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Control of a Doubly Fed Induction Generator via an Indirect Matrix Converter With Changing DC Voltage

机译:通过直流电压变化的间接矩阵转换器控制双馈感应发电机

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摘要

This paper presents a control strategy for a doubly fed induction generator (DFIG) using an indirect matrix converter, which consists of an input side matrix converter and an output side voltage source converter (VSC). The capability of the input converter to generate different “virtual dc link” voltage levels is exploited. The commutation of the VSI with reduced voltage is illustrated for operating points where the output voltage demand is low without any deterioration of the current control performance. The proposed method leads to a reduction in the commutation losses in the output converter and reduced common-mode voltage. For the input converter, soft switching commutation is obtained by synchronizing the input and output converter pulsewidth-modulation patterns. This modulation strategy is particularly applicable in DFIG applications because the required rotor voltage decreases when the DFIG speed is close to the synchronous speed. The complete control strategy is experimentally validated using a 2-kW rig.
机译:本文提出了一种使用间接矩阵转换器的双馈感应发电机(DFIG)的控制策略,该转换器由输入侧矩阵转换器和输出侧电压源转换器(VSC)组成。利用了输入转换器产生不同“虚拟直流链路”电压电平的能力。针对输出电压需求低而不会降低电流控制性能的工作点,说明了VSI降压后的换向。所提出的方法导致输出转换器中的换向损耗的减小和共模电压的减小。对于输入转换器,通过同步输入和输出转换器的脉宽调制模式来获得软开关换向。该调制策略特别适用于DFIG应用,因为当DFIG速度接近同步速度时,所需的转子电压会降低。完整的控制策略已通过2 kW钻机进行了实验验证。

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