EAM对MEMS振动陀螺仪质量因数和噪声的影响

Danmeng Wang, A. Shkel
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引用次数: 2

摘要

本文研究了机电调幅(EAM)对MEMS科里奥利振动陀螺仪性能的影响。我们从理论上预测并实验证明了EAM对工作在开环速率模式下的MEMS CVGs的质量因子和输出噪声的影响。我们演示了动态放大双质量陀螺仪(DAG)的效果,通过将EAM设置从3.5到1.2 V的振幅和75到225 kHz的频率,将陀螺仪的性能从角随机漫步(ARW)的0.04°/rt-hr和0.52°/hr的偏置不稳定性提高到ARW的0.0065°/rt-hr和0.08°/hr的偏置不稳定性。利用本文提出的噪声预测模型推导出优化后的EAM参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of EAM on Quality Factor and Noise in MEMS Vibratory Gyroscopes
This paper reports a study on contribution of electromechanical amplitude modulation (EAM) on performance of MEMS Coriolis vibratory gyroscopes (CVGs). We theoretically predicted and experimentally demonstrated the impact of EAM on both quality factor and output noise in MEMS CVGs operating in the open-loop rate mode. We demonstrated the effect on a dynamically amplified dual-mass gyroscope (DAG) improving the gyroscope performance from 0.04 deg/rt-hr in Angular Random Walk (ARW) and 0.52 deg/hr in bias instability to 0.0065 deg/rt-hr in ARW and 0.08 deg/hr in bias instability by changed the EAM setting from 3.5 to 1.2 V in amplitude and from 75 to 225 kHz in frequency. The optimized EAM parameters were derived by the noise prediction model presented in the paper.
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