Robust controllability and stabilization of switched Boolean control networks subject to multi-bit function perturbations

This paper develops a new multi-bit perturbed controllability matrix method for solving the robust controllability and stabilization of switched Boolean control networks (SBCNs) with multi-bit function perturbations. By constructing both perturbed position index matrix and multi-bit perturbed contro...

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Published inInformation sciences Vol. 625; pp. 656 - 672
Main Authors Yang, Xinrong, Li, Haitao
Format Journal Article
LanguageEnglish
Published Elsevier Inc 01.05.2023
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Abstract This paper develops a new multi-bit perturbed controllability matrix method for solving the robust controllability and stabilization of switched Boolean control networks (SBCNs) with multi-bit function perturbations. By constructing both perturbed position index matrix and multi-bit perturbed controllability matrix for SBCNs, the space of state pairs is divided into two disjointed parts, which determine whether or not the paths between two arbitrary states are affected by function perturbations. Then, a sequence of perturbed reachable sets is constructed, and several criteria are presented for the robust controllability of SBCNs under the multi-bit function perturbations. As a generalization, a perturbed position index matrix and a sequence of perturbed reachable sets are designed for the closed-loop system, based on which, a necessary and sufficient condition is presented for the robust state-feedback stabilization of SBCNs under arbitrary switching signal. Numerical examples demonstrate that our new criteria work well for the multi-bit function perturbations and thus have more practical significance.
AbstractList This paper develops a new multi-bit perturbed controllability matrix method for solving the robust controllability and stabilization of switched Boolean control networks (SBCNs) with multi-bit function perturbations. By constructing both perturbed position index matrix and multi-bit perturbed controllability matrix for SBCNs, the space of state pairs is divided into two disjointed parts, which determine whether or not the paths between two arbitrary states are affected by function perturbations. Then, a sequence of perturbed reachable sets is constructed, and several criteria are presented for the robust controllability of SBCNs under the multi-bit function perturbations. As a generalization, a perturbed position index matrix and a sequence of perturbed reachable sets are designed for the closed-loop system, based on which, a necessary and sufficient condition is presented for the robust state-feedback stabilization of SBCNs under arbitrary switching signal. Numerical examples demonstrate that our new criteria work well for the multi-bit function perturbations and thus have more practical significance.
Author Li, Haitao
Yang, Xinrong
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Keywords Switched Boolean control network
Controllability
Stabilization
Function perturbation
Semi-tensor product of matrices
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Snippet This paper develops a new multi-bit perturbed controllability matrix method for solving the robust controllability and stabilization of switched Boolean...
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elsevier
SourceType Enrichment Source
Index Database
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StartPage 656
SubjectTerms Controllability
Function perturbation
Semi-tensor product of matrices
Stabilization
Switched Boolean control network
Title Robust controllability and stabilization of switched Boolean control networks subject to multi-bit function perturbations
URI https://dx.doi.org/10.1016/j.ins.2023.01.017
Volume 625
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