Development of a tunable resonant accelerometer with self-sustained oscillation loop

S. Sung, Jang-Gyu Lee, T. Kang, J. Song
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引用次数: 24

Abstract

In this paper, presented are a resonance type accelerometer, its implementation and results of performance test. The structure and principle of resonance type accelerometer are illustrated concisely. A pure surface micromachining technology is used for the structure manufacturing. Fundamental idea of this sensor is to detect variation of effective stiffness from parallel-plated electrostatic resonator. Since resonant accelerometer needs to keep track of the system's resonance point, a feedback loop called self-sustained oscillation loop is designed. The resonant point and its stability robustness are analyzed using nonlinear control methodologies, i.e., describing function method and extended Nyquist stability criterion. Environmental test and theoretical analysis confirmed that the oscillation loop is very robust to external disturbances.
具有自持续振荡回路的可调谐谐振加速度计的研制
本文介绍了一种谐振式加速度计及其实现方法和性能测试结果。简要介绍了谐振式加速度计的结构和工作原理。结构制造采用纯表面微加工技术。该传感器的基本思想是检测平行镀静电谐振器的有效刚度变化。由于谐振式加速度计需要跟踪系统的谐振点,因此设计了一种反馈回路,称为自持续振荡回路。采用非线性控制方法,即描述函数法和扩展Nyquist稳定性判据,分析了谐振点及其稳定性鲁棒性。环境试验和理论分析证实,该振荡回路对外界干扰具有很强的鲁棒性。
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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