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Frequency Estimation of Three-Phase Power System Using Weighted-Least-Square Algorithm and Adaptive FIR Filtering

机译:加权最小二乘和自适应FIR滤波的三相电力系统频率估计

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摘要

A new technique for estimation of the instantaneous frequency based on simultaneous sampling of three-phase voltage signals is presented. The structure consists of two decoupled modules: the first is for adaptive filtering of input signals, and the second is for frequency estimation. A suitable and robust algorithm for frequency estimation is obtained. This technique provides better performance, compared with the technique based on a single-phase signal in relation to waveforms with noise. The technique is particularly important when asymmetric sags generate zero voltage in one of the three phases. In addition, it allows the measurement of the instantaneous frequency value of real signals for single- or three-phase systems. To demonstrate the performance of the developed algorithm, computer-simulated data records and calibrator-generated signals are processed. The proposed algorithm has been put to test with distorted three-phase voltage signals.
机译:提出了一种基于三相电压信号同时采样的瞬时频率估计新技术。该结构包含两个解耦的模块:第一个用于输入信号的自适应滤波,第二个用于频率估计。获得了合适且鲁棒的频率估计算法。与基于单相信号的技术相比,与具有噪声的波形相比,该技术提供了更好的性能。当非对称垂度在三相之一中产生零电压时,该技术特别重要。此外,它还允许测量单相或三相系统的实际信号的瞬时频率值。为了演示所开发算法的性能,对计算机模拟的数据记录和校准器生成的信号进行了处理。所提出的算法已经在三相电压信号失真的情况下进行了测试。

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