Capacity Reliability Assessment
Author
de Magalhães Carvalho, Leonel ; Gonzalez-Fernandez, Reinaldo A. ; Martins Leite da Silva, Armando ; da Rosa, Mauro A. ; Miranda, V.
Author_Institution
Inst. for Syst. & Comput. Eng. ofPorto, INESC TEC (formerly INESC Porto), Porto, Portugal
Volume
28
Issue
2
fYear
2013
fDate
May-13
Firstpage
1609
Lastpage
1616
Abstract
This paper presents a new algorithm to estimate the optimal importance sampling (IS) probability distribution in generating capacity reliability (GCR) problems. The proposed approach results from a combination of the cross-entropy (CE) concepts with the standard analytical GCR assessment. A mathematical analysis of the CE equations is carried out to demonstrate that the optimal change of measure or distortion can be obtained by simply dividing the annualized GCR indices for two different configurations of the generating system. Under these hypotheses, a straightforward algorithm based on fast Fourier transform is proposed to systematically obtain the optimal distorted unavailabilities for all generating units in the system. The accuracy and computational performance of the proposed approach are compared with the standard CE optimization process using different generating systems. The IEEE-RTS 79, IEEE-RTS 96, and two configurations of the Brazilian South-Southeastern system are all used for this purpose.
Keywords
IEEE standards; entropy; fast Fourier transforms; mathematical analysis; power generation reliability; probability; Brazilian South-Southeastern system; IEEE-RTS 79; IEEE-RTS 96; computational performance; cross-entropy concepts; fast Fourier transform; generating capacity reliability assessment; generating capacity reliability problems; generating system; generating units; mathematical analysis; optimal distorted unavailabilities; optimal importance sampling; probability distribution; simplified cross-entropy based approach; standard CE optimization process; standard analytical GCR assessment; Maintenance engineering; Mathematical model; Optimization; Power system reliability; Reliability; Standards; Vectors; Cross-entropy method; Monte Carlo simulation; generating capacity reliability; reliability assessment;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2012.2213618
Filename
6313955
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