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Gabor Transform, Gabor-Wigner Transform and SPWVD as a time-frequency analysis of power quality

机译:Gabor变换,Gabor-Wigner变换和SPWVD作为电能质量的时频分析

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The measurement algorithms applied in power quality measurement systems are based on Fourier Transformation (FT). The discrete versions of Fourier transformation - DFT (Discrete FT) and FFT (Fast Fourier Transformation) are most commonly used. That one-dimension frequency analysis is sufficient in many cases. However, to illustrate the character of the signal in a more comprehensive manner, it is crucial to represent the investigated signal on time-frequency plane. There are a lot of time-frequency representations (TFR) for presenting measured signal. The most common known are spectrogram (SPEC) and Gabor Transform (GT), which are based on direct DFT results. However, the method has relatively low time-frequency resolution. The other TFR representing Cohen class: Wigner-Ville Distribution (WVD) and its variants: Pseudo Wigner-Ville Distribution (PWVD), Smoothed Pseudo Wigner-Ville Distribution (SPWVD) and Gabor-Wigner Transform (GWT) are described in the paper. The main features of the transforms, on the basis of testing signals, were presented.
机译:电能质量测量系统中使用的测量算法基于傅立叶变换(FT)。傅立叶变换的离散版本-DFT(离散FT)和FFT(快速傅立叶变换)最为常用。一维频率分析在许多情况下就足够了。但是,为了更全面地说明信号的特性,至关重要的是在时频平面上表示所研究的信号。有很多时频表示(TFR)来表示被测信号。最常见的是基于直接DFT结果的频谱图(SPEC)和Gabor变换(GT)。但是,该方法具有相对较低的时频分辨率。本文还描述了代表Cohen类的其他TFR:Wigner-Ville分布(WVD)及其变体:伪Wigner-Ville分布(PWVD),平滑伪Wigner-Ville分布(SPWVD)和Gabor-Wigner变换(GWT)。提出了基于测试信号的变换的主要特征。

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