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Fuzzy approximate disturbance decoupling of MIMO nonlinear systems by backstepping approach

机译:基于递推法的MIMO非线性系统的模糊近似干扰解耦。

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The concept of fuzzy approximate disturbance decoupling is introduced for a class of MIMO nonlinear systems with unknown nonlinearities. Based on the backstepping technique, a direct adaptive fuzzy almost disturbance decoupling control scheme is proposed. The proposed fuzzy controllers guarantee internal uniform ultimate boundedness of the closed-loop adaptive systems and render a bounded approximate L_2 gain from the disturbance input to the output. The main characteristics of the proposed algorithm is that the adaptive fuzzy controllers have a simple structure, and less adaptive parameters than the existing results. At last, the developed design scheme is applied to control a two continuous stirred tank reactor process. The simulation results illustrate the effectiveness of the method proposed in this paper.
机译:针对一类非线性未知的MIMO非线性系统,引入了模糊近似扰动解耦的概念。基于反推技术,提出了一种直接自适应的模糊几乎扰动解耦控制方案。所提出的模糊控制器保证了闭环自适应系统的内部一致的最终有界性,并从输入到输出的干扰中给出了有界的近似L_2增益。该算法的主要特点是自适应模糊控制器结构简单,自适应参数比现有结果少。最后,将开发的设计方案应用于控制两个连续搅拌釜反应器过程。仿真结果证明了该方法的有效性。

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