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Chaos synchronization of two different chaotic complex Chen and Lu systems

机译:两个不同混沌复杂的Chen和Lu系统的混沌同步

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This paper investigates the phenomenon of chaos synchronization of two different chaotic complex systems of the Chen and Lu type via the methods of active control and global synchronization. In this regard, it generalizes earlier work on the synchronization of two identical oscillators in cases where the drive and response systems are different, the parameter space is larger, and the dimensionality increases due to the complexification of the dependent variables. The idea of chaos synchronization is to use the output of the drive system to control the response system so that the output of the response system converges to the output of the drive system as time increases. Lyapunov functions are derived to prove that the differences in the dynamics of the two systems converge to zero exponentially fast, explicit expressions are given for the control functions and numerical simulations are presented to illustrate the success of our chaos synchronization techniques. We also point out that the global synchronization method is better suited for synchronizing identical chaotic oscillators, as it has serious limitations when applied to the case where the drive and response systems are different.
机译:本文通过主动控制和全局同步的方法,研究了Chen and Lu型两个不同混沌复杂系统的混沌同步现象。在这方面,它归纳了在驱动系统和响应系统不同,参数空间较大以及因变量复杂化导致维数增加的情况下,两个相同振荡器同步的早期工作。混沌同步的想法是使用驱动系统的输出来控制响应系统,以便随着时间的增加,响应系统的输出会收敛到驱动系统的输出。导出Lyapunov函数以证明两个系统的动力学差异快速收敛到零,并给出了控制函数的明确表达式,并进行了数值模拟,以说明我们的混沌同步技术的成功之处。我们还指出,全局同步方法更适合于同步相同的混沌振荡器,因为当应用于驱动系统和响应系统不同的情况时,它具有严重的局限性。

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