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A Chaotic Secure Communication Scheme Using Fractional Chaotic Systems Based On An Extended Fractional Kalman Filter

机译:基于扩展分数阶卡尔曼滤波器的分数阶混沌系统混沌保密通信方案

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摘要

In recent years chaotic secure communication and chaos synchronization have received ever increasing attention. In this paper, for the first time, a fractional chaotic communication method using an extended fractional Kalman filter is presented. The chaotic synchronization is implemented by the EFKF design in the presence of channel additive noise and processing noise. Encoding chaotic communication achieves a satisfactory, typical secure communication scheme. In the proposed system, security is enhanced based on spreading the signal in frequency and encrypting it in time domain. In this paper, the main advantages of using fractional order systems, increasing nonlinearity and spreading the power spectrum are highlighted. To illustrate the effectiveness of the proposed scheme, a numerical example based on the fractional Lorenz dynamical system is presented and the results are compared to the integer Lorenz system.
机译:近年来,混乱的安全通信和混乱的同步越来越受到关注。本文首次提出了一种使用扩展分数阶卡尔曼滤波器的分数阶混沌通信方法。 EFKF设计在存在信道附加噪声和处理噪声的情况下实现混沌同步。编码混沌通信可实现令人满意的典型安全通信方案。在所提出的系统中,通过在频率上扩展信号并在时域对其进行加密来增强安全性。在本文中,突出了使用分数阶系统,增加非线性和扩展功率谱的主要优点。为了说明该方案的有效性,给出了基于分数Lorenz动力系统的数值示例,并将结果与​​整数Lorenz系统进行了比较。

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