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Synchronization of uncertain fractional order chaotic systems via adaptive interval type-2 fuzzy sliding mode control

机译:通过自适应间隔-2模糊滑模控制同步不确定的分数顺序混沌系统

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In this paper, a novel adaptive interval type-2 fuzzy sliding mode control (AITFSMC) is proposed to handle high level uncertainties facing the fuzzy logic controller (FLC) in dynamic fractional order chaotic systems such as uncertainties in inputs to the FLC, uncertainties in control outputs, linguistic uncertainties and uncertainties associated with the noisy training data. Based on the learning algorithm combining Lyapunov approach and sliding mode control, free parameters of the AITSMC can be tuned on line by output feedback control law and adaptive law to synchronize two different uncertain fractional order chaotic systems. Meanwhile, the chattering phenomena in the control efforts can be reduced. During the design procedure, not only the stability and robustness can be guaranteed but also the external disturbance on the synchronization error can be attenuated. The numerical simulation is performed to illustrate the effectiveness of the proposed control strategy.
机译:在本文中,提出了一种新的自适应间隔类型-2模糊滑模控制(AITFSMC),以处理在动态分数顺序混沌系统中面向模糊逻辑控制器(FLC)的高电平不确定性,例如输入到FLC的输入中的不确定性,不确定性控制输出,语言不确定性和与嘈杂培训数据相关的不确定性。基于Lyapunov方法的学习算法和滑模控制,AITSMC的自由参数可以通过输出反馈控制法和自适应定律进行调谐,以使两个不同的不确定分数顺序混沌系统同步。同时,可以减少控制努力中的喋喋不休现象。在设计过程中,不仅可以保证稳定性和稳健性,而且可以衰减同步误差上的外部干扰。执行数值模拟以说明所提出的控制策略的有效性。

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