Approximation-based adaptive tracking of a class of uncertain nonlinear time-delay systems in nonstrict-feedback form

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초록

This paper investigates a predefined performance control problem for adaptive tracking of uncertain nonlinear time-delay systems in nonstrict-feedback form. Nonstrict-feedback nonlinearities, time-varying delays and external disturbances are assumed to be unknown. Based on the exponential decaying design functions denoting the preassigned bounds of transient and steady-state tracking errors, some variable separation lemmas are derived to design an approximation-based robust adaptive control scheme in the presence of nonstrict-feedback time-delayed nonlinearities. The proposed control system guarantees that a tracking error remains within a predesigned bound for all t >= 0 and converges to a preselected neighbourhood of the origin. Compared with the existing results in the literature, the main contribution of this paper is to provide a solution on the guaranteed performance control in the presence of unknown nonstrict-feedback nonlinearities related to all delayed state variables. Simulation results illustrate the effectiveness of the proposed methodology.

키워드

Nonstrict-feedback; predefined performance; adaptive control; nonlinear systems; unknown time-varying delays; DYNAMIC SURFACE CONTROL; UNKNOWN DEAD-ZONE; PRESCRIBED PERFORMANCE; NEURAL-CONTROL; CONTROLLER-DESIGN; VARYING DELAYS; CONTROL SCHEME; STABILIZATION; HYSTERESIS; NETWORK
제목
Approximation-based adaptive tracking of a class of uncertain nonlinear time-delay systems in nonstrict-feedback form
저자
Yoo, Sung Jin
DOI
10.1080/00207721.2016.1256450
발행일
2017-11
유형
Article
저널명
International Journal of Systems Science
권
48
호
7
페이지
1347 ~ 1355