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A Robust Frequency Estimation Technique Based on Three Consecutive Samples for Single-Phase Systems

机译:基于三个连续样本的单相系统鲁棒频率估计技术

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摘要

This paper proposes a robust technique for fundamental frequency estimation of a single-phase grid voltage waveform under distorted conditions. The technique consists of an improved algorithm based on three consecutive samples (3CSs) and a finite-impulse-response (FIR) filter. The technique can reject the negative effects caused by direct current (dc) offset, harmonics, notches, and spikes. It can also estimate the fundamental frequency for a wide range of variation, thus complying with the standard. Compared with a conventional technique based on 3CSs and an FIR filter, the proposed technique does not require setting a threshold value of the middle sample of 3CSs for removing the ill condition. Moreover, it is less affected by the dc offset, voltage sag, voltage flicker, notches, and spikes compared with the conventional technique. Simulation and real-time experimental results are presented to verify the robustness of the proposed technique.
机译:本文提出了一种鲁棒的技术,用于在失真条件下估计单相电网电压波形的基频。该技术由基于三个连续样本(3CS)和有限冲激响应(FIR)滤波器的改进算法组成。该技术可以消除由直流(dc)偏移,谐波,陷波和尖峰引起的负面影响。它还可以估算各种变化范围的基本频率,从而符合标准。与基于3CS和FIR滤波器的常规技术相比,所提出的技术不需要设置用于去除疾病的3CS的中间样本的阈值。而且,与传统技术相比,它受直流偏移,电压骤降,电压闪烁,陷波和尖峰的影响较小。仿真和实时实验结果被提出来验证所提出技术的鲁棒性。

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