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首页> 外文期刊>Journal of Computational Electronics >Noise in oscillators: a review of state space decomposition approaches
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Noise in oscillators: a review of state space decomposition approaches

机译:振荡器中的噪声:状态空间分解方法的回顾

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We review the state space decomposition techniques for the assessment of the noise properties of autonomous oscillators, a topic of great practical and theoretical importance for many applications in many different fields, from electronics, to optics, to biology. After presenting a rigorous definition of phase, given in terms of the autonomous system isochrons, we provide a generalized projection technique that allows to decompose the oscillator fluctuations in terms of phase and amplitude noise, pointing out that the very definition of phase (and orbital) deviations depends of the base chosen to define the aforementioned projection. After reviewing the most advanced theories for phase noise, based on the use of the Floquet basis and of the reduction of the projected model by neglecting the orbital fluctuations, we discuss the intricacies of the phase reduction process pointing out the presence of possible variations of the noisy oscillator frequency due to amplitude-related effects.
机译:我们回顾了用于评估自主振荡器噪声特性的状态空间分解技术,这对于从电子,光学到生物学的许多不同领域的许多应用都具有重大的实践和理论意义。在给出了严格的相位定义之后,根据自治系统的等时性,我们提供了一种通用的投影技术,该技术可以按照相位和幅度噪声分解振荡器的波动,指出相位(和轨道)的确切定义偏差取决于为定义上述投影而选择的基础。在回顾了最先进的相位噪声理论之后,基于Floquet基础的使用以及通过忽略轨道波动来简化投影模型的方法,我们讨论了相位减小过程的复杂性,指出了可能存在的相位变化。由于幅度相关的影响,振荡器频率会产生噪声。

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