High performance of variable-pitch wind system based on a direct matrix converter-fed DFIG using third order sliding mode control

IF 1.5 Q4 ENERGY & FUELS Wind Engineering Pub Date : 2023-11-17 DOI:10.1177/0309524x231199435
A. Dendouga, A. Dendouga, N. Essounbouli
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Abstract

In this paper, a full nonlinear control of a variable-pitch wind system (VPWS) based on the doubly fed induction generator (DFIG) fed by a direct matrix converter (DMC) has been presented. In this context, The MPPT has been implemented using the third order sliding mode control (TOSMC) in order to ensure maximum power provided by the wind turbine on the one side, on the other side the pitch control has been implemented in order to limit the power extracted to its nominal value. Moreover, a TOSMC has been incorporated into the direct flied-oriented control (DFOC) to ensure high-performance control of the active and reactive power of DFIG. To examine the performance of the TOSMC, a comparative study was performed between this last type and the first and second order sliding mode controllers. The obtained results affirmed the high performance provided by the TOSMC compared to lower order sliding mode controllers.
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利用三阶滑模控制,基于直接矩阵变换器供电的双馈变流器的高性能变桨距风力系统
本文介绍了变桨距风力系统(VPWS)的全非线性控制,该系统基于由直接矩阵转换器(DMC)馈电的双馈感应发电机(DFIG)。在此背景下,MPPT 采用三阶滑模控制 (TOSMC),一方面确保风力涡轮机提供最大功率,另一方面实施变桨控制,将提取的功率限制在额定值内。为了检验 TOSMC 的性能,对其与一阶和二阶滑模控制器进行了比较研究。研究结果表明,与低阶滑模控制器相比,TOSMC 具有更高的性能。
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来源期刊
Wind Engineering
Wind Engineering ENERGY & FUELS-
CiteScore
4.00
自引率
13.30%
发文量
81
期刊介绍: Having been in continuous publication since 1977, Wind Engineering is the oldest and most authoritative English language journal devoted entirely to the technology of wind energy. Under the direction of a distinguished editor and editorial board, Wind Engineering appears bimonthly with fully refereed contributions from active figures in the field, book notices, and summaries of the more interesting papers from other sources. Papers are published in Wind Engineering on: the aerodynamics of rotors and blades; machine subsystems and components; design; test programmes; power generation and transmission; measuring and recording techniques; installations and applications; and economic, environmental and legal aspects.
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