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- W2753294500 abstract "Summary This paper presents 2‐novel linear matrix inequality (LMI)‐based adaptive output feedback fault‐tolerant control strategies for the class of nonlinear Lipschitz systems in the presence of bounded matched or mismatched disturbances and simultaneous occurrence of actuator faults, including failure, loss of effectiveness, and stuck. The constructive algorithms based on LMI with creatively using Lyapunov stability theory and without the need for an explicit information about mode of actuator faults or fault detection and isolation mechanism are developed for online tuning of adaptive and fixed output‐feedback gains to stabilize the closed‐loop control system asymptotically. The proposed controllers guarantee to compensate actuator faults effects and to attenuate disturbance effects. The resulting control methods have simpler structure, as compared with most existing recent methods and more suitable for practical systems. The merits of the proposed fault‐tolerant control scheme have been verified by the simulation on nonlinear Boeing 747 lateral motion dynamic model subjected to actuator faults." @default.
- W2753294500 created "2017-09-15" @default.
- W2753294500 creator A5062226868 @default.
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- W2753294500 date "2017-08-31" @default.
- W2753294500 modified "2023-10-05" @default.
- W2753294500 title "LMI-based adaptive output feedback fault-tolerant controller design for nonlinear systems" @default.
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- W2753294500 doi "https://doi.org/10.1002/acs.2805" @default.
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