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Chaotic synchronisation using output/full state-feedback polynomial controller

机译:使用输出/全状态反馈多项式控制器的混沌同步

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摘要

This study presents the synchronisation of two chaotic systems, namely drive and response chaotic systems, using polynomial controllers. Both output and full state-feedback polynomial controllers are proposed, respectively, to drive the system states of the response system to approach those of the drive one. The system stability of the overall system is investigated by the Lyapunov stability theory. Stability conditions in terms of sum of squares (SOS) are derived to aid the design of the feedback gains of the polynomial controllers. By satisfying the SOS-based stability conditions, chaotic synchronisation is achieved with system performance guaranteed by an HȡE; performance function. Simulation examples are given to illustrate the merits of the proposed polynomial control approach.
机译:本研究使用多项式控制器介绍了两个混沌系统的同步,即驱动和响应混沌系统。分别提出了输出状态控制器和全状态反馈多项式控制器,以驱动响应系统的系统状态使其接近驱动器的状态。利用Lyapunov稳定性理论研究了整个系统的系统稳定性。推导了平方和(SOS)形式的稳定性条件,以帮助设计多项式控制器的反馈增益。通过满足基于SOS的稳定性条件,可以实现混沌同步,并具有由HȡE保证的系统性能。性能功能。仿真例子说明了所提出的多项式控制方法的优点。

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