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Phase noise and timing jitter in oscillators with colored-noise sources

机译:具有色噪声源的振荡器中的相位噪声和定时抖动

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Phase noise or timing jitter in oscillators is of major concern in wireless and optical communications, being a major contributor to the bit-error rate of communication systems, and creating synchronization problems in other clocked and sampled-data systems. This paper presents the theory and practical characterization of phase noise in oscillators due to colored, as opposed to white, noise sources. Shot and thermal noise sources in oscillators can be modeled as white-noise sources for all practical purposes. The characterization of phase noise in oscillators due to shot and thermal noise sources is covered by a recently developed theory of phase noise due to white-noise sources. The extension of this theory and the practical characterization techniques to noise sources in oscillators, which have a colored spectral density, e.g., 1/f noise, is crucial for practical applications. In this paper, we first derive a stochastic characterization of phase noise in oscillators due to colored-noise sources. This stochastic analysis is based on a novel nonlinear perturbation analysis for autonomous systems, and a nonlocal Fokker-Planck equation we derive. Then, we calculate the resulting spectrum of the oscillator output with phase noise as characterized. We also extend our results to the case when both white and colored-noise sources are present. Our treatment of phase noise due to colored-noise sources is general, i.e., it is not specific to a particular type of colored-noise source.
机译:振荡器中的相位噪声或定时抖动是无线和光通信中的主要问题,是导致通信系统误码率的主要因素,并在其他时钟和采样数据系统中产生了同步问题。本文介绍了有色(而不是白色)噪声源引起的振荡器相位噪声的理论和实际表征。出于所有实际目的,可以将振荡器中的散粒和热噪声源建模为白噪声源。由于散粒和热噪声源而导致的振荡器相位噪声的表征已被最近开发的由于白噪声源引起的相位噪声理论所覆盖。将该理论和实用的表征技术扩展到振荡器中的噪声源,其具有彩色频谱密度,例如1 / f噪声,对于实际应用至关重要。在本文中,我们首先得出由于有色噪声源而导致的振荡器相位噪声的随机表征。这种随机分析是基于对自治系统的新型非线性摄动分析,以及我们得出的非局部Fokker-Planck方程。然后,我们用表征的相位噪声来计算振荡器输出的最终频谱。我们还将结果扩展到同时存在白色和彩色噪声源的情况。我们对色噪声源引起的相位噪声的处理是一般的,即,它并不特定于特定类型的色噪声源。

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