Event-triggered output-feedback tracking of a class of nonlinear systems with unknown time delays

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초록

A single function approximation (SFA) approach for event-triggered output-feedback tracker design is presented for uncertain nonlinear time-delay systems in lower-triangular form. Contrary to the existing event-triggered output-feedback control methods dependent on multiple function approximators in the presence of lower-triangular nonlinearities, the proposed SFA approach provides the following advantages: (i) the simple observer structure independent of function approximators; (ii) one event-triggering condition based on only a tracking error; and (iii) the simple control scheme using one function approximator. Thus, the structural simplicity is allowed for implementing the observer and the event-triggering law in the sensor part and the adaptive tracker in the control part. Under the proposed SFA-based event-triggered control scheme, it is shown that the boundedness of closed-loop signals and the existence of a minimum inter-event time are guaranteed regardless of unknown time-delay nonlinearities and unmeasurable state variables. © 2019, Springer Nature B.V.

키워드

Event-triggered controlOutput feedbackSingle function approximation (SFA)Unknown time delaysControl nonlinearitiesDelay control systemsTime delayUncertainty analysisClosed-loop signalsEvent-triggered controlsFunction approximationFunction approximatorsNonlinear time delay systemsOutput feedbackOutput feedback controlsUnknown time delaysFeedback
제목
Event-triggered output-feedback tracking of a class of nonlinear systems with unknown time delays
저자
Choi, Y.H.Yoo, S.J.
DOI
10.1007/s11071-019-04832-x
발행일
2019-04
유형
Article
저널명
Nonlinear Dynamics
96
2
페이지
959 ~ 973