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On chaos control and synchronization of the commensurate fractional order Liu system

机译:相称分数阶Liu系统的混沌控制与同步

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In this work, we study chaos control and synchronization of the commensurate fractional order Liu system. Based on the stability theory of fractional order systems, the conditions of local stability of nonlinear three-dimensional commensurate fractional order systems are discussed. The existence and uniqueness of solutions for a class of commensurate fractional order Liu systems are investigated. We also obtain the necessary condition for the existence of chaotic attractors in the commensurate fractional order Liu system. The effect of fractional order on chaos control of this system is revealed by showing that the commensurate fractional order Liu system is controllable just in the fractional order case when using a specific choice of controllers. Moreover, we achieve chaos synchronization between the commensurate fractional order Liu system and its integer order counterpart via function projective synchronization. Numerical simulations are used to verify the analytical results.
机译:在这项工作中,我们研究相称分数阶Liu系统的混沌控制和同步。基于分数阶系统的稳定性理论,讨论了非线性三维等效分数阶系统的局部稳定性条件。研究了一类相称分数阶Liu系统的解的存在性和唯一性。我们还获得了相应的分数阶Liu系统中存在混沌吸引子的必要条件。通过显示当使用特定选择的控制器时,仅在分数阶情况下,相应的分数阶Liu系统才是可控制的,从而揭示了分数阶对该系统混沌控制的影响。此外,通过函数射影同步,实现了分数阶Liu系统与其整数阶对应物之间的混沌同步。数值模拟用于验证分析结果。

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