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Modeling and direct power control of DFIG for wind energy conversion system with a back to back converter

机译:具有背靠背转换器的风能转换系统的DFIG建模和直接功率控制

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The variable-speed wind turbines are gaining more prominence due to their ability to generate power for a wide range of wind speeds. This class of turbines requires a fraction of the power be drawn from the grid in order to deliver the promised power when there is a deficiency in wind speed. For this purpose, a Doubly-Fed Induction Generator (DFIG) with a bidirectional converter (AC-DC-AC) on the rotor side is employed. The back-to-back converter controls the flow of energy from the machine to the grid and vice-versa. The Direct Power Control algorithm is used to control the power delivered by the stator to the grid. In this paper, the Space Vector Modulation (SVM) technique using the PI-controllers is used for controlling active and reactive powers. The SVM algorithm triggers the power electronic devices of the converter resulting in improved input current waveform. The paper discusses the simulation results of 1.5 MW DFIG machine connected to the grid via back-to-back converter.
机译:变速风力涡轮机由于能够在各种风速下发电而变得越来越重要。此类涡轮机需要从电网中提取一部分功率,以便在风速不足时提供承诺的功率。为此,采用了在转子侧带有双向转换器(AC-DC-AC)的双馈感应发电机(DFIG)。背靠背的转换器控制从机器到电网的能量流,反之亦然。直接功率控制算法用于控制定子传递到电网的功率。在本文中,使用PI控制器的空间矢量调制(SVM)技术用于控制有功和无功功率。 SVM算法触发转换器的电力电子设备,从而改善了输入电流波形。本文讨论了通过背靠背转换器连接到电网的1.5 MW DFIG机器的仿真结果。

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