Adaptive Control of Nonlinear Pure-feedback Systems with Output Constraints: Integral Barrier Lyapunov Functional Approach

Citations

WEB OF SCIENCE

83
Citations

SCOPUS

88

초록

This paper studies an adaptive control problem of completely non-affine pure-feedback systems with an output constraint. The implicit function theorem and the mean value theorem are employed to deal with unknown output-constrained non-affine nonlinearities. Then, a dynamic surface design approach based on an appropriate Integral Barrier Lyapunov Functional is presented to design an adaptive controller ensuring both the constraint satisfaction and the desired tracking ability. For the controller design, the function approximation technique using neural networks is used for estimating unknown nonlinear terms with control direction nonlinearities. It is shown that all the signals in the closed-loop system are semi-globally uniformly ultimately bounded and the tracking error converges to an adjustable neighborhood of the origin while the output constraint is never violated.

키워드

Adaptive control; dynamic surface design; integral barrier Lyapunov functional; pure-feedback systems; DYNAMIC SURFACE CONTROL; NEURAL-NETWORK; STATE CONSTRAINTS; TRACKING CONTROL; DESIGN; FORM
제목
Adaptive Control of Nonlinear Pure-feedback Systems with Output Constraints: Integral Barrier Lyapunov Functional Approach
저자
Kim, Bong Su; Yoo, Sung Jin
DOI
10.1007/s12555-014-0018-3
발행일
2015-02
유형
Article
저널명
International Journal of Control, Automation, and Systems
권
13
호
1
페이지
249 ~ 256