Publication | Closed Access
Adaptive fuzzy fault-tolerant output feedback control of uncertain nonlinear systems with actuator faults
41
Citations
31
References
2012
Year
Fuzzy SystemsEngineeringRobust ControlActuator FaultsUnknown PlaceFuzzy Control SystemStabilitySystems EngineeringFault-tolerant ControlUnknown Nonlinear SystemsNonlinear ControlFuzzy LogicFuzzy Logic SystemsMechatronicsUncertain Nonlinear SystemsState ObserverMechanical SystemsProcess ControlAdaptive ControlBusiness
This article develops an adaptive fuzzy control method for accommodating actuator faults in a class of unknown nonlinear systems with unmeasured states. The considered faults are modelled as both loss of effectiveness and lock-in-place (stuck at unknown place). With the help of fuzzy logic systems to approximate the unknown nonlinear functions, a fuzzy adaptive observer is developed for estimating the unmeasured states. Combining the backstepping technique with the nonlinear tolerant-fault control theory, a novel adaptive fuzzy faults-tolerant control approach is constructed. It is proved that the proposed control approach can guarantee that all the signals of the resulting closed-loop system are bounded and the tracking error between the system output and the reference signal converges to a small neighbourhood of zero by appropriate choice of the design parameters. Simulation results are provided to show the effectiveness of the control approach.
| Year | Citations | |
|---|---|---|
Page 1
Page 1