Decentralized low-complexity fault-tolerant tracking of a class of arbitrarily switched interconnected nonaffine nonlinear systems with unexpected faults

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초록

A low-complexity design strategy is proposed to ensure the decentralized fault-tolerant tracking quality of a class of uncertain switched interconnected nonaffine nonlinear systems. All system nonlinearities, nonlinear interaction faults, and actuator faults are arbitrarily switched and unknown. Compared with the existing decentralized tracking results, a universal decentralized tracking strategy is recursively provided to deal with asynchronously switched nonlinear interconnections and their faults, without requiring the signs of control coefficient functions and employing any fault compensators using adaptive nonlinear function approximators. Using the common Lyapunov function method, it is shown that the local tracking errors are maintained within preselected time-varying bounds regardless of arbitrary switched faults. © 2018, Springer Nature B.V.

키워드

Decentralized fault-tolerant trackingLow-complexity designSwitched interaction faultsUnknown control directionsLARGE-SCALE SYSTEMSDYNAMIC SURFACE CONTROLOUTPUT-FEEDBACK CONTROLADAPTIVE NEURAL-CONTROLUNKNOWN DEAD-ZONEPRESCRIBED PERFORMANCESTABILIZATION
제목
Decentralized low-complexity fault-tolerant tracking of a class of arbitrarily switched interconnected nonaffine nonlinear systems with unexpected faults
저자
Yoo, S.J.
DOI
10.1007/s11071-018-4483-8
발행일
2019-01
유형
Article in Press
저널명
Nonlinear Dynamics
95
1
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1 ~ 11