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Secure Communication with Chaos and Electronic Circuit Design Using Passivity-Based Synchronization

2017/08/11 by Uğur Erkin Kocamaz, Uǧur Erkin Kocamaz, Serdar Çiçek +1
Computer Science · Engineering · Physics and Astronomy · #Chaos control and synchronization #Chaos-based Image/Signal Encryption #Chaotic #Circuit design #Communications system #Computer network #Computer science #Electronic engineering #Embedded system #Engineering #MATLAB #Nonlinear Dynamics and Pattern Formation #SIGNAL (programming language) #Secure communication #Synchronization (alternating current) #Synchronizing #Telecommunications #Transmitter

paper · doi:10.1142/s0218126618500573

openalex publication_date 2017/08/11 · crossref created 2017/08/11 · crossref issued 2017/12/06 · crossref published 2017/12/06 · crossref published-online 2017/12/06 · crossref published-print 2018/04/01 · crossref deposited 2022/08/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/31 · crossref indexed 2026/07/31

Abstract

This work deals with the passive control-based chaos synchronization with circuit design for secure communication. First, the numerical simulation and electronic circuit design of a simple five-term chaotic system are performed. The numerical simulation and electronic circuit design outputs have confirmed each other. Then, the passive control method is applied for synchronizing two identical five-term chaotic systems using only one state control signal. After the synchronization study, design and analysis for secure communication by chaotic masking method are conducted in Matlab–Simulink platform. Finally, an electronic circuit design is performed for the designed communication system. In the designed communication system with Matlab–Simulink platform and electronic circuit design, information signal which is sent from the transmitter unit is successfully retrieved at the receiver unit. As a result, the electronic circuit design has shown that a single state passivity-based synchronization signal can be effectively used for secure data communication applications for the real environment.

Citations