Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique

The field programmable gate array (FPGA) implementation of the nonlinear resistor-capacitor-inductor shunted Josephson junction (NRCISJJ) model and its application to sEMG (Surface ElectroMyoGraphic) signal encryption through image encrypted technique are reported in this study. Thanks to the numeri...

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Main Authors: Colince Welba, Dhanagopal Ramachandran, Alexendre Noura, Victor Kamdoum Tamba, Sifeu Takougang Kingni, Pascal Eloundou Ntsama, Pierre Ele
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Complexity
Online Access:http://dx.doi.org/10.1155/2022/4510236
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author Colince Welba
Dhanagopal Ramachandran
Alexendre Noura
Victor Kamdoum Tamba
Sifeu Takougang Kingni
Pascal Eloundou Ntsama
Pierre Ele
author_facet Colince Welba
Dhanagopal Ramachandran
Alexendre Noura
Victor Kamdoum Tamba
Sifeu Takougang Kingni
Pascal Eloundou Ntsama
Pierre Ele
author_sort Colince Welba
collection DOAJ
description The field programmable gate array (FPGA) implementation of the nonlinear resistor-capacitor-inductor shunted Josephson junction (NRCISJJ) model and its application to sEMG (Surface ElectroMyoGraphic) signal encryption through image encrypted technique are reported in this study. Thanks to the numerical simulations and FPGA implementation of the NRCISJJ model, different shapes of chaotic attractors are revealed by varying the parameters. The chaotic behaviour found in the NRCISJJ model is used to encrypt the sEMG signal through image encryption technique. The results obtained are interesting and open up many perspectives.
format Article
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institution Kabale University
issn 1099-0526
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Complexity
spelling doaj-art-5ada9fa9d2544d42bd432794cdad505b2025-08-20T03:34:13ZengWileyComplexity1099-05262022-01-01202210.1155/2022/4510236Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption TechniqueColince Welba0Dhanagopal Ramachandran1Alexendre Noura2Victor Kamdoum Tamba3Sifeu Takougang Kingni4Pascal Eloundou Ntsama5Pierre Ele6Department of Fundamental SciencesCenter for Systems DesignDepartment of PhysicsDepartment of Telecommunication and Network EngineeringDepartment of MechanicalDepartment of PhysicsElectrical and EngineeringThe field programmable gate array (FPGA) implementation of the nonlinear resistor-capacitor-inductor shunted Josephson junction (NRCISJJ) model and its application to sEMG (Surface ElectroMyoGraphic) signal encryption through image encrypted technique are reported in this study. Thanks to the numerical simulations and FPGA implementation of the NRCISJJ model, different shapes of chaotic attractors are revealed by varying the parameters. The chaotic behaviour found in the NRCISJJ model is used to encrypt the sEMG signal through image encryption technique. The results obtained are interesting and open up many perspectives.http://dx.doi.org/10.1155/2022/4510236
spellingShingle Colince Welba
Dhanagopal Ramachandran
Alexendre Noura
Victor Kamdoum Tamba
Sifeu Takougang Kingni
Pascal Eloundou Ntsama
Pierre Ele
Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique
Complexity
title Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique
title_full Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique
title_fullStr Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique
title_full_unstemmed Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique
title_short Josephson Junction Model: FPGA Implementation and Chaos-Based Encryption of sEMG Signal through Image Encryption Technique
title_sort josephson junction model fpga implementation and chaos based encryption of semg signal through image encryption technique
url http://dx.doi.org/10.1155/2022/4510236
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