H∞ security control for 2-D switched time delay systems under arbitrary delay time-variation rate and stochastic cyber attacks

This study focuses on H∞ security control for 2-D switched time delay systems subject to stochastic cyber attacks by the Roesser model, where the delay time-variation rate can be arbitrary. First, the time-delay system is modeled as the feedback interconnection of the delay-less system. To guarantee...

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Published inJournal of the Franklin Institute Vol. 361; no. 18; p. 107290
Main Authors Hu, Hongsheng, Meng, Yunhe, Huang, Shipei
Format Journal Article
LanguageEnglish
Published Elsevier Inc 01.12.2024
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ISSN0016-0032
DOI10.1016/j.jfranklin.2024.107290

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Abstract This study focuses on H∞ security control for 2-D switched time delay systems subject to stochastic cyber attacks by the Roesser model, where the delay time-variation rate can be arbitrary. First, the time-delay system is modeled as the feedback interconnection of the delay-less system. To guarantee the security of the system under stochastic cyber attacks, a state-dependent switching signal and an anti-deception attack controller are constructed. Stability conditions of 2-D delay-less feedback interconnection systems are given for the first time. Then, for the considered system, some criteria based on bilinear matrix inequalities (BMIs) are established via the Lyapunov function technology such that the mean-square asymptotic stability with H∞ performance is guaranteed under arbitrary delay time-variation rate. Moreover, a cone-complement linearization (CCL) method is proposed to compute the optimized controller gains for BMIs. The effectiveness of the proposed method is validated via two numerical simulations.
AbstractList This study focuses on H∞ security control for 2-D switched time delay systems subject to stochastic cyber attacks by the Roesser model, where the delay time-variation rate can be arbitrary. First, the time-delay system is modeled as the feedback interconnection of the delay-less system. To guarantee the security of the system under stochastic cyber attacks, a state-dependent switching signal and an anti-deception attack controller are constructed. Stability conditions of 2-D delay-less feedback interconnection systems are given for the first time. Then, for the considered system, some criteria based on bilinear matrix inequalities (BMIs) are established via the Lyapunov function technology such that the mean-square asymptotic stability with H∞ performance is guaranteed under arbitrary delay time-variation rate. Moreover, a cone-complement linearization (CCL) method is proposed to compute the optimized controller gains for BMIs. The effectiveness of the proposed method is validated via two numerical simulations.
ArticleNumber 107290
Author Huang, Shipei
Meng, Yunhe
Hu, Hongsheng
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  orcidid: 0000-0002-4117-4416
  surname: Huang
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  email: hspei@sina.cn
  organization: National-Local Joint Engineering Laboratory for Digitalize Electrical Design Technology, Wenzhou University, Wenzhou 325035, China
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Issue 18
Keywords 2-D switched systems
State-dependent switching
Time-varying delay
H∞ performance
Arbitrary delay time-variation rate
Stochastic cyber attacks
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Snippet This study focuses on H∞ security control for 2-D switched time delay systems subject to stochastic cyber attacks by the Roesser model, where the delay...
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StartPage 107290
SubjectTerms 2-D switched systems
Arbitrary delay time-variation rate
H∞ performance
State-dependent switching
Stochastic cyber attacks
Time-varying delay
Title H∞ security control for 2-D switched time delay systems under arbitrary delay time-variation rate and stochastic cyber attacks
URI https://dx.doi.org/10.1016/j.jfranklin.2024.107290
Volume 361
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