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Analysis of transient waveform based on combined short time Fourier transform and wavelet transform

机译:基于短时傅里叶变换和小波变换相结合的瞬态波形分析

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Transient harmonics can be analyzed by short time Fourier Transform (STFT) and wavelet transform respectively. However, there are disadvantages in both of them. The former cannot have favorable result except for having a suitable window, and the latter cannot acquire single harmonic frequency and its amplitude. After comparing the advantages and disadvantages of STFT and wavelet transform which are used to analyze signal of transient harmonic in power system, combining their merits, a novel STFT based on the special frequency band is proposed in this paper. Multiresolution analysis is used to detect the fault time and determine the main frequency range of transient signal. Then the central point and proper width of window of STFT can be obtained. Consequently the accuracy and efficiency of STFT can be improved greatly, frequency components and its amplitudes of transient signal can be obtained accurately and quickly by this method. An on-line system to inspect and analyze transient waveform is designed based on LabVIEW, through which the feasibility and the accurateness of this method have been verified.
机译:瞬态谐波可以分别通过短时傅立叶变换(STFT)和小波变换进行分析。但是,两者都有缺点。前者除了具有合适的窗口外,无法获得令人满意的结果,而后者则无法获得单谐波频率及其幅度。在比较了用于电力系统暂态谐波信号分析的STFT和小波变换的优缺点之后,结合其优点,提出了一种基于特殊频段的新型STFT。多分辨率分析用于检测故障时间并确定瞬态信号的主频率范围。这样就可以得到STFT窗口的中心点和适当的宽度。因此,该方法可以大大提高STFT的精度和效率,并且可以快速准确地获得瞬态信号的频率分量及其幅度。设计了基于LabVIEW的在线检测和分析瞬态波形的系统,验证了该方法的可行性和准确性。

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