Robust event-driven tracking control with preassigned performance for uncertain input-quantized nonlinear pure-feedback systems

Citations

WEB OF SCIENCE

9
Citations

SCOPUS

13

초록

This paper presents a simplified design methodology for robust event-driven tracking control of uncertain nonlinear pure-feedback systems with input quantization. All nonlinearities and quantization parameters are assumed to be completely unknown. Different from the existing event-driven control approaches for systems with completely unknown nonlinearities, the main contribution of this paper is to design a simple event-based tracking scheme with preassigned performance, without the use of adaptive function approximators and adaptive mirror models. It is shown in the Lyapunov sense that the proposed event-driven low-complexity tracker consisting of nonlinearly transformed error surfaces and a triggering condition can achieve the preselected transient and steady-state performance of control errors in the presence of the input quantization. (C) 2018 The Franklin Institute. Published by Elsevier Ltd. All rights reserved.

키워드

NETWORKED CONTROL-SYSTEMS; FULL STATE CONSTRAINTS; BARRIER LYAPUNOV FUNCTIONS; APPROXIMATION-FREE CONTROL; DISCRETE-TIME-SYSTEMS; TRIGGERED CONTROL; PRESCRIBED PERFORMANCE; ADAPTIVE-CONTROL; DELAY SYSTEMS; PACKET LOSSES
제목
Robust event-driven tracking control with preassigned performance for uncertain input-quantized nonlinear pure-feedback systems
저자
Choi, Yun Ho; Yoo, Sung Jin
DOI
10.1016/j.jfranklin.2018.03.004
발행일
2018-05
유형
Article
저널명
Journal of the Franklin Institute
권
355
호
8
페이지
3567 ~ 3582