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首页> 外文期刊>IETE Journal of Research >Takagi-Sugeno Fuzzy-based CNF Control Approach Considering a Class of Constrained Nonlinear Systems
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Takagi-Sugeno Fuzzy-based CNF Control Approach Considering a Class of Constrained Nonlinear Systems

机译:考虑一类约束非线性系统的基于Takagi-Sugeno模糊的CNF控制方法

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摘要

This paper proposes a parallel distributed compensation-based composite nonlinear feedback (CNF) control approach for a class of constrained nonlinear systems, which is described based on Takagi-Sugeno (T-S) fuzzy models with input saturation. By producing invariant sets, the sufficient conditions guarantee the asymptotic stability of the closed-loop system. The presence of input saturation nonlinearity is derived in terms of linear matrix inequality. To the best knowledge of the authors, the research presented here is taken into real consideration as the first attempt to propose a new T-S fuzzy-based CNF control approach. Contrary to the existing CNF outcomes for the linear systems, the proposed one is now applicable to cope with a class of nonlinear systems. In a word, the present CNF control approach comprises two nonlinear parts. It is to note that the first term assures the stability of the closed-loop nonlinear system and provides a fast convergence response, as long as the second term reduces the overshoot of the response, correspondingly. In one such case, the overall CNF control approach satisfies the predefined input saturation, as well. In the sequel, in order to illustrate the merits of the proposed control approach, the continuous stirred tank reactors and the electromagnetic suspension system are chosen to verify the investigated results in comparison with those obtained from the existing results.
机译:本文针对一类受约束的非线性系统提出了一种基于并行分布补偿的复合非线性反馈控制方法,该方法基于具有输入饱和度的Takagi-Sugeno(T-S)模糊模型进行了描述。通过产生不变集,充分条件保证了闭环系统的渐近稳定性。输入饱和非线性的存在是根据线性矩阵不等式得出的。据作者所知,此处提出的研究已被真正考虑为首次提出基于T-S模糊的CNF控制方法的尝试。与线性系统的现有CNF结果相反,拟议的CNF结果现在适用于处理一类非线性系统。总之,本发明的CNF控制方法包括两个非线性部分。要注意的是,第一项确保闭环非线性系统的稳定性并提供快速的收敛响应,只要第二项相应地减小响应的过冲。在这种情况下,整个CNF控制方法也满足预定义的输入饱和度。在后文中,为了说明所提出的控制方法的优点,选择了连续搅拌釜反应器和电磁悬浮系统,以验证研究结果与现有结果的比较。

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