DocumentCode :
485637
Title :
Parametric Failure Detection & Estimation in Linear Systems
Author :
Tulpule, Bhal R. ; Knapp, Charles H.
Author_Institution :
Hamilton Standard, Division of United Technologies Corporation, Farmington, CT. 06032
fYear :
1982
fDate :
14-16 June 1982
Firstpage :
805
Lastpage :
807
Abstract :
An algorithm is reported for the sequential detection and estimation of parametric failures (deviations) which affect the system matrices of a linear, discrete time system. This represents the generalization of a technique, previously reported by the authors [1, 2], for the detection and estimation of soft failures in the statistical parameters of System inputs and measurement errors. In general, a parametric failure may be defined as a discrepancy between the true and design (model) values of any parameter characterizing the system behavior. The proposed scheme maintains the attractive features of the schemes in [1, 2] such as the use of a single Kalman filter. As before, the concepts of Sample Numbers (SN) and their average (ASN) obtained from the Wald Sequential Detector (WSD) are used for rapid detection and estimation of a failed parameter. Capabilities of the scheme are illustrated via simulation results for a servo control system.
Keywords :
Computer science; Detectors; Discrete time systems; Fault detection; Filter bank; Linear systems; Measurement errors; Parameter estimation; Servosystems; Tin;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1982
Conference_Location :
Arlington, VA, USA
Type :
conf
Filename :
4787965
Link To Document :
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