Calibration and compensation method of three-axis geomagnetic sensor based on pre-processing total least square iteration

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Published 27 April 2018 © 2018 IOP Publishing Ltd and Sissa Medialab
, , Citation Y. Zhou et al 2018 JINST 13 T04006 DOI 10.1088/1748-0221/13/04/T04006

1748-0221/13/04/T04006

Abstract

As the geomagnetic sensor is susceptible to interference, a pre-processing total least square iteration method is proposed for calibration compensation. Firstly, the error model of the geomagnetic sensor is analyzed and the correction model is proposed, then the characteristics of the model are analyzed and converted into nine parameters. The geomagnetic data is processed by Hilbert transform (HHT) to improve the signal-to-noise ratio, and the nine parameters are calculated by using the combination of Newton iteration method and the least squares estimation method. The sifter algorithm is used to filter the initial value of the iteration to ensure that the initial error is as small as possible. The experimental results show that this method does not need additional equipment and devices, can continuously update the calibration parameters, and better than the two-step estimation method, it can compensate geomagnetic sensor error well.

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10.1088/1748-0221/13/04/T04006