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首页> 外文期刊>International journal of general systems >Intelligent fuzzy controller for chaos synchronization of uncertain fractional-order chaotic systems with input nonlinearities
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Intelligent fuzzy controller for chaos synchronization of uncertain fractional-order chaotic systems with input nonlinearities

机译:输入非线性不确定分数顺序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,提出了一种新的模糊自适应控制,以实现具有输入非线性的一类分数顺序混沌系统的投影同步(死区与扇区非线性)。这些正在考虑的这些主奴隶系统应该是不同的模型,不同的分数订单,未知模型和动态外部干扰。该拟议的控制法由两个主要术语组成,即:模糊自适应控制术语,用于适当地逼近不确定性和分数级的变量结构控制术语,用于鲁棒地处理这些固有的输入非线性。 Lyapunov方法用于推导更新的法律并证明闭环控制系统的稳定性。最后,进行了一组计算机仿真结果以说明并进一步验证理论发现。

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