Security control for two-time-scale networked systems under unreliable Markov networks subject to hybrid attacks

This work addresses the security control problem of two-time-scale networked systems operating on unreliable Markov networks under hybrid attacks. Markov jump processes are employed to model the different types of network attacks that the system may encounter, thereby defining three operational mode...

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Published inJournal of the Franklin Institute Vol. 362; no. 7; p. 107641
Main Authors Hou, Jingjing, Wang, Xiulin, Cai, Youzhi, Li, Feng, Shen, Hao
Format Journal Article
LanguageEnglish
Published Elsevier Inc 01.05.2025
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ISSN0016-0032
DOI10.1016/j.jfranklin.2025.107641

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Abstract This work addresses the security control problem of two-time-scale networked systems operating on unreliable Markov networks under hybrid attacks. Markov jump processes are employed to model the different types of network attacks that the system may encounter, thereby defining three operational modes: normal operation, deception attacks, and scaling attacks. A non-fragile control strategy is proposed to mitigate gain fluctuations resulting from unexpected errors and disturbances, which can enhance the robustness of the designed controller. A Lyapunov function with singular perturbation parameter is constructed to analyze both the system stability and H∞ performance index, where the singular perturbation parameter characterize the dynamics associated with fast and slow time-scale variations, leading to a set of sufficient stability conditions. Finally, the validity of the proposed control method is verified via numerical simulations. •The designed controller can perform security control in accordance with different modes.•A non-fragile control strategy is employed to enhance system stability.•The Lyapunov function with singular perturbation parameters is used.
AbstractList This work addresses the security control problem of two-time-scale networked systems operating on unreliable Markov networks under hybrid attacks. Markov jump processes are employed to model the different types of network attacks that the system may encounter, thereby defining three operational modes: normal operation, deception attacks, and scaling attacks. A non-fragile control strategy is proposed to mitigate gain fluctuations resulting from unexpected errors and disturbances, which can enhance the robustness of the designed controller. A Lyapunov function with singular perturbation parameter is constructed to analyze both the system stability and H∞ performance index, where the singular perturbation parameter characterize the dynamics associated with fast and slow time-scale variations, leading to a set of sufficient stability conditions. Finally, the validity of the proposed control method is verified via numerical simulations. •The designed controller can perform security control in accordance with different modes.•A non-fragile control strategy is employed to enhance system stability.•The Lyapunov function with singular perturbation parameters is used.
ArticleNumber 107641
Author Li, Feng
Hou, Jingjing
Shen, Hao
Wang, Xiulin
Cai, Youzhi
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Snippet This work addresses the security control problem of two-time-scale networked systems operating on unreliable Markov networks under hybrid attacks. Markov jump...
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StartPage 107641
SubjectTerms Hybrid attacks
Markov jump systems
Networked systems
Non-fragile control
Title Security control for two-time-scale networked systems under unreliable Markov networks subject to hybrid attacks
URI https://dx.doi.org/10.1016/j.jfranklin.2025.107641
Volume 362
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