| Authors | Mohammadhassan Majidi,Saeed Khorashadizadeh |
| Journal | Neural Computing and Applications |
| Page number | 6521-6533 |
| Serial number | 34 |
| Volume number | 8 |
| Paper Type | Full Paper |
| Published At | 2022 |
| Journal Grade | ISI |
| Journal Type | Typographic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | JCR،Scopus |
Abstract
This paper proposes an adaptive controller for chaos synchronization using quantum neural networks (QNN). The main
purpose is to design a communication system for transmission of information securely. In many applications of chaotic
systems, the exact model of system is not available and may involve uncertainties such as external disturbance and
parametric uncertainties originating from environmental conditions. To estimate the uncertainties in the receiver and
improve the accuracy of synchronization and recovering the message signal for secure communication applications, a QNN
is used. The parameters of the proposed system should be estimated by applying the adaptive rules obtained by Lyapunov
theorem. Taylor series expansion has been utilized to obtain a linear relation between the output of quantum neural network
and its adaptive parameters. Simulation results show that the synchronization procedure for state variables of the master
and slave systems is performed well with negligible synchronization error. Also, its application is investigated in secure
communication and cryptography
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