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A scheme for the power control in a DFIG connected to a DC bus via a diode rectifier

机译:通过二极管整流器连接到DC总线的DFIG中的功率控制方案

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摘要

This paper deals with a new conversion topology for doubly-fed induction generators (DFIGs) suitable for wind energy conversion systems integrated in microgrids. It consists of a DFIG which is fed by a pulse width modulation converter on the rotor and with the stator connected to a dc grid through a diode rectifier. In this configuration, the stator diode rectifier and the rotor-side inverter share the same dc bus, so that the conventional grid-side inverter is avoided. Since only a diode rectifier designed for the full power and a reduced power inverter are required, this layout allows a cheap and effective integration of the DFIG with other generating and storage systems connected to the same dc bus. A simple control technique suitable to regulate the power delivered to the dc grid is proposed. The scheme is based on the regulation of the amplitude of a suited fraction of the rotor flux linkage: the optimal value of this fraction is theoretically deduced in order to minimize the DFIG derating due to the current harmonics. The effectiveness of the proposed control is proven by simulations and experimental tests.
机译:本文讨论了适用于微电网中集成的风能转换系统的双馈感应发电机(DFIG)的新转换拓扑。它由DFIG组成,该DFIG由脉冲宽度调制转换器馈入转子,并且定子通过二极管整流器连接至dc电网。在该配置中,定子二极管整流器和转子侧逆变器共享相同的dc总线,从而避免了传统的电网侧逆变器。由于只需要一个专为全功率设计的二极管整流器和一个功率降低的逆变器,这种布局可以使DFIG与连接到同一直流总线的其他发电和存储系统廉价有效地集成。提出了一种适用于调节输送到直流电网的功率的简单控制技术。该方案基于对转子磁链的合适部分的振幅的调节:理论上推导出该部分的最佳值,以最大程度地减小由于电流谐波引起的DFIG降额。仿真和实验测试证明了所提出控制方法的有效性。

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