Event-Triggered Fault Detection and Isolation of Discrete-Time Systems Based on Geometric Technique

Citations

WEB OF SCIENCE

91
Citations

SCOPUS

96

초록

This brief considers the problem of fault detection and isolation using the geometric approach for discrete-time systems. The description of unobservable subspace is presented. The residuals are generated by the filter via employing the geometric technique so that each residual is influenced by a specific fault and uncoupled from others. Sufficient conditions are established such that the norm of the transfer function is less than a pre-given value. In order to reduce computational cost, an event-triggered mechanism is presented to determine whether the current data should be released or not. Finally, numerical demonstration is given to verify the usefulness of the proposed new design technique.

키워드

Fault detectionDiscrete-time systemsSymmetric matricesComputational efficiencyElectrical fault detectionGeometric techniquefault detection and isolationevent-triggered mechanism
제목
Event-Triggered Fault Detection and Isolation of Discrete-Time Systems Based on Geometric Technique
저자
Liang, HongjingZhang, ZhenxingAhn, Choon Ki
DOI
10.1109/TCSII.2019.2907706
발행일
2020-02
유형
Article
저널명
IEEE Transactions on Circuits and Systems II: Express Briefs
67
2
페이지
335 ~ 339