An observer based approach for multi-scroll chaotic system synchronization and secure communication with multi-shift ciphering

V. Agrawal, B. Sharma
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引用次数: 4

Abstract

In this paper, a nonlinear observer based approach for multi-scroll chaotic system synchronization and information recovery with multi-shift ciphering is presented. The approach is based on using differential mean value theorem based observer design technique for chaotic system synchronization purpose. Here, by using a differential mean value theorem, nonlinear observer estimation error dynamics is transformed into a linear parameter varying system and sufficient condition for error convergence is derived using a quadratic Lyapunov function which is nonlinear matrix inequality with time varying parameters. The derived sufficient condition is then reformulated as a set of linear matrix inequalities using convexity principle and solved with MATLAB LMI toolbox. In the proposed scheme, security is enhanced by using multi-shift ciphering for information encryption and the key used for ciphering is one of the states of a chaotic system. The estimate of key is obtained by using differential mean value theorem based observer and used to recover encrypted data at the receiver side. An example of multi-scroll Chen system synchronization along with information encryption and decryption with simulation results is given to show the efficacy of the proposed approach.
基于观测器的多涡旋混沌系统同步与多移加密安全通信方法
提出了一种基于非线性观测器的多涡旋混沌系统多移同步与信息恢复方法。该方法基于基于微分中值定理的观测器设计技术实现混沌系统的同步。利用微分中值定理,将非线性观测器估计误差动力学转化为线性参数变系统,并利用具有时变参数的非线性矩阵不等式二次Lyapunov函数,导出误差收敛的充分条件。然后利用凸性原理将得到的充分条件重新表述为一组线性矩阵不等式,并利用MATLAB LMI工具箱进行求解。在该方案中,使用多移位加密技术进行信息加密,加密密钥为混沌系统的一种状态,从而提高了加密的安全性。利用基于微分中值定理的观测器得到密钥的估计,并用于在接收端恢复加密数据。以多卷陈系统同步及信息加解密为例,通过仿真验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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