Phase noise analysis of a mechanical autonomous impact oscillator with a MEMS resonator

F. Bizzarri, Xueyong Wei
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引用次数: 9

Abstract

In this paper, phase noise analysis of a mechanical autonomous impact oscillator with a MEMS resonator is performed. Since the circuit considered belongs to the class of hybrid systems, methods based on the variational model for the evaluation of either phase noise or steady state solutions cannot be directly applied. As a matter of fact, the monodromy matrix is not defined at impact events in these systems. By introducing saltation matrices, this limit is overcome and the aforementioned methods are extended. In particular, the unified theory developed by Demir is used to analyze the phase noise after evaluating the asymptotically stable periodic solution of the system by resorting to the shooting method. Numerical results are presented to show how noise sources affect the phase noise performances.
带有MEMS谐振器的机械自主冲击振荡器的相位噪声分析
本文对一种带有MEMS谐振腔的机械自主冲击振荡器进行了相位噪声分析。由于所考虑的电路属于混合系统,因此不能直接应用基于变分模型的方法来评估相位噪声或稳态解。事实上,在这些系统的冲击事件中,单矩阵是没有定义的。通过引入跃变矩阵,克服了这一限制,并对上述方法进行了推广。特别是利用Demir的统一理论,通过射击法求得系统的渐近稳定周期解后,对相位噪声进行了分析。数值结果显示了噪声源对相位噪声性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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