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Single-Phase Grid Voltage Frequency Estimation Using Teager Energy Operator-Based Technique

机译:基于Teager能量算子的单相电网电压频率估计

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This paper reports the performance of a technique for the estimation of single-phase grid voltage fundamental frequency under distorted grid conditions. The technique combines a Teager energy operator (TEO) with a frequency adaptive bandpass filter (BPF). The TEO is based on three consecutive samples and is used to estimate the fundamental frequency. The BPF relies on a recursive discrete Fourier transform (RDFT) and an inverse RDFT, and is used to extract the normalized amplitude of the grid voltage fundamental component. The technique is computationally efficient and can also reject the negative effects caused by dc offset and harmonics. It requires less computational effort, can provide faster estimation, and is also less affected by harmonics as compared with a technique relying on the RDFT-based decomposition of the single-phase system into orthogonal components. The performance of the technique is verified using both simulation and experimental results.
机译:本文报道了在畸变的电网条件下估算单相电网电压基频的技术的性能。该技术将Teager能量算子(TEO)与频率自适应带通滤波器(BPF)结合在一起。 TEO基于三个连续的样本,用于估计基频。 BPF依赖于递归离散傅里叶变换(RDFT)和逆RDFT,用于提取电网电压基本分量的归一化幅度。该技术的计算效率很高,并且还可以消除由直流偏移和谐波引起的负面影响。与依赖于基于RDFT的单相系统分解成正交分量的技术相比,它需要较少的计算工作,可以提供更快的估计,并且也不受谐波影响。仿真和实验结果均验证了该技术的性能。

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