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A Fast-Convergent Modulation Integral Observer for Online Detection of the Fundamental and Harmonics in Grid-Connected Power Electronics Systems

机译:用于在线检测并网电力电子系统中基本和谐波的快速收敛调制积分观测器

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摘要

Harmonics detection is a critical element of active power filters. A previous review has shown that the recursive discrete Fourier transform and the instantaneous p-q theory are effective solutions to extracting power harmonics in single-phase and three-phase power systems, respectively. This paper presents the operating principle of a new modulation function integral observer algorithm that offers a fast solution for the extraction of the fundamental current and the total harmonic current when compared with existing methods. The proposed method can be applied to both single- and three-phase systems. The observer-based algorithm has an advantageous feature of being able to be tuned offline for a specific application, having fast convergence, and producing estimated fundamental component with high circularity. It has been tested with both simulations and practical experiments for extracting the total harmonic current in a highly efficient manner. The results have confirmed that the proposed tool offers a new and highly effective alternative for the smart grid industry.
机译:谐波检测是有源电力滤波器的关键要素。先前的综述表明,递归离散傅里叶变换和瞬时p-q理论分别是提取单相和三相电力系统中电力谐波的有效解决方案。本文提出了一种新的调制函数积分观测器算法的工作原理,与现有方法相比,该算法为提取基本电流和总谐波电流提供了一种快速的解决方案。所提出的方法可以应用于单相和三相系统。基于观察者的算法具有以下优点:可以针对特定应用进行脱机调整,具有快速收敛性并可以产生具有高圆度的估计基本分量。它已通过仿真和实际实验进行了测试,可以高效地提取总谐波电流。结果证实,该提议的工具为智能电网行业提供了一种新的高效替代方案。

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