DocumentCode :
572498
Title :
Robust H fault detection filter for networked control system with network-induced uncertainties
Author :
Qi, Xiaomei ; Zhang, Chengjin
Author_Institution :
Sch. of Control Sci. & Eng., Shandong Univ., Jinan, China
fYear :
2012
fDate :
15-17 Aug. 2012
Firstpage :
167
Lastpage :
172
Abstract :
A robust fault detection filter (RFDF) design problem for networked control system (NCS) is investigated in this note. Network-induced uncertainties including time-varying unknown network-induced delay and data packet dropout are assumed to be existing in both sensor-to-controller link and controller-to-actuator link, where the total network-induced delay is transformed into uncertainty of system model, and the data packet dropout is described as a two-state Markov chain. Then, the closed NCS with network-induced uncertainties is modeled as a Markovian jump system with model uncertainty. An observer-based fault detection filter is presented as a residual generator and a performance index is proposed to deal with the robustness issues, which is to enhance the robustness of the residual generator against network-induced uncertainties and disturbances, without significant loss of the faults sensitivity. Sufficient condition for asymptotically mean-square stable of residual dynamics is derived, and the desired RFDF is obtained, which is constructed in terms of certain linear matrix inequality. Finally, a numerical example illustrates the effectiveness of the proposed approach.
Keywords :
H control; Markov processes; delay systems; filtering theory; linear matrix inequalities; networked control systems; performance index; robust control; time-varying systems; uncertain systems; Markovian jump system; asymptotically mean-square stability; closed NCS; controller-to-actuator link; data packet dropout; faults sensitivity; linear matrix inequality; model uncertainty; network-induced uncertainty; networked control system; observer-based fault detection filter; performance index; residual dynamics; residual generator; robust H∞ fault detection filter; robust fault detection filter design problem; sensor-to-controller link; time-varying unknown network-induced delay; total network-induced delay; two-state Markov chain; Delay; Fault detection; Generators; Markov processes; Performance analysis; Robustness; Uncertainty; Markovian jump systems; Robust fault detection filter; data packet dropout; time-varying unknown network-induced delay;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Automation and Logistics (ICAL), 2012 IEEE International Conference on
Conference_Location :
Zhengzhou
ISSN :
2161-8151
Print_ISBN :
978-1-4673-0362-0
Electronic_ISBN :
2161-8151
Type :
conf
DOI :
10.1109/ICAL.2012.6308191
Filename :
6308191
Link To Document :
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