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Analysis of direct spectrum measurement of a sinusoidal signal impaired by either fractional Gaussian phase noise or fractional Brownian phase motion

机译:由分数高斯相位噪声或分数布朗相位运动削弱的正弦信号的直接频谱测量分析

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This article discusses the empirical spectrum (periodogram) of a sinusoidal signal that is phase modulated by either fractional Gaussian noise (fGn) or fractional Brownian motion (fBm). These two cases are of note because they are frequently used to model oscillator phase instabilities known as "1/f noise" and "1/f3 noise," respectively. This work demonstrates that an fGn phase noise may result in a 1/f-shaped spectrum, as might be expected. However, we also show that a sinusoid impaired by an fBm phase noise with 1/f3 noise properties will yield either a Gaussian shaped spectrum or a 1/f2-shaped spectrum, depending on measurement duration. We also prove that the empirical spectrum in both cases is ergodic. Thus, it is guaranteed that a spectrum measurement performed on a single sinusoidal source will result in the same spectrum shapes as listed above, providing that sufficient averaging of consecutive captures is conducted.
机译:本文讨论了正弦信号的经验频谱(周期图),该信号由分数高斯噪声(fGn)或分数布朗运动(fBm)进行相位调制。值得注意的是这两种情况,因为它们经常被用来对振荡器相位不稳定性进行建模,分别称为“ 1 / f噪声”和“ 1 / f3噪声”。这项工作表明,fGn相位噪声可能会导致1 / f形频谱,这是可以预期的。但是,我们还表明,受fBm相位噪声(具有1 / f3噪声特性)影响的正弦波将产生高斯形状的频谱或1 / f2形状的频谱,具体取决于测量持续时间。我们还证明两种情况下的经验谱都是遍历的。因此,保证对单个正弦波源进行的频谱测量将产生与上面列出的相同的频谱形状,前提是要对连续捕获进行足够的平均。

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