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  5. Regional Stabilization for Discrete Time-Delay Systems With Actuator Saturations via A Delay-Dependent Polytopic Approach

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Article
English
2018

Regional Stabilization for Discrete Time-Delay Systems With Actuator Saturations via A Delay-Dependent Polytopic Approach

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English
2018
IEEE Transactions on Automatic Control
Vol 64 (3)
DOI: 10.1109/tac.2018.2847903

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Qinglong Qinglong Han
Qinglong Qinglong Han

Swinburne University Of Technology

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Yonggang Chen
Zidong Wang
Shumin Fei
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Abstract

This paper is concerned with the regional stabilization problem for discrete time-delay systems with actuator saturations. Different from some existing delay-independent techniques handling the saturation nonlinearity, a delay-dependent polytopic approach is first proposed in a discrete-time framework. Then, by combining with an augmented Lyapunov function, a discrete Wirtinger-based inequality and some novel analysis techniques, improved delay-dependent regional stabilization conditions are established by means of linear matrix inequalities. Finally, it is shown via two numerical examples that the obtained results are less conservative than some existing ones yet providing a larger estimate of an initial condition set.

How to cite this publication

Yonggang Chen, Zidong Wang, Shumin Fei, Qinglong Qinglong Han (2018). Regional Stabilization for Discrete Time-Delay Systems With Actuator Saturations via A Delay-Dependent Polytopic Approach. IEEE Transactions on Automatic Control, 64(3), pp. 1257-1264, DOI: 10.1109/tac.2018.2847903.

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Publication Details

Type

Article

Year

2018

Authors

4

Datasets

0

Total Files

0

Language

English

Journal

IEEE Transactions on Automatic Control

DOI

10.1109/tac.2018.2847903

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