Ali Can Çabuker, M. Almali, İshak Parlar
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摘要

数据安全对通信系统至关重要。为了保证数据的安全性,通常会采用加密的方式。混沌振荡器用于数据加密,因为它们产生的信号不会重复。为了健康地执行加密和解密过程,应该使用相同的混沌振荡器并相互同步。在本研究中,采用频分复用(FDM)方法将加密后的数据和同步信号传输到接收端,实现两个混沌振荡器之间的同步。高频键控技术用于提高发送端待加密信号的加密质量。采用比例-积分-导数(PID)控制实现两个混沌振荡器之间的同步。利用相关检验、峰值信噪比(PSNR)、均方误差(MSE)和谱熵确定原始信号与解密信号的精度关系。通过仿真程序和数值分析,验证了所创建系统的加密成功和可靠性。
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Tek Bir Kanaldan Kaotik Maskelenmiş Ses Sinyalinin İletilmesi
Data security is very crucial for communication systems. Encryption methods are frequently used to ensure the security. Chaotic oscillators are used for encryption of data because they produce signals that do not repeat themselves. Identical chaotic oscillators should be used and synchronized with each other in order to perform encryption and decryption processes in a healthy way. In this study, the encrypted data and synchronization signal are transmitted to the receiver side using frequency division multiplexing (FDM) method to realize the synchronization between two chaotic oscillators. High-frequency keying is used to increase the encryption quality of the signal to be encrypted on the transmitter side. Proportional-Integral-Derivative (PID) control is used to provide synchronization between two chaotic oscillators. Correlation test, peak signal to noise ratio (PSNR), mean square error (MSE) and spectral entropy were used to determine the accuracy relationship between the original signal and the decryption signal. As a result, the encryption success and reliability of the created system were verified by simulation programs and numerical analysis.
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