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Guaranteed cost LMI-based fuzzy controller design for discrete-time nonlinear systems with polytopic uncertainties

机译:基于COSTOMIC非线性系统的基于COST COST LMI的模糊控制器设计

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This paper focuses on the problem of fuzzy guaranteed cost control and stabilization of discrete-time nonlinear systems with polytopic uncertainties. Takagi-Sugeno fuzzy models with uncertainties are used in order to model the uncertain nonlinear systems and the Parallel Distributed Compensation (PDC) scheme is utilized for the construction of the fuzzy controller. A quadratic cost function is considered as the performance index of the nonlinear system and a quadratic Lyapunov function is used in order to ensure the robust stability of the T-S fuzzy uncertain system. The feasibility of some LMIs provides the state feedback controller which ensures the system's stability and an upper bound of a quadratic cost function which is minimized. The effectiveness of the proposed fuzzy controller design is illustrated by applying the proposed approach to an uncertain discrete-time chaotic system.
机译:本文重点介绍了多种多粒管不确定性的模糊保障成本控制和离散时间非线性系统的稳定问题。具有不确定性的Takagi-Sugeno模糊模型用于模拟不确定的非线性系统,并平行分布式补偿(PDC)方案用于构建模糊控制器。二次成本函数被认为是非线性系统的性能指标,使用二次Lyapunov功能,以确保T-S模糊不确定系统的稳健稳定性。一些LMI的可行性提供了状态反馈控制器,该控制器可确保系统的稳定性和最小化的二次成本函数的上限。通过将所提出的方法应用于不确定的离散时间混沌系统来说明所提出的模糊控制器设计的有效性。

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