三轴MEMS加速度计的最大似然校正算法
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国家部委基金资助项目(9140A01010415JB11002)


Maximum likelihood calibration for MEMS triaxial accelerometer
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    摘要:

    加速度计是惯性导航系统的重要测量元件,而由于制造工艺及各类传感器误差,低成本加速度计很难达到要求的精度, 因此需要对其进行校正。提出一种基于最大似然估计的加速度计自校正算法。综合考虑加速度计零偏、比例误差、非正交误差、安装误差与测量噪声, 建立了传感器误差模型。在此基础上, 将加速度校正问题转化为校正参数的最大似然估计问题。通过数值仿真和实测试验验证, 表明算法具有较高的参数估计精度, 能够有效地对上述因素引起的误差进行校正。

    Abstract:

    Accelerometer is one of the fundamental measurement units of inertial navigation system. It is difficult to meet the precision requirement for low-cost accelerometer due to the manufacturing process and all kinds of sensor errors. Calibration for accelerometer is essential before being used. Therefore, an accelerometer self-calibration algorithm based on maximum likelihood estimation was proposed. The sensor errors model was established by taking comprehensive consideration of zero bias, scale errors, non-orthogonal errors, installation errors and measurement noise of the accelerometer, based on which the calibration problem of accelerometer was transformed into maximum likelihood estimation problem of calibration parameters. The self-calibration algorithm based on maximum likelihood estimation was tested by both numerical simulation and real data experiment. The result shows the maximum likelihood estimation algorithm has a high precision of parameters estimation and can calibrate the errors caused by factors mentioned above effectively.

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陆欣,刘 忠,张宏欣,等.三轴MEMS加速度计的最大似然校正算法[J].国防科技大学学报,2017,39(5):185-191.
LU Xin, LIU Zhong, ZHANG Hongxin, et al. Maximum likelihood calibration for MEMS triaxial accelerometer[J]. Journal of National University of Defense Technology,2017,39(5):185-191.

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  • 收稿日期:2016-05-19
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  • 在线发布日期: 2017-11-07
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