Direct power control using space vector modulation strategy control for wind energy conversion system using three-phase matrix converter

A. Boukadoum, A. Bouguerne, T. Bahi
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Abstract

Introduction. Wind energy conversion system is getting a lot of attention since, they are provide several advantages, such as cost competitive, environmentally clean, and safe renewable power source as compared with the fossil fuel and nuclear power generation. A special type of induction generator, called a doubly fed induction generator is used extensively for high-power wind energy conversion system. They are used more and more in wind turbine applications due to the advantages of variable speed operation range and its four quadrants active and reactive power capabilities, high energy efficiency, and the improved power quality. Wind energy conversion systems require a good choice of power electronic converters for the improvement of the quality of the electrical energy produced at the generator terminals. There are several power electronics converters that are the most popular such as the two stage back-back converter. Because of the disadvantage of these converters to produce large harmonics distortions, we will choose using of three-phase matrix converter. Purpose. Work presents a direct power control using space vector modulation for a doubly fed induction generator based wind turbine. The main strategy control is to control the active and reactive powers and reduce the harmonic distortion of stator currents for variable wind speed. The novelty of the work is to use a doubly fed induction machine and a three pulses matrix converter to reduce the low cost, volume and the elimination of the grid side converter controller are very attractive aspects of the proposed topology compared to the conventional methods such as back-to-back converters. Simulation results are carried out on a 1.5 MW of wind energy conversion system connected to the grid. The efficiency of the proposed system has been simulated and high results performances are evaluated to show the validity of the proposed control strategy to decouple and control the active and reactive power for different values of wind speed.
直接功率控制采用空间矢量调制策略控制采用三相矩阵变换器的风能转换系统
介绍。与化石燃料发电和核能发电相比,风能转换系统具有成本优势、环境清洁、安全等优点,正受到越来越多的关注。双馈感应发电机是一种特殊类型的感应发电机,广泛用于大功率风能转换系统。由于其变速范围和四象限有功和无功能力、高能效以及电能质量的提高等优点,在风力发电中得到越来越多的应用。风能转换系统需要选择良好的电力电子变流器,以提高发电机终端产生的电能质量。有几种电力电子变换器是最流行的,如两级反-反变换器。由于这些变换器的缺点是产生较大的谐波畸变,我们将选择使用三相矩阵变换器。目的。本文提出了一种采用空间矢量调制的双馈感应发电机直接功率控制方法。主要的控制策略是控制有功和无功功率,减小变风速下定子电流的谐波畸变。这项工作的新颖之处在于使用双馈感应电机和三脉冲矩阵变换器来降低成本,体积和消除电网侧变换器控制器是与传统方法(如背对背变换器)相比,所提出的拓扑结构非常吸引人的方面。对并网的1.5 MW风电转换系统进行了仿真研究。仿真结果表明,所提出的控制策略对不同风速值下的有功和无功解耦和控制是有效的。
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