An improved-sensitivity resonant accelerometer with fishbone-shaped resonators of higher vibration modes

Hong Ding, Jin Xie
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Abstract

This paper reports an improved-sensitivity resonant accelerometer with fishbone-shaped resonators of higher vibration modes. Different from conventional resonant accelerometer integrating with low-order vibrating resonators, our prototype utilizes higher-mode fishbone-shaped resonators based on the principle that higher vibration modes have a higher frequency sensitivity. The proposed fishbone-shaped resonator can realize the mode selection and frequency-tuning function according to the configuration of sensing and driving electrodes. So this resonant accelerometer has sensitivity improvable and adjustable function compared to state of the art. Experimental results demonstrate the average differential sensitivities spanning from 12.44Hz/g to 61.00Hz/g (Mode 1: 12.44Hz/g; Mode 2: 36.94Hz/g; Mode 3: 61.00Hz/g) and the average resonant frequencies are 116.47KHz at mode 1, 299.87KHz at mode 2 and 548.35KHz at mode 3. Moreover, the tilt experiment verifies that this device has potential usage in tilt measurement.
一种具有高振型鱼骨谐振器的改进灵敏度谐振加速度计
本文报道了一种采用高振型鱼骨谐振腔的改进灵敏度谐振加速度计。与传统的集成低阶振动谐振器的谐振式加速度计不同,基于高阶振动模态具有更高频率灵敏度的原理,我们的原型采用了高模鱼骨形谐振器。所提出的鱼骨形谐振器可以根据传感电极和驱动电极的配置实现模式选择和频率调谐功能。因此,与现有的谐振加速度计相比,该谐振加速度计具有灵敏度提高和可调功能。实验结果表明,平均差分灵敏度范围为12.44Hz/g ~ 61.00Hz/g(模态1:12.44Hz/g;模式2:36.94Hz/g;模态3:61.00Hz/g),模态1的平均谐振频率为116.47KHz,模态2为299.87KHz,模态3为548.35KHz。此外,倾斜实验验证了该装置在倾斜测量中具有潜在的应用价值。
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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