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Sample Rate Converter As a Means of Reducing Measurment Error of the Voltage Spectrum by Application of FFT

机译:采样率转换器作为降低FFT电压谱测量误差的一种手段

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Nowdays, measurements of different power quality parameters are based on spectrum measurements by application of Fast Fourier Transform (FFT). At the same time, in order to eliminate the "spectrum leakage" effect, measurement time should be a multiple of the input signal period. Frequency of real power grids is variable. For successful FFT application, the number of processed samples must be equal to a power of two or four. It calls for periodic measurement of the frequency of the input signal and oversampling. A sample rate converter (SRC) is applied to perform resampling. In this article a method of spectrum measurement and apparent power measurement, based on the application of FFT and SRC is described. Measurement errors of these values, due to inaccurate sampling frequency adjustment are analyzed. A SRC based on the Lagrange interpolator is considered. The Lagrange interpolator is implemented on the Farrow structure (Farrow Filter). Analytical expressions are obtained for estimating the error of the magnitude response and phase response of digital SRC of the order from zero to fourth.
机译:如今,通过使用快速傅立叶变换(FFT)进行频谱测量,可以测量不同的电能质量参数。同时,为了消除“频谱泄漏”效应,测量时间应为输入信号周期的倍数。实际电网的频率是可变的。为了成功进行FFT应用,已处理样本的数量必须等于2或4的幂。它要求定期测量输入信号的频率并进行过采样。采样率转换器(SRC)用于执行重采样。本文介绍了一种基于FFT和SRC的频谱测量和视在功率测量方法。分析由于采样频率调整不正确而导致的这些值的测量误差。考虑基于拉格朗日内插器的SRC。拉格朗日插值器在Farrow结构(Farrow滤波器)上实现。获得用于估计从零到第四的数量级的数字SRC的幅度响应和相位响应的误差的解析表达式。

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