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Hybrid passivity based and fuzzy type-2 controller for chaotic and hyper-chaotic systems

机译:基于混合无源性和模糊2型控制器的混沌和超混沌系统

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摘要

In this paper a hybrid passivity based and fuzzy type-2 controller for chaotic and hyper-chaotic systems is presented. The proposed control strategy is an appropriate choice to be implemented for the stabilization of chaotic and hyper-chaotic systems due to the energy considerations of the passivity based controller and the flexibility and capability of the fuzzy type-2 controller to deal with uncertainties. As it is known, chaotic systems are those kinds of systems in which one of their Lyapunov exponents is real positive, and hyper-chaotic systems are those kinds of systems in which more than one Lyapunov exponents are real positive. In this article one chaotic Lorentz attractor and one four dimensions hyper-chaotic system are considered to be stabilized with the proposed control strategy. It is proved that both systems are stabilized by the passivity based and fuzzy type-2 controller, in which a control law is designed according to the energy considerations selecting an appropriate storage function to meet the passivity conditions. The fuzzy type-2 controller part is designed in order to behave as a state feedback controller, exploiting the flexibility and the capability to deal with uncertainties. This work begins with the stability analysis of the chaotic Lorentz attractor and a four dimensions hyper-chaotic system. The rest of the paper deals with the design of the proposed control strategy for both systems in order to design an appropriate controller that meets the design requirements. Finally, numerical simulations are done to corroborate the obtained theoretical results.
机译:本文提出了一种用于混沌和超混沌系统的基于混合无源的模糊2型控制器。由于基于无源控制器的能量考虑以及模糊2型控制器的灵活性和处理不确定性的能力,因此所提出的控制策略是实现混沌和超混沌系统稳定的合适选择。众所周知,混沌系统是其中一种李雅普诺夫指数为实数的系统,而超混沌系统是其中一种李雅普诺夫指数为实数的系统。在本文中,一个混沌洛伦兹吸引子和一个四个维超混沌系统被认为可以通过所提出的控制策略来稳定。证明了这两种系统都由基于无源的模糊2型控制器稳定,其中根据能量考虑设计了控制律,选择了合适的存储函数以满足无源条件。设计模糊2型控制器部分是为了发挥状态反馈控制器的作用,它利用了灵活性和处理不确定性的能力。这项工作从混沌洛伦兹吸引子和一个四维超混沌系统的稳定性分析开始。本文的其余部分涉及两个系统的建议控制策略的设计,以设计满足设计要求的合适控制器。最后,进行了数值模拟,以验证所获得的理论结果。

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