Stable and robust control strategy using interval-valued fuzzy systems

Nadia Bounouara, M. Ghanai, Ali Medjghou, K. Chafaa
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引用次数: 1

Abstract

In this paper we propose an adaptive interval valued fuzzy controller for high performance direct vector-controlled induction motor drive. Interval valued controller compared with type-1 fuzzy controller has the advantage that it can take into account the linguistic uncertainties present in the rules of the estimated models. The proposed control framework consists of a mixture of two controllers: an interval valued fuzzy controller and a supervisory controller. The supervisory controller is used when the system starts to become unstable. The free parameters for the proposed controller are changed according to some learning rules based on Lyapunov stability. Simulation results on an induction motor show the effectiveness of the introduced method.
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区间值模糊系统的稳定鲁棒控制策略
本文提出了一种用于高性能直接矢量控制异步电动机驱动的自适应区间值模糊控制器。区间值控制器与1型模糊控制器相比,其优点是可以考虑到估计模型规则中存在的语言不确定性。所提出的控制框架由两个控制器组成:区间模糊控制器和监控控制器。当系统开始变得不稳定时,使用监控控制器。该控制器的自由参数根据一些基于李雅普诺夫稳定性的学习规则进行改变。仿真结果表明了该方法的有效性。
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