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An Efficient Autocalibration Method for Triaxial Accelerometer

机译:一种有效的三轴加速度计自动校准方法

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This paper investigates the autocalibration of microelectromechanical systems (MEMS) triaxial accelerometer (TA) based on experimental design (DoE). First, for a special 6-parameter second-degree model, a six-point experimental scheme is proposed, and its G-optimality has been proven based on optimal DoE. Then, a new linearization approach is introduced, by which the TA model for autocalibration can be simplified as the expected second-degree form so that the proposed optimal experimental scheme can be applied. To reliably estimate the model parameter, a convergence-guaranteed iterative algorithm is also proposed, which can significantly reduce the bias caused by linearization. Thereafter, the effectiveness and robustness of the proposed approach have been demonstrated by simulation. Finally, the proposed calibration method has been experimentally verified using two typical types of MEMS TA, and desired experimental results effectively demonstrate the efficiency and accuracy of the proposed calibration approach.
机译:本文研究基于实验设计(DoE)的微机电系统(MEMS)三轴加速度计(TA)的自动校准。首先,针对特殊的六参数二级模型,提出了一种六点实验方案,并基于最优DOE证明了其G最优性。然后,引入了一种新的线性化方法,通过该方法可以将用于自动校准的TA模型简化为期望的二级形式,从而可以应用所提出的最佳实验方案。为了可靠地估计模型参数,还提出了一种收敛保证的迭代算法,该算法可以大大减少线性化带来的偏差。此后,通过仿真证明了该方法的有效性和鲁棒性。最后,使用两种典型类型的MEMS TA对所提出的校准方法进行了实验验证,所需的实验结果有效地证明了所提出的校准方法的效率和准确性。

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