基于泰勒解耦和事件触发的非确定非线性系统自适应渐近跟踪控制

Adaptive Asymptotic Tracking Control of Uncertain Nonlinear Systems Based on Taylor Decoupling and Event-Trigger

IEEE Transactions on Systems, Man, and Cybernetics: Systems · 2020
被引 26
ABS 3

中文导读

针对事件触发输入的非确定非线性系统,提出一种基于泰勒解耦的非仿射控制输入分离设计方法,实现渐近跟踪并减轻通信负载,通过倒立摆仿真验证了有效性。

Abstract

This article studies the robust adaptive asymptotic tracking control problem for uncertain nonlinear systems with event-triggered inputs. Contrary to the existing results, a novel nonaffine nonlinear control input separated design scheme is developed based on the Taylor decoupling technique instead of the previous approximation ways. Correspondingly, the augmented dimension parameter updated laws and the unknown bound estimation of the compounded disturbance with a positive continuous integrable function are skillfully introduced. Also, by introducing a suitable decreasing function of tracking error variables, an improved adaptive event-triggered mechanism is constructed to achieve the asymptotic tracking and the communication load can be effectively alleviated. Moreover, it is shown that all the signals in the closed-loop system are uniformly bounded and the tracking errors converge to zero in a preset compact set. Finally, the validity of the proposed method is illustrated by simulation on an inverted pendulum model.

自适应控制非线性系统事件触发控制泰勒解耦