Title of article :
Fault-Tolerant Control for a Class of Uncertain Systems with Actuator Faults
Author/Authors :
YE, Sijun Northwest Polytechnical University - School of Automation, China , ZHANG, Youmin Concordia University - Department of Mechanical and Industrial Engineering, Canada , WANG, Xinmin Northwest Polytechnical University - School of Automation, China , JIANG, Bin Nanjing University of Aeronautics and Astronautics - School of Automation Engineering, China
From page :
174
To page :
183
Abstract :
The problem of fault-tolerant controller design for a class of polytopic uncertain systems with actuator faults is studied in this paper. The actuator faults are presented as a more general and practical continuous fault model. Based on the affine quadratic stability (AQS), the stability of the polytopic uncertain system is replaced by the stability at all corners of the polytope. For a wide range of problems including H∞ and mixed H2 / H∞ controller design, sufficient conditions are derived to guarantee the robust stability and performance of the closed-loop system in both normal and fault cases. In the framework of the linear matrix inequality (LMI) method, an iterative algorithm is developed to reduce conservativeness of the design procedure. The effectiveness of the proposed design is shown through a flight control example.
Keywords :
fault , tolerant control (FTC) , affine quadratic stability (AQS) , continuous actuator fault , multi , objective synthesis , linear matrix inequality (LMI)
Journal title :
Tsinghua Science and Technology
Journal title :
Tsinghua Science and Technology
Record number :
2535258
Link To Document :
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