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Observer-Based Approach for Fractional-Order Chaotic Synchronization and Secure Communication

机译:基于观察者的分数阶混沌同步和安全通信方法

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This paper presents a method based on the state observer design for constructing a chaotically synchronized systems. Fractional-order direct Lyapunov theorem is used to derive the closed-loop asymptotic stability. The gains of the observer and observer-based controller are obtained in terms of linear matrix inequalities (LMIs) formulation. The proposed approach is then applied to secure communications. The method combines chaotic masking and chaotic modulation, where the information signal is injected into the transmitter and simultaneously transmitted to the receiver. Chaotic synchronization and chaotic communication are achieved simultaneously via a state observer design technique. The fractional-order chaotic Lorenz and Lü systems are given to demonstrate the applicability of the proposed approach.
机译:本文提出了一种基于状态观测器设计的构建混沌同步系统的方法。分数阶直接李雅普诺夫定理用于推导闭环渐近稳定性。观察者和基于观察者的控制器的增益是根据线性矩阵不等式(LMI)公式获得的。然后将所提出的方法应用于安全通信。该方法结合了混沌掩蔽和混沌调制,其中信息信号被注入到发送器中,同时被发送到接收器。通过状态观察器设计技术可以同时实现混沌同步和混沌通信。给出分数阶混沌Lorenz和Lü系统以证明所提出方法的适用性。

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