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Intelligent fuzzy controller for chaos synchronization of uncertain fractional-order chaotic systems with input nonlinearities

机译:具有输入非线性的不确定分数阶混沌系统混沌同步的智能模糊控制器

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摘要

In this research work, a novel fuzzy adaptive control is proposed to achieve a projective synchronization for a class of fractional-order chaotic systems with input nonlinearities (dead-zone together with sector nonlinearities). These master-slave systems under consideration are supposed to be with distinct models, different fractional-orders, unknown models, and dynamic external disturbances. The proposed control law consists of two main terms, namely: a fuzzy adaptive control term for appropriately approximating the uncertainties and a fractional-order variable-structure control term for robustly dealing with these inherent input nonlinearities. A Lyapunov approach is used to derive the updated laws and to prove the stability of the closed-loop control system. At last, a set of computer simulation results is carried out to illustrate and further validate the theoretical findings.
机译:在这项研究工作中,提出了一种新颖的模糊自适应控制,以实现一类具有输入非线性(死区和扇形非线性)的分数阶混沌系统的投影同步。这些正在考虑的主从系统应该具有不同的模型,不同的分数阶,未知的模型以及动态外部干扰。拟议的控制律包括两个主要项,即:模糊自适应控制项,用于适当地逼近不确定性;分数阶可变结构控制项,用于可靠地处理这些固有的输入非线性。使用李雅普诺夫(Lyapunov)方法导出更新的定律并证明闭环控制系统的稳定性。最后,通过一组计算机仿真结果来说明并进一步验证理论结果。

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