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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >High-Accuracy Estimations of Frequency, Amplitude, and Phase With a Modified DFT for Asynchronous Sampling
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High-Accuracy Estimations of Frequency, Amplitude, and Phase With a Modified DFT for Asynchronous Sampling

机译:修改后的DFT用于异步采样的频率,幅度和相位的高精度估计

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High-accuracy frequency, amplitude, and phase estimation methods for asynchronous sampling are presented. The proposed estimation methods are based on phase difference estimation, compensation of number of samples, and a modified discrete Fourier transform. This study focused on processing signals in substation automation systems that comply with IEC 61850. Some simulation tests were conducted in cases of pure and distorted sinusoids, and the frequency, amplitude, and phase errors of the fundamental and harmonics are evaluated at fundamental frequencies around 50 Hz at fixed sampling rates of 4 kHz and 12.8 kHz (i.e., 80 and 256 samples per period). Dependence of each estimation accuracy on a fraction of number of samples is discussed.
机译:提出了用于异步采样的高精度频率,幅度和相位估计方法。提出的估计方法基于相位差估计,样本数量补偿和改进的离散傅里叶变换。这项研究的重点是在符合IEC 61850的变电站自动化系统中处理信号。在纯正弦波和失真正弦波的情况下进行了一些仿真测试,并在大约50的基频下评估了基波和谐波的频率,幅度和相位误差。固定采样率为4 kHz和12.8 kHz时的Hz(即每个周期80和256个采样)。讨论了每种估计精度对一部分样本的依赖性。

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