This paper investigates the problem of static output feedback control for a class of nonhomogeneous Markovian jump system (NMJS) with asynchronous time delays (ATDs). Since the ATDs subject to uncertain transition probabilities (TPs) are taking into account in a practical phenomenon, new approaches are introduced to deal with the ATDs characterized by nonhomogeneous Markov processes. It is assumed that the communication links are not perfect due to its detrimental effect on the performance of systems. Stochastic variables are presented to characterize the data transmission, which are depending on operation modes and satisfying the Bernoulli distribution. Sets of slack variables are adopted to decouple the product terms between system matrices and Lyapunov matrices. Based on an extended Lyapunov function combined with Finsler inequality approach, the robust static output-feedback controller is designed for the closed-loop NMJS. Finally, a numerical example is provided to verify the design method.

Static output feedback control of nonhomogeneous Markovian jump systems with asynchronous time delays

KARIMI, HAMID REZA;
2017-01-01

Abstract

This paper investigates the problem of static output feedback control for a class of nonhomogeneous Markovian jump system (NMJS) with asynchronous time delays (ATDs). Since the ATDs subject to uncertain transition probabilities (TPs) are taking into account in a practical phenomenon, new approaches are introduced to deal with the ATDs characterized by nonhomogeneous Markov processes. It is assumed that the communication links are not perfect due to its detrimental effect on the performance of systems. Stochastic variables are presented to characterize the data transmission, which are depending on operation modes and satisfying the Bernoulli distribution. Sets of slack variables are adopted to decouple the product terms between system matrices and Lyapunov matrices. Based on an extended Lyapunov function combined with Finsler inequality approach, the robust static output-feedback controller is designed for the closed-loop NMJS. Finally, a numerical example is provided to verify the design method.
2017
Asynchronous time delay; Discrete-time; Nonhomogeneous Markovian jump system; Output feedback control; Time-varying transition probability; Control and Systems Engineering; Theoretical Computer Science; Software; Computer Science Applications1707 Computer Vision and Pattern Recognition; Information Systems and Management; Artificial Intelligence
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1014206
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