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闭环微机电系统电容式加速度计的组合温度补偿方法

Combined Temperature Compensation Method for Closed-Loop Microelectromechanical System Capacitive Accelerometer.

作者信息

Liu Guowen, Liu Yu, Li Zhaohan, Ma Zhikang, Ma Xiao, Wang Xuefeng, Zheng Xudong, Jin Zhonghe

机构信息

School of Aeronautics and Astronautics, Zhejiang University, Hangzhou 310058, China.

Beijing Institute of Aerospace Control Device, Beijing 100854, China.

出版信息

Micromachines (Basel). 2023 Aug 17;14(8):1623. doi: 10.3390/mi14081623.

Abstract

This article describes a closed-loop detection MEMS accelerometer for acceleration measurement. This paper analyzes the working principle of MEMS accelerometers in detail and explains the relationship between the accelerometer zero bias, scale factor and voltage reference. Therefore, a combined compensation method is designed via reference voltage source compensation and terminal temperature compensation of the accelerometer, which comprehensively improves the performance over a wide temperature range of the accelerometer. The experiment results show that the initial range is reduced from 3679 ppm to 221 ppm with reference voltage source compensation, zero-bias stability of the accelerometer over temperature is increased by 14.3% on average and the scale factor stability over temperature is increased by 88.2% on average. After combined compensation, one accelerometer zero-bias stability over temperature was reduced to 40 μg and the scale factor stability over temperature was reduced to 16 ppm, the average value of the zero-bias stability over temperature was reduced from 1764 μg to 36 μg, the average value of the scale factor stability over temperature was reduced from 2270 ppm to 25 ppm, the average stability of the zero bias was increased by 97.96% and the average stability of the scale factor was increased by 98.90%.

摘要

本文介绍了一种用于加速度测量的闭环检测MEMS加速度计。本文详细分析了MEMS加速度计的工作原理,并解释了加速度计零偏、比例因子与参考电压之间的关系。因此,通过加速度计的参考电压源补偿和终端温度补偿设计了一种组合补偿方法,该方法在较宽温度范围内全面提高了加速度计的性能。实验结果表明,采用参考电压源补偿后,初始范围从3679 ppm降至221 ppm,加速度计在温度范围内的零偏稳定性平均提高了14.3%,比例因子在温度范围内的稳定性平均提高了88.2%。经过组合补偿后,一个加速度计在温度范围内的零偏稳定性降至40 μg,比例因子在温度范围内的稳定性降至16 ppm,零偏在温度范围内的稳定性平均值从1764 μg降至36 μg,比例因子在温度范围内的稳定性平均值从2270 ppm降至25 ppm,零偏的平均稳定性提高了97.96%,比例因子的平均稳定性提高了98.90%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2c4/10456641/345f71d6f94f/micromachines-14-01623-g001.jpg

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