首页> 外文会议>Frequency Control Symposium, 1996. 50th., Proceedings of the 1996 IEEE International. >Mixed modulation signal and noise analysis and simulation of the rubidium gas cell atomic frequency standard
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Mixed modulation signal and noise analysis and simulation of the rubidium gas cell atomic frequency standard

机译:gas气电池原子频率标准的混合调制信号与噪声分析与仿真

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General mathematical and computational models and methods are developed for the response of the physics package of the rubidium gas cell atomic frequency to an arbitrary modulated microwave signal. Based on a mixed PM/AM plus FM model of the RF signal, these methods offer analysis and simulation solutions for optical absorption signal waveforms and derivative properties in the presence of RF harmonic distortion, noise, and carrier fluctuation. They support extended rubidium physics models that reflect optical pumping effects and resonance skew. Solutions obtained automatically include the effects of cross modulation. Advanced analysis and simulation applications of the models, methods, and solutions are identified. It is expected that the techniques and solutions will generalize to other types of frequency standard.
机译:针对气室原子频率的物理包对任意调制微波信号的响应,开发了通用的数学和计算模型及方法。这些方法基于RF信号的PM / AM和FM混合模型,为存在RF谐波失真,噪声和载波波动的情况下的光吸收信号波形和微分特性提供了分析和仿真解决方案。它们支持扩展的物理模型,这些模型反映了光泵浦效应和共振偏斜。自动获得的解决方案包括交叉调制的影响。确定了模型,方法和解决方案的高级分析和仿真应用程序。预计这些技术和解决方案将推广到其他类型的频率标准。

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