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Asymptotic stochastic characterization of phase and amplitude noise in free-running oscillators

机译:自由运行振荡器中相位和幅度噪声的渐近随机表征

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摘要

Starting from the definition of the stochastic differential equation for amplitude and phase fluctuations of an oscillator described by an ordinary differential equation, we study the associated Fokker-Planck equation by using tools from stochastic integral calculus, harmonic analysis and Floquet theory. We provide an asymptotic characterization of the relevant correlation functions, showing that within the assumption of a linear perturbative analysis for the amplitude fluctuations phase noise and orbital fluctuations at the same time are asymptotically statistically independent, and therefore the nonlinear perturbative analysis of phase noise recently derived still exactly holds even if orbital noise is taken into account.
机译:从由普通微分方程描述的振荡器幅度和相位波动的随机微分方程的定义开始,我们使用随机积分演算,谐波分析和Floquet理论的工具研究相关的Fokker-Planck方程。我们提供了相关函数的渐近刻画,表明在对振幅波动进行线性微扰分析的假设下,同时相位噪声和轨道波动在统计上是渐近独立的,因此最近推导了相位噪声的非线性扰动分析即使考虑到轨道噪声,它仍然完全成立。

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