L2 norm-based finite-time stability and boundedness of singular distributed parameter systems with parabolic type

Author:

Zhou Xingyu1,Wang Haoping1ORCID,Tian Yang1

Affiliation:

1. LaFCAS, School of Automation, Nanjing University of Science and Technology, Nanjing, P.R. China

Abstract

In this study, the problem of finite-time stability and boundedness for parabolic singular distributed parameter systems in the sense of [Formula: see text] norm is investigated. First, two new results on [Formula: see text] norm-based finite-time stability and finite-time boundedness for above-mentioned systems, inspired by the light of partial differential equations theory and Lyapunov functional method, are presented. Then, some sufficient conditions of [Formula: see text] norm-based finite-time stability and boundedness are established by virtue of differential inequalities and linear matrix inequalities. Furthermore, the distributed state feedback controllers are constructed to guarantee the [Formula: see text] norm-based finite-time stable and bounded of the closed-loop singular distributed parameter systems. Finally, numerical simulations on a specific numerical example and the building temperature control system equipped with air conditioning are given to demonstrate the validity of the proposed methods.

Funder

international science and technology cooperation programme

national natural science foundation of china

natural science foundation of jiangsu province

graduate research and innovation projects of jiangsu province

Publisher

SAGE Publications

Subject

Mechanical Engineering,Control and Systems Engineering

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