IBLF-Based Finite-Time Adaptive Fuzzy Output-Feedback Control for Uncertain MIMO Nonlinear State-Constrained Systems

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초록

This article considers the problem of finite-time adaptive fuzzy output-feedback control design for multi-input-multioutput uncertain nonlinear systems subject to full state constraints. By employing the finite-time stability theory, a new finite-time adaptive fuzzy output-feedback control approach is proposed. An integral barrier Lyapunov functional is utilized to prevent all states from violating their constraints. Fuzzy logic systems are developed to approximate the uncertainties. A fuzzy state observer is constructed to estimate the unmeasurable states. Moreover, to handle the "explosion of complexity" issue in the backstepping control technique, a finite-time convergent differentiator is introduced to estimate the time derivatives of virtual control signals. The stability analysis showed that the control approach guarantees that all closed-loop signals are bounded, and the tracking errors converge to a small neighborhood of the origin in a finite time. Finally, the effectiveness of the proposed control scheme is confirmed by numerical simulations.

키워드

Adaptive systemsNonlinear systemsMIMO communicationBacksteppingStability analysisFuzzy logicLyapunov methodsAdaptive fuzzy controlfinite timeintegral barrier Lyapunov function (iBLF)nonlinear systemsstate constraintsDYNAMIC SURFACE CONTROLTRACKING CONTROLNEURAL-CONTROLBACKSTEPPING CONTROLSTABILIZATIONMANIPULATOR
제목
IBLF-Based Finite-Time Adaptive Fuzzy Output-Feedback Control for Uncertain MIMO Nonlinear State-Constrained Systems
저자
Wei, YanWang, YueyingAhn, Choon KiDuan, Dengping
DOI
10.1109/TFUZZ.2020.3021733
발행일
2021-11
유형
Article
저널명
IEEE Transactions on Fuzzy Systems
29
11
페이지
3389 ~ 3400