基于广义Takagi-Sugeno模糊系统的非线性系统输出反馈控制设计

J. Yoneyama
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引用次数: 3

摘要

研究一类广义Takagi-Sugeno模糊系统的输出反馈控制设计。Takagi-Sugeno模糊系统一般用局部线性系统表示来描述非线性系统,而本文要考虑的广义模糊系统则用局部非线性系统表示来描述更广泛的非线性系统。针对这种广义系统,通过引入一类新的非pdc控制器,提出了一种稳定输出反馈控制器的设计方法。非PDC控制器是传统模糊控制器PDC控制器的一种广义控制器。我们的稳定控制器设计条件是用一组线性矩阵不等式(lmi)给出的,这些线性矩阵不等式很容易在数值上求解。采用松弛法降低了设计条件的保守性。还构造了一个观测器,它使用系统上的可用信息来估计系统的状态。然后,我们证明了分离原理成立,并将状态反馈控制器和观测器结合得到输出反馈控制器。最后,给出了一个数值例子来说明我们的非线性控制设计,并证明了与其他已有结果相比的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Output feedback control design for nonlinear systems based on a generalized Takagi-Sugeno fuzzy system
This paper is concerned with output feedback control design for a generalized Takagi-Sugeno fuzzy system. The Takagi-Sugeno fuzzy system generally describes nonlinear systems by employing local linear system representations, while a generalized fuzzy system to be considered in this paper describes even a wider class of nonlinear systems by representing locally nonlinear systems. For such a generalized system, a design method of a stabilizing output feedback controller is proposed by introducing a new class of non-PDC controllers. Non-PDC controller is a generalized controller of PDC one, which is a traditional fuzzy controller. Our stabilizing controller design conditions are given in terms of a set of linear matrix inequalities(LMIs), which are easily numerically solvable. A relaxation method is used to reduce the conservatism of design conditions. An observer, which estimates the state of the system using available information on the system, is also constructed. Then, we show that the separation principle holds, and an output feedback controller is obtained by combining the state feedback controller and observer. Finally, a numerical example is given to illustrate our nonlinear control design and to show the effectiveness over other existing results.
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