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Towards better accuracy calibration method for electronic compass based on spatial interpolation algorithm

机译:基于空间插值算法的电子罗盘精度标定方法

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This paper presents a novel calibration algorithm for digital compass in 3 dimensions. A spatial interpolation algorithm is used for better accuracy. At present, because of the problem that the electronic compass calibration method based on ellipsoid fitting is not accurate and the calibration method is complex under the special application conditions, we put forward a novel calibration method based on the interpolation algorithm. Firstly, according to the error model and the 12-position calibration method, 12 basic integrated error parameters can be calculated. Then, we study the interpolation method and design a high-precision interpolation algorithm. Finally, the experimental data show that in the case of plane, the maximum heading angle error within ± 0.2 °. The interpolation method based on interpolation algorithm can obviously improve the accuracy of heading angle of electronic compass.
机译:本文提出了一种新颖的3维数字罗盘校准算法。使用空间插值算法可获得更好的准确性。目前,由于在特殊的应用条件下,基于椭球拟合的电子罗盘标定方法不准确,标定方法复杂的问题,提出了一种基于插值算法的标定方法。首先,根据误差模型和12位标定方法,可以计算出12个基本综合误差参数。然后,我们研究了插值方法,并设计了一种高精度的插值算法。最后,实验数据表明,在平面情况下,最大航向角误差在±0.2°以内。基于插值算法的插值方法可以明显提高电子罗盘的航向角精度。

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