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Adaptive Fuzzy Synchronization of Fractional-Order Chaotic (Hyperchaotic) Systems with Input Saturation and Unknown Parameters

机译:输入饱和且参数未知的分数阶混沌(超混沌)系统的自适应模糊同步

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摘要

We investigate the synchronization problem of fractional-order chaotic systems with input saturation and unknown external disturbance by means of adaptive fuzzy control. An adaptive controller, accompanied with fractional adaptation law, is established, fuzzy logic systems are used to approximate the unknown nonlinear functions, and the fractional Lyapunov stability theorem is used to analyze the stability. This control method can realize the synchronization of two fractional-order chaotic or hyperchaotic systems and the synchronization error tends to zero asymptotically. Finally, we show the effectiveness of the proposed method by two simulation examples.
机译:我们通过自适应模糊控制研究了具有输入饱和度和未知外部干扰的分数阶混沌系统的同步问题。建立了带有分数自适应律的自适应控制器,使用模糊逻辑系统对未知的非线性函数进行逼近,并利用分数Lyapunov稳定性定理分析了稳定性。该控制方法可以实现两个分数阶混沌或超混沌系统的同步,并且同步误差趋于渐近为零。最后,我们通过两个仿真实例证明了该方法的有效性。

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