Input-Output Finite-Time Sliding-Mode Control for T-S Fuzzy Systems With Application

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초록

This article addresses the issue of input-output finite-time stability (IO-FTS) for nonlinear systems by employing sliding-mode control (SMC) methodology. Many practical systems subject to complex factors, such as the single-link robot arm model (SLRAM), can be characterized as nonlinear systems. Our attention is focused on designing a fuzzy-model-based finite-time SMC law to attenuate the influences of uncertainty, nonlinear term, and external disturbance during the finite-time region. First, a novel integral sliding-mode surface is proposed based on the Takagi-Sugeno fuzzy rule. Then, by using the key point of Lyapunov function theory, an appropriate fuzzy SMC law is designed to make sure that the signal variables can arrive at a domain within the assigned fixed-time level. Moreover, some new IO-FTS criteria are constructed for the resulting sliding dynamics over the whole finite-time level, including reaching phase and sliding motion phase. Via the SLRAM, we demonstrate the effectiveness of the proposed SMC approach.

키워드

Fuzzy systemsStability analysisNonlinear systemsLyapunov methodsRobotsUncertaintyComputational modelingInput-output finite-time stability (IO-FTS)Lyapunov functionsingle-link robot arm model (SLRAM)MARKOVIAN JUMP SYSTEMSROBUST STABILIZATIONSTOCHASTIC-SYSTEMSNONLINEAR-SYSTEMS
제목
Input-Output Finite-Time Sliding-Mode Control for T-S Fuzzy Systems With Application
저자
Qi, WenhaiYang, XuAhn, Choon KiCao, JindeCheng, Jun
DOI
10.1109/TSMC.2019.2954854
발행일
2021-09
유형
Article
저널명
IEEE Transactions on Systems, Man, and Cybernetics: Systems
51
9
페이지
5446 ~ 5455