[1]
H. Wang, S. Daley. Actuator Fault Diagnosis: An Adaptive Observer-Based Technique[J]. IEEE Transactions on Automatic Control. 1996, 41(7): 1073-1078.
DOI: 10.1109/9.508919
Google Scholar
[2]
B. Jiang, Marcel Staroswiecki. Adaptive Observer Design for Robust Fault Estimation[J]. International Journal of Systems Science. 2002, 33(9): 767-775.
DOI: 10.1080/00207720210144776
Google Scholar
[3]
B Jiang, J. Wang, Y. Soh. An Adaptive Technique for Robust Diagnosis of Faults with Independent Effects on System Outputs[J]. International Journal of Control. 2002, 75(11): 792-802.
DOI: 10.1080/00207170210149934
Google Scholar
[4]
Y. Zhang, S. J. Qin. Adaptive Actuator Fault Compensation for Linear Systems with Matching and Unmatching Uncertainties[J]. Journal of Process Control. 2009, 19(6): 985-990.
DOI: 10.1016/j.jprocont.2008.12.008
Google Scholar
[5]
D. Wang, K. Lum. Adaptive Unknown Input Observer Approach for Aircraft Actuator Fault Detection and Isolation[J]. International Journal of Adaptive Control and Signal Processing. 2007, 21(31-48).
DOI: 10.1002/acs.936
Google Scholar
[6]
K. Zhang, B. Jiang, and V. Cocquempot. Adaptive Observer-based Fast Fault Estimation[J]. International Journal of Control, Automation, and Systems. 2008, 6(3): 320-326.
Google Scholar
[7]
T. Peng, W. Gui, X. D. Steven, etal. An LMI-Base H_/H∞ Optimal Design Approach for Fault Detection Observer[J]. Journal of Central South University of Technology(Science and Technology), 2004, 35(4): 628-631.
Google Scholar