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A comprehensive strapdown triaxial magnetometer calibration method considering temporal misalignment error
DOI:10.1016/j.measurement.2021.109092.png)
Abstract
En 中文
The geomagnetic vector field is always measured by a strapdown triaxial magnetometer on a vehicle. We propose a comprehensive calibration method of strapdown triaxial magnetometers with the aid of external attitude information from a gyro. The temporal misalignment between the two sensors will introduce unexpected measurement errors. The traditional calibration method was expanded to include a temporal misalignment error model for a multi-sensor system, and it was further improved to overcome the ill-posed problem in practical applications. Additionally, the inherent errors of the magnetometer and the vehicle-generated magnetic inferences can be effectively calibrated. Simulations and experimental results demonstrated the success of the method. In comparison with the traditional method, the improvement ratio values of the magnetic field components for the proposed method approximately doubled. This indicated that the algorithm can effectively enhance the measurement accuracy of a strapdown triaxial magnetometer, especially for vector field measurements.
Keywords:
Triaxial magnetometer
Calibration
Temporal misalignment error
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