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SYNCHRONIZATION AND ADAPTIVE ANTI-SYNCHRONIZATION CONTROL FOR LORENZ SYSTEMS UNDER CHANNEL NOISE WITH APPLICATIONS

机译:噪声下LORENZ系统的同步与自适应反同步控制及其应用

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摘要

This paper studies synchronization and adaptive anti-synchronization control for Lorenz systems with applications to secure communication, where the transmission channel is subject to noise disturbance and the parameters of the Lorenz systems are allowed to be uncertain. Based on the methods of the Lyapunov function, input-to-state stability theory, nonlinear parametric variation, and the Barbalat Lemma, estimates for errors of synchronization and adaptive anti-synchronization are derived. These estimates help to design the feedback control and adaptive control laws with relatively small synchronization error bounds. Moreover, the information signal error in secure communication is also derived, which is used to design a secure communication scheme with a lower disturbance from channel noise and with higher security. Simulations are given to demonstrate the results.
机译:本文研究了Lorenz系统的同步和自适应反同步控制及其在安全通信中的应用,其中传输信道受到噪声干扰,并且Lorenz系统的参数不确定。基于Lyapunov函数,输入到状态稳定性理论,非线性参数变化和Barbalat引理的方法,得出了同步和自适应反同步误差的估计。这些估计有助于设计具有相对较小的同步误差范围的反馈控制和自适应控制律。此外,还导出了安全通信中的信息信号错误,用于设计对信道噪声的干扰较小,安全性较高的安全通信方案。进行仿真以证明结果。

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