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A stochastic analysis of an anharmonic sensor phase response

机译:非谐波传感器相位响应的随机分析

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The probability density function (pdf) of a modulo 2/spl pi/ phase response slope of an intrinsic anharmonic sensor of a crystal oscillator is studied in detail. It is noted that without an external drive, the sensor is excited by the oscillator noise floor with a signal-to-noise ratio (SNR) of around unity. The slope pdf is provided both in the rigorous integral form and in the T-distribution-based approximation. It is shown that the slope mean value is estimated to be zero with SNR =0. It then gradually tends toward actual value as SNR rises so that with SNR <2 the bias of slope estimates is almost negligible. With 0/spl les/ SNR >0.7, the slope variance stays at a maximum and then asymptotically diminishes toward zero as the SNR rises. The importance of these studies resides in a shown fact that, practically, having SNR >2 in anharmonic sensors may result in substantial bias and variance for phase response slope mod 2/spl pi/ estimates.
机译:详细研究了晶体振荡器本征非谐传感器的模2 / spl pi /相位响应斜率的概率密度函数(pdf)。值得注意的是,没有外部驱动器,传感器就会受到振荡器本底噪声的激励,信噪比(SNR)约为1。以严格的积分形式和基于T分布的近似值提供斜率pdf。结果表明,在SNR = 0的情况下,斜率平均值估计为零。然后,随着SNR的升高,它逐渐趋向于实际值,因此,当SNR <2时,斜率估计的偏差几乎可以忽略。当0 / spl les / SNR> 0.7时,斜率方差保持最大值,然后随着SNR的增加而渐近地朝零减小。这些研究的重要性在于一个已表明的事实,即实际上,非谐波传感器中的SNR> 2可能会导致相位响应斜率mod 2 / spl pi /估计的明显偏差和方差。

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