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Selective Compensation of Current Harmonics in Grid-Connected Doubly-Fed Induction Generator based Wind Energy System

机译:并网双馈感应发电机风能系统中电流谐波的选择性补偿

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This paper presents a new approach for simultaneous selective compensation of current harmonics and reactive power compensation in grid-connected doubly-fed induction generator (DFIG) based wind energy system. The proposed control algorithms are applied to the DFIG with a stator directly connected to the grid, and the rotor connected to the grid through a converter with a bi-directional energy flow. Depending on the power of the converter, the power quality can be improved by compensating the reactive power and harmonics of the grid current. It is proposed to use the observer based scheme to estimate current harmonics of the nonlinear load. This task is performed in a d-q reference frame where active and reactive current components are obvious. Positive and negative sequences are distinguished for selective compensation. Simulation results for a 2 MW DFIG confirm the effectiveness and the performance of the proposed approach.
机译:本文提出了一种新的方法,用于同时基于电网连接的双馈感应发电机(DFIG)的风能系统中的电流谐波选择性补偿和无功功率补偿。所提出的控制算法适用于DFIG,其中定子直接连接到电网,转子通过带有双向能量流的转换器连接到电网。根据转换器的功率,可以通过补偿无功功率和电网电流的谐波来改善功率质量。建议使用基于观测器的方案来估计非线性负载的电流谐波。在有功和无功电流分量很明显的d-q参考系中执行此任务。区分正序和负序以进行选择性补偿。 2 MW DFIG的仿真结果证实了该方法的有效性和性能。

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