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A probabilistic analysis of the crystal oscillator behavior at low drive levels

机译:低驱动水平晶体振荡器行为的概率分析

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The paper discusses a probabilistic model of a crystal oscillator at low drive levels where the noise intensity is comparable with the oscillation amplitude. The stationary probability density of the oscillations envelope is derived and investigated for the nonlinear resonator loses. A stochastic explanation is given for the well-known phenomenon termed sleeping sickness associated with losing a facility of self-excitation by a crystal oscillator after a long storage without a power supply. It is shown that, with low drive levels leading to an insufficient feedback, a crystal oscillator generates the noise-induced oscillations rather than it absolutely "falls in sleep".
机译:本文讨论了低驱动水平的晶体振荡器的概率模型,其中噪声强度与振荡幅度相当。为非线性谐振器丢失来推导和研究振动壳体的静止概率密度。给出了随着众所周知的现象所谓的睡眠疾病的随机解释,在没有电源的长存储器之后通过晶体振荡器丢失自激振荡的设施。结果表明,具有低驱动水平的导致反馈不足,晶体振荡器产生噪声引起的振荡,而不是绝对地“睡眠”。

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