加速度计
重力仪
重量分析法
噪音(视频)
比例因子(宇宙学)
声学
灵敏度(控制系统)
噪声地板
惯性测量装置
重力场
陀螺仪
微电子机械系统
重复性
大地测量学
物理
地质学
光学
计算机科学
噪声测量
航空航天工程
工程类
电子工程
光电子学
降噪
数学
图像(数学)
统计
宇宙学
人工智能
量子力学
干涉测量
暗能量
空间的度量展开
天文
作者
Zhengxiang Fang,Yanlong Yin,Chen Chen,Shujuan Zhang,Yunfeng Liu,Fengtian Han
标识
DOI:10.1016/j.sna.2021.112694
摘要
A sensitive micromachined resonant accelerometer that exhibits extremely low noise floor and excellent bias stability is presented for future application of moving-base gravimetry. An overall structure optimization is presented for large scale factor and low noise, which is significant for measuring variations in the gravitational field of the Earth. The experimental results show that the MEMS accelerometer has a scale factor up to 876 Hz/g and a noise floor down to 75ng/Hz by setting a relatively low full-scale range of ±5 g. The experimental results of the resonant accelerometer with ±0.01°C temperature control show that the averaged bias stability for one day duration is 0.197 μg and the bias repeatability within about 3 months is 1.56 μg. Furthermore, a six-day measurement duration of the accelerometer with its sensitive axis perpendicular to the ground shows a sensitive measurement synchronously with the Earth's tidal gravity, which demonstrates that the resonant accelerometer has the capability for high-performance applications such as moving-base gravimeters and shipborne inertial navigation systems.
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