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Performance Enhancement of Stand-Alone DFIG Systems With Control of Rotor and Load Side Converters Using Resonant Controllers

机译:使用谐振控制器控制转子和负载侧转换器的独立DFIG系统的性能增强

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摘要

In this paper, the control of a stand-alone doubly fed induction generator (DFIG)-based wind power conversion system with unbalanced and nonlinear loads is investigated. Under these load conditions, the quality of stator voltage and current waveforms of the DFIG is strongly affected due to the negative and distorted components, reducing the performance of other normal loads connected to the DFIG. To tackle this problem, the control strategy is comprehensively developed in both rotor-side converter (RSC) and load-side converter (LSC) of the DFIG. The LSC is used as an active power filter to compensate for unbalanced and distorted stator currents whereas the RSC is developed to fully eliminate unbalanced and harmonic voltages at the point of common coupling. The proposed compensation method is based on current controllers in either the RSC or the LSC, which employ a proportional integral plus a resonant controller. These current controllers are controlled in the positive synchronous reference frame so that the rotor current and stator current are directly regulated without decomposing sequential components. Analytical issues on how to eliminate unbalanced and distorted components in the stator voltage and current are also described in this paper. To verify the effectiveness of the proposed control strategy, experimental results with 2.2-kW DFIG topology are presented and discussed in the paper.
机译:本文研究了基于双馈异步发电机(DFIG)的具有不平衡和非线性负载的风力发电系统的控制。在这些负载条件下,DFIG的定子电压和电流波形的质量会由于负分量和失真分量而受到严重影响,从而降低了连接到DFIG的其他正常负载的性能。为了解决这个问题,在DFIG的转子侧变频器(RSC)和负载侧变频器(LSC)中全面开发了控制策略。 LSC用作有源功率滤波器,以补偿定子电流的不平衡和失真,而RSC的目的是完全消除公共耦合点的不平衡和谐波电压。提出的补偿方法基于RSC或LSC中的电流控制器,它们采用比例积分加谐振控制器。这些电流控制器在正同步参考框架中进行控制,以便直接调节转子电流和定子电流,而无需分解顺序分量。本文还介绍了如何消除定子电压和电流中的不平衡和失真成分的分析问题。为了验证所提出的控制策略的有效性,在本文中介绍并讨论了采用2.2 kW DFIG拓扑的实验结果。

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