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用于重力梯度仪的亚纳克级静电力重新平衡挠性加速度计。

A Subnano-g Electrostatic Force-Rebalanced Flexure Accelerometer for Gravity Gradient Instruments.

作者信息

Yan Shitao, Xie Yafei, Zhang Mengqi, Deng Zhongguang, Tu Liangcheng

机构信息

MOE Key Laboratory of Fundamental Physical Quantities Measurement & Hubei Key Laboratory of Gravitation and Quantum Physics, School of Physics, Huazhong University of Science and Technology, Wuhan 430074, China.

Institute of Geophysics, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Sensors (Basel). 2017 Nov 18;17(11):2669. doi: 10.3390/s17112669.

Abstract

A subnano-g electrostatic force-rebalanced flexure accelerometer is designed for the rotating accelerometer gravity gradient instrument. This accelerometer has a large proof mass, which is supported inversely by two pairs of parallel leaf springs and is centered between two fixed capacitor plates. This novel design enables the proof mass to move exactly along the sensitive direction and exhibits a high rejection ratio at its cross-axis directions. Benefiting from large proof mass, high vacuum packaging, and air-tight sealing, the thermal Brownian noise of the accelerometer is lowered down to less than 0.2 ng / Hz with a quality factor of 15 and a natural resonant frequency of about 7.4 Hz . The accelerometer's designed measurement range is about ±1 mg. Based on the correlation analysis between a commercial triaxial seismometer and our accelerometer, the demonstrated self-noise of our accelerometers is reduced to lower than 0.3 ng / Hz over the frequency ranging from 0.2 to 2 Hz, which meets the requirement of the rotating accelerometer gravity gradiometer.

摘要

一种亚纳克级静电力平衡挠性加速度计是为旋转加速度计重力梯度仪设计的。该加速度计有一个大质量检测质量块,由两对平行的片簧反向支撑,并位于两个固定电容极板之间的中心位置。这种新颖的设计使检测质量块能够精确地沿敏感方向移动,并在其交叉轴方向上具有高抑制比。得益于大质量检测质量块、高真空封装和气密密封,该加速度计的热布朗噪声降低到小于0.2纳克/赫兹,品质因数为15,固有共振频率约为7.4赫兹。该加速度计的设计测量范围约为±1毫克。基于商用三轴地震仪与我们的加速度计之间的相关性分析,我们的加速度计在0.2至2赫兹的频率范围内显示出的自噪声降低到低于0.3纳克/赫兹,满足旋转加速度计重力梯度仪的要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5544/5713193/3d5e6f03ff4c/sensors-17-02669-g001.jpg

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