DocumentCode :
487571
Title :
Threshold Computations for Detection of Failures in SISO Systems with Transfer Function Errors
Author :
Weiss, Jerold L.
Author_Institution :
ALPHATECH, Inc., Burlington, MA 01803
fYear :
1988
fDate :
15-17 June 1988
Firstpage :
2213
Lastpage :
2218
Abstract :
This paper considers the problem of detecting failures in single input single output (SISO) systems using analytic redundancy concepts. Since the models used in such concepts are subject to eror, a method of determining detection thresholds that account for these errors is sought. In many applications, error can be characterized by a bound on the magnitude of the "error transfer function" as a function of frequency. Such a characterization has been used to determine fixed thresholds that account for modeling errors when input signals to the plant are bounded and have known temporal characteristics [1]. Frequently, however, the input signals are not known a-priori and any reasonable bound on their size results in overly conservative (i.e., too large) thresholds. The methodology presented here utilizes a straightforward application of Parseval\´s relation to develop a threshold computation that is performed on-line as a function of the input signal. The threshold is set at a quiescent value to account for sensor noise, and is adjusted (upward) according to the activity of the input signal. An application to detection of actuator failures is presented.
Keywords :
Actuators; Character generation; Failure analysis; Fourier transforms; Frequency; Hardware; Linear systems; Redundancy; Sensor phenomena and characterization; Transfer functions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1988
Conference_Location :
Atlanta, Ga, USA
Type :
conf
Filename :
4790092
Link To Document :
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