Combined H and anti‐disturbance control for semi‐Markovian jump systems via a nonlinear disturbance observer

Author:

Kaviarasan Boomipalagan1ORCID,Kwon Oh‐Min1ORCID,Park Myeong Jin2ORCID,Lee Sangmoon3ORCID,Sakthivel Rathinasamy45

Affiliation:

1. School of Electrical Engineering Chungbuk National University Cheongju South Korea

2. Center for Global Converging Humanities Kyung Hee University Yongin South Korea

3. School of Electronic and Electrical Engineering Kyungpook National University Daegu South Korea

4. Department of Applied Mathematics Bharathiar University Coimbatore India

5. Department of Mathematics Sungkyunkwan University Suwon South Korea

Abstract

AbstractThis paper investigates a combined and anti‐disturbance control problem for a class of semi‐Markovian jump nonlinear systems with constant time delay, and both modeled and unmodeled disturbances. In particular, the modeled disturbance is thought to be produced by a nonlinear exogenous system and is estimated by introducing a mode‐dependent nonlinear disturbance observer. The desired controller for the addressed system is then proposed, which consists of two components: (i) state feedback, which ensures the system's stochastic stability by attenuating the unmodeled disturbance; and (ii) disturbance estimate, which compensates for the modeled disturbance effect. Following that, a novel mode‐dependent asymmetric Lyapunov‐Krasovskii functional is used to derive the sufficient conditions for the existence of the proposed controller and disturbance observer. The developed theoretical results are supported by three numerical examples that demonstrate the utility of the proposed design method.

Publisher

Wiley

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering,Mechanical Engineering,Aerospace Engineering,Biomedical Engineering,General Chemical Engineering,Control and Systems Engineering

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