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Modeling optoelectronic oscillators

机译:建模光电振荡器

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We have developed a comprehensive simulation model for accurately studying the dynamics in optoelectronic oscillators (OEOs). Although the OEO is characterized by three widely separated time scales, our model requires neither long run times nor a large amount of memory storage. The model generalizes the Yao-Maleki model and includes all of the physical effects in the Yao-Maleki model as well as other physical effects that are needed to calculate important features of the OEO dynamics, such as the impact of the fast response time of the modulator on the phase noise power spectral density, the fluctuations of the OEO output due to the input noise, the cavity mode competition during the OEO start-tip, and temporal amplitude oscillations in steady state. We show that the absolute value of the phase noise is 2-3 dB lower than predicted by the Yao-Maleki model. The Yao-Maleki model does not take into account amplitude noise suppression due to the fast time response of the modulator, which accounts for this difference. We show that a single cavity mode oscillates in the OEO at steady state, and this mode is determined by the noise that is present when the OEO is turned on. When the small-signal open-loop gain is higher than 2.31, we show that the OEO amplitude oscillates in steady state. This temporal amplitude oscillation can be suppressed by using a narrow filter. Our simulation model, once extended to include flicker (1/f) noise and different amplifier and modulator designs, will enable its users to accurately design OEOs. (c) 2008 Optical Society of America
机译:我们已经开发了一个全面的仿真模型,可以准确地研究光电振荡器(OEO)的动力学。尽管OEO的特征是三个相互分开的时间尺度,但我们的模型既不需要长时间运行,也不需要大量的内存存储。该模型对Yao-Maleki模型进行了概括,并包含了Yao-Maleki模型中的所有物理效应以及计算OEO动力学重要特征所需的其他物理效应,例如OEO动态响应时间的影响。相位噪声功率谱密度的调制器,由于输入噪声引起的OEO输出波动,OEO起始尖端期间的腔模竞争以及稳态时的时间振幅振荡。我们表明,相位噪声的绝对值比Yao-Maleki模型的预测值低2-3 dB。由于调制器的快速时间响应,Yao-Maleki模型没有考虑幅度噪声抑制,这解释了这一差异。我们表明,单腔模式在稳定状态下的OEO中振荡,而该模式由OOE打开时存在的噪声确定。当小信号开环增益高于2.31时,我们表明OEO振幅在稳态下振荡。可以通过使用窄滤波器来抑制该时间幅度振荡。我们的仿真模型一旦扩展到包括闪烁(1 / f)噪声以及不同的放大器和调制器设计,将使其用户能够准确地设计OEO。 (c)2008年美国眼镜学会

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