State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks

This paper presents conditions in the form of Linear Matrix Inequalities to design state-feedback controllers for discrete-time uncertain positive linear systems in the presence of denial of service (DoS) attacks. The system under attack is modeled after a switched model that allows us to derive the...

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Main Authors: Pessim, Paulo S. P., Silva, Felipe A., Peixoto, Marcia L.C., Palhares, Reinaldo M., Lacerda, Marcio J.
Format: Conference or Workshop Item
Language:English
Published: IEEE 2024
Subjects:
Online Access:https://repository.londonmet.ac.uk/9341/1/PSPPL24.pdf
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author Pessim, Paulo S. P.
Silva, Felipe A.
Peixoto, Marcia L.C.
Palhares, Reinaldo M.
Lacerda, Marcio J.
author_facet Pessim, Paulo S. P.
Silva, Felipe A.
Peixoto, Marcia L.C.
Palhares, Reinaldo M.
Lacerda, Marcio J.
author_sort Pessim, Paulo S. P.
collection LMU
description This paper presents conditions in the form of Linear Matrix Inequalities to design state-feedback controllers for discrete-time uncertain positive linear systems in the presence of denial of service (DoS) attacks. The system under attack is modeled after a switched model that allows us to derive the synthesis conditions. Two strategies for control are considered, a hold strategy and a packet-based approach. Numerical experiments illustrate the efficacy of the proposed method of keeping the positiveness and stability of the closed-loop system under the presence of DoS attacks.
first_indexed 2024-07-09T04:08:08Z
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institution London Metropolitan University
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spelling oai:repository.londonmet.ac.uk:93412024-06-05T09:18:51Z https://repository.londonmet.ac.uk/9341/ State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks Pessim, Paulo S. P. Silva, Felipe A. Peixoto, Marcia L.C. Palhares, Reinaldo M. Lacerda, Marcio J. 600 Technology 620 Engineering & allied operations This paper presents conditions in the form of Linear Matrix Inequalities to design state-feedback controllers for discrete-time uncertain positive linear systems in the presence of denial of service (DoS) attacks. The system under attack is modeled after a switched model that allows us to derive the synthesis conditions. Two strategies for control are considered, a hold strategy and a packet-based approach. Numerical experiments illustrate the efficacy of the proposed method of keeping the positiveness and stability of the closed-loop system under the presence of DoS attacks. IEEE 2024-05-22 Conference or Workshop Item PeerReviewed text en https://repository.londonmet.ac.uk/9341/1/PSPPL24.pdf Pessim, Paulo S. P., Silva, Felipe A., Peixoto, Marcia L.C., Palhares, Reinaldo M. and Lacerda, Marcio J. (2024) State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks. In: CONTROL 2024: 14th United Kingdom Automatic Control Council International Conference on Control, 10-12 April 2024, Winchester, UK. https://ieeexplore.ieee.org/document/10532009
spellingShingle 600 Technology
620 Engineering & allied operations
Pessim, Paulo S. P.
Silva, Felipe A.
Peixoto, Marcia L.C.
Palhares, Reinaldo M.
Lacerda, Marcio J.
State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks
title State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks
title_full State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks
title_fullStr State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks
title_full_unstemmed State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks
title_short State-feedback control for discrete-time uncertain positive linear systems under denial of service attacks
title_sort state feedback control for discrete time uncertain positive linear systems under denial of service attacks
topic 600 Technology
620 Engineering & allied operations
url https://repository.londonmet.ac.uk/9341/1/PSPPL24.pdf
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