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Phase detection algorithm and precision analysis based on all phase FFT

机译:基于全相位FFT的相位检测算法和精度分析

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In the phase measurement of three-phase electricity signal, the measurement accuracy based on traditional FFT algorithm is restricted by harmonic components. Even though it can be corrected by some spectrum correction algorithm, such as FFT+DFT spectrum continuous refining method, phase difference method and so on, these correction algorithms are based on FFT results. So the precision is very limited. Aiming at the deficiency of traditional phase measurement methods, this paper applies digital phase measurements based on the all phase FFT algorithm. This algorithm has the characteristic of initial phase invariability and can prevent the spectrum leakage effectively. Using all phase FFT algorithm can solve the problem of non-synchronous sampling frequency spectrum correction, and improve the phase measurement accuracy obviously. In addition, it can forecast the precision of phase, and greatly reduce the computation. All of these characteristics make it helpful to achieve the phase real-time measurement.
机译:在三相电信号的相位测量中,基于传统FFT算法的测量精度受到谐波分量的限制。即使可以通过某些频谱校正算法(例如FFT + DFT频谱连续细化方法,相位差方法等)进行校正,这些校正算法仍基于FFT结果。因此精度非常有限。针对传统相位测量方法的不足,本文采用基于全相位FFT算法的数字相位测量。该算法具有初始相位不变的特点,可以有效防止频谱泄漏。采用全相位FFT算法,可以解决非同步采样频谱校正的问题,明显提高了相位测量的准确性。另外,它可以预测相位的精度,并大大减少计算量。所有这些特性使实现相位实时测量很有帮助。

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