DocumentCode
2617873
Title
Fault localization using principal component analysis based on a new contribution to the squared prediction error
Author
Mnassri, Baligh ; El Adel, Mostafa ; Ouladsine, Mustapha
Author_Institution
LSIS Lab., Univ. Paul Cezanne, Normandie-Niemen
fYear
2008
fDate
25-27 June 2008
Firstpage
65
Lastpage
70
Abstract
In multivariate statistic process control (MSPC), the projection methods, in particular, the principal component analysis (PCA) proved their efficiencies to the problems of fault diagnosis. In this paper, we explained the use of this tool and its major interest. A projected observation in the PCA space has a score distance (SD) in the principal component subspace and an orthogonal distance (OD) or SPE (squared prediction error) in the residual subspace. It is known that each of these two subspaces has a control limit. Hence, fault detection is well accomplished by studying simultaneously the two distances. The main approach for fault localization based on PCA is the contribution plots to these distances. We note that each variable has two contributions. We showed that the contribution to the SPE, proposed in the literature presents some limitations. That´s why we proposed a new form for this contribution. With this study, we contributed to the realization of a more efficient diagnosis.
Keywords
fault location; prediction theory; principal component analysis; quality control; statistical process control; SPE; fault detection; fault diagnosis; fault localization; multivariate statistic process control; orthogonal distance; principal component analysis; score distance; squared prediction error; Calibration; Control systems; Fault detection; Fault diagnosis; Large scale integration; Principal component analysis; Space technology; Statistical analysis; Statistics; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Control and Automation, 2008 16th Mediterranean Conference on
Conference_Location
Ajaccio
Print_ISBN
978-1-4244-2504-4
Electronic_ISBN
978-1-4244-2505-1
Type
conf
DOI
10.1109/MED.2008.4602093
Filename
4602093
Link To Document