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A New Intelligent Digital Redesign for T-S Fuzzy Systems: Global Approach

机译:T-S模糊系统的新型智能数字化重新设计:全局方法

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This paper proposes a novel and efficient global intelligent digital redesign technique for a Takagi-Sugeno (T-S) fuzzy system. The term of intelligent digital redesign involves converting an existing analog fuzzy-model-based controller into an equivalent digital counterpart in the sense of state-matching. The proposed method should be notably discriminated from the previous works in that it allows us to globally match the states of the overall closed-loop T-S fuzzy system with the predesigned analog fuzzy-model-based controller and those with the digitally redesigned fuzzy-model-based controller, and further to examine the stabilizability by the redesigned controller in the sense of Lyapunov. The key idea is that the global intelligent digital redesign problem is viewed as a convex minimization problem of the norm distance between nonlinearly interpolated linear operators to be matched. Sufficient conditions for the global state-matching and the stability of the digitally controlled system are formulated in terms of linear matrix inequalities (LMIs). A complex nonlinear system, Duffing-like chaotic oscillator is simulated and demonstrated to validate the feasibility and effectiveness of the proposed digital redesign technique, which implies the safe applicability to the digital control system.
机译:本文提出了一种针对Takagi-Sugeno(T-S)模糊系统的新颖高效的全球智能数字重新设计技术。智能数字重新设计一词涉及在状态匹配的意义上将现有的基于模糊模型的模拟控制器转换为等效的数字控制器。所建议的方法应与之前的工作明显区分开,因为它使我们能够将整个闭环TS模糊系统的状态与预先设计的基于模拟模糊模型的控制器以及经过数字重新设计的模糊模型进行全局匹配。控制器,并进一步从Lyapunov的意义上研究重新设计的控制器的稳定性。关键思想是将全局智能数字重新设计问题视为要匹配的非线性插值线性算子之间的范数距离的凸最小化问题。根据线性矩阵不等式(LMI),制定了用于全局状态匹配和数控系统稳定性的充分条件。仿真并演示了一个复杂的非线性系统,类似于Duffing的混沌振荡器,以验证所提出的数字重新设计技术的可行性和有效性,这暗示了对数字控制系统的安全适用性。

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