Wind turbine control using T-S fuzzy observer

A. Hammami, Imen Saidi, D. Soudani
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Abstract

The increasing of penetration of wind energy conversion system to produce electricity lead to improve the choice of the operational control strategies. This paper deals with the modeling and control design of wind turbine using Takagi-Sugeno techniques. Due to the uncertainty wind speed measured through the anemometer, a Takagi-Sugeno observer is designed to estimate the effective wind speed. The nonlinear behavior of the wind turbine is driven through the Takagi-Sugeno fuzzy model approach based on Taylor linearized model. In order to maximize the extracted energy from the wind turbine conversion system, T-S observer combined with H-infinity performance is considered. The controller design based on Linear Matrix Inequalities (LMI) is used to ensure the stability and the robustness of the model. The effectiveness of the proposed control is tested in terms of wind turbine rotational speed relative to the estimated wind speed.
基于T-S模糊观测器的风力机控制
随着风电转换系统发电渗透程度的提高,运行控制策略的选择也随之改善。本文研究了利用Takagi-Sugeno技术对风力发电机组进行建模和控制设计。由于风速计测得的风速存在不确定性,设计了一个Takagi-Sugeno观测器来估计有效风速。采用基于Taylor线性化模型的Takagi-Sugeno模糊模型方法对风力机的非线性行为进行了驱动。为了最大限度地从风力发电机组转换系统中提取能量,考虑了T-S观测器与h -∞性能的结合。采用基于线性矩阵不等式(LMI)的控制器设计,保证了模型的稳定性和鲁棒性。根据风力机转速相对于估计风速,测试了所提出的控制的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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