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Mixed H2/H∞ control for a class of nonlinear networked control systems
In this paper, the mixed H 2 / H ∞ control problem is investigated for a class of nonlinear discrete-time networked control systems with random network-induced delays, stochastic packet dropouts and probabilistic sensor faults. The packet dropouts process is modeled as a homogeneous Markov chains ta...
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Published in: | International journal of control, automation, and systems 2016, Automation, and Systems, 14(3), , pp.655-665 |
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Main Authors: | , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites |
Online Access: | Get full text |
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Summary: | In this paper, the mixed
H
2
/
H
∞
control problem is investigated for a class of nonlinear discrete-time networked control systems with random network-induced delays, stochastic packet dropouts and probabilistic sensor faults. The packet dropouts process is modeled as a homogeneous Markov chains taking values in a finite state space. Network-induced delays occur in a random way with known upper bound. A set of stochastic variables are exploited to describe sensor faults with different probabilistic density functions. By using a delay-dependent Lyapunov functional, a mode-dependent mixed
H
2
/
H
∞
controller is designed to guarantee both stochastic stability of the closed-loop system and the prescribed H2, H¥ control performances. Sufficient conditions for the existence of the mixed
H
2
/
H
∞
controller are presented in terms of a series of LMIs. If these LMIs are feasible, then the modedependent mixed
H
2
/
H
∞
controller can be obtained. A numerical example is given to demonstrate the effectiveness of the developed method. |
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ISSN: | 1598-6446 2005-4092 |
DOI: | 10.1007/s12555-013-0166-x |