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Impact of the Chaotic Synchronization’s Stability on the Performance of QCPSK Communication System

The current work presents a study of the implementation of a quadrature chaos phase-shift keying communication system (QCPSK) based on the employment of different chaos oscillators. The research takes two directions, with one being the study of the chaos synchronization’s noise immunity for several...

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Published in:Electronics (Basel) 2021-03, Vol.10 (6), p.640
Main Authors: Babajans, Ruslans, Cirjulina, Darja, Grizans, Juris, Aboltins, Arturs, Pikulins, Dmitrijs, Zeltins, Maris, Litvinenko, Anna
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cited_by cdi_FETCH-LOGICAL-c322t-70cf0af11963f8398278df8013ec6c7434b68082906716e82c794c25acdc5e853
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container_title Electronics (Basel)
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creator Babajans, Ruslans
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description The current work presents a study of the implementation of a quadrature chaos phase-shift keying communication system (QCPSK) based on the employment of different chaos oscillators. The research takes two directions, with one being the study of the chaos synchronization’s noise immunity for several chaos oscillators that are the potential core blocks of the QCPSK system. The correlation coefficient over time is used to estimate the synchronization noise immunity. The second direction is the estimation of the QCPSK system’s baseband model performance in the AWGN propagation channel using the bit error ratio (BER) as the estimation method for several chaos oscillators employed as the core of the QCPSK system’s model.
doi_str_mv 10.3390/electronics10060640
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subjects Chaos theory
Code Division Multiple Access
Communications systems
Correlation coefficients
Data transmission
Employment
Generators
Immunity
Internet of Things
Investigations
Mathematical models
Oscillators
Phase shift keying
Quadratures
Synchronism
Time synchronization
Transmitters
Variables
title Impact of the Chaotic Synchronization’s Stability on the Performance of QCPSK Communication System
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