Sampled-data H ∞ control for a class of Markovian jump systems with input saturation via stochastic sampling design

This paper deals with the problem of H ∞ control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we address is a Bernoulli distribution and two different sampling periods are considered whose occurrence probabilities are known constants. Actually...

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Published inTransactions of the Institute of Measurement and Control Vol. 36; no. 3; pp. 291 - 299
Main Authors Li, Bo, Song, Xiaona, Zhao, Junjie
Format Journal Article
LanguageEnglish
Published London, England SAGE Publications 01.05.2014
Sage Publications Ltd
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Abstract This paper deals with the problem of H ∞ control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we address is a Bernoulli distribution and two different sampling periods are considered whose occurrence probabilities are known constants. Actually the control method in this paper can be applied to a system with multiple stochastic sampling periods. By transforming the original stochastic sampling Markovian jump system into a continuous Markovian jump delayed systems, the plant can be stabilized by a state-feedback controller with input saturation. By applying an appropriate Lyapunov–Krasovskii function, some sufficient conditions for the stabilization of the system and the H ∞ controller design are derived in terms of linear matrix inequalities. Finally, in order to validate the efficiency of the approach mentioned above, a simulation example is provided.
AbstractList This paper deals with the problem of H ∞ control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we address is a Bernoulli distribution and two different sampling periods are considered whose occurrence probabilities are known constants. Actually the control method in this paper can be applied to a system with multiple stochastic sampling periods. By transforming the original stochastic sampling Markovian jump system into a continuous Markovian jump delayed systems, the plant can be stabilized by a state-feedback controller with input saturation. By applying an appropriate Lyapunov–Krasovskii function, some sufficient conditions for the stabilization of the system and the H ∞ controller design are derived in terms of linear matrix inequalities. Finally, in order to validate the efficiency of the approach mentioned above, a simulation example is provided.
This paper deals with the problem of H∞ control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we address is a Bernoulli distribution and two different sampling periods are considered whose occurrence probabilities are known constants. Actually the control method in this paper can be applied to a system with multiple stochastic sampling periods. By transforming the original stochastic sampling Markovian jump system into a continuous Markovian jump delayed systems, the plant can be stabilized by a state-feedback controller with input saturation. By applying an appropriate Lyapunov-Krasovskii function, some sufficient conditions for the stabilization of the system and the H∞ controller design are derived in terms of linear matrix inequalities. Finally, in order to validate the efficiency of the approach mentioned above, a simulation example is provided. [PUBLICATION ABSTRACT]
This paper deals with the problem of [Formula: see text] control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we address is a Bernoulli distribution and two different sampling periods are considered whose occurrence probabilities are known constants. Actually the control method in this paper can be applied to a system with multiple stochastic sampling periods. By transforming the original stochastic sampling Markovian jump system into a continuous Markovian jump delayed systems, the plant can be stabilized by a state-feedback controller with input saturation. By applying an appropriate Lyapunov–Krasovskii function, some sufficient conditions for the stabilization of the system and the [Formula: see text] controller design are derived in terms of linear matrix inequalities. Finally, in order to validate the efficiency of the approach mentioned above, a simulation example is provided.
Author Zhao, Junjie
Li, Bo
Song, Xiaona
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Keywords Markovian jump delayed systems
variable sampling
sampled-data system
H∞ control
input saturation
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Snippet This paper deals with the problem of H ∞ control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we...
This paper deals with the problem of [Formula: see text] control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic...
This paper deals with the problem of H∞ control for a stochastic sampling Markovian jump system subject to input saturation. The stochastic sampling we address...
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SubjectTerms Input output
Markov analysis
Sampling techniques
Stochastic control theory
Title Sampled-data H ∞ control for a class of Markovian jump systems with input saturation via stochastic sampling design
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