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Identical Synchronization of Chaotic Secure Communication Systems with Channel Induced Coherence Resonance

机译:具有信道诱导相干共振的混沌安全通信系统的同步

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This paper is devoted to addressing the synchronization, and detection of random binary data exposed to inherent channel variations existing in Free Space Optical (FSO) communication systems. This task is achieved by utilizing the identical synchronization methodology of Lorenz chaotic communication system, and its synergetic interaction in adversities imposed by the FSO channel. Moreover, the Lorenz system has been analyzed, and revealed to induce Stochastic Resonance (SR) once exposed to Additive White Gaussian Noise (AWGN). In particular, the resiliency of the Lorenz chaotic system, in light of channel adversities, has been attributed to the success of the proposed communication system. Furthermore, this paper advocates the use of Haar wavelet transform for enhanced detection capability of the proposed chaotic communication system, which utilizes Chaotic Parameter Modulation (CPM) technique for means of transmission.
机译:本文致力于解决同步问题,并检测暴露于自由空间光学(FSO)通信系统中固有信道变化的随机二进制数据。该任务是通过利用Lorenz混沌通信系统的相同同步方法以及FSO通道在逆境中的协同相互作用来实现的。此外,已经对Lorenz系统进行了分析,并揭示了一旦暴露于加性高斯白噪声(AWGN)就会诱发随机共振(SR)。特别地,鉴于信道逆境,Lorenz混沌系统的弹性已归因于所提出的通信系统的成功。此外,本文提倡使用Haar小波变换来增强所提出的混沌通信系统的检测能力,该混沌通信系统利用混沌参数调制(CPM)技术进行传输。

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