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首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >Calibration and Compensation of Geomagnetic Vector Measurement System and Improvement of Magnetic Anomaly Detection
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Calibration and Compensation of Geomagnetic Vector Measurement System and Improvement of Magnetic Anomaly Detection

机译:地磁矢量测量系统的标定与补偿及磁异常检测的改进

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摘要

The magnetometer error and distortion magnetic field of an inertial navigation system are the major two factors influencing the measurement accuracy of geomagnetic vector information measurement systems. The calibration and compensation methods are proposed in this letter. As a first step, a calibration model for a three-axis magnetometer is established, and a nonlinear least square algorithm is used to estimate thoroughly the error parameters. Then, a distortion compensation model based on relative attitude information is proposed, in which only four groups of attitude information are needed to estimate precisely the distortion parameters. Finally, the whole system is used for magnetic anomaly detection. Experimental results suggest that the magnetometer error can be accurately calibrated, and the magnetic field distortion can be suppressed significantly. After calibration and compensation, the intensity and magnetic anomaly vectors such as west vector, south vector, and vertical vector can be accurately measured by the geomagnetic vector measurement system. It demonstrates that the proposed method can effectively improve the accuracy of the geomagnetic vector measurement system.
机译:惯性导航系统的磁力仪误差和畸变磁场是影响地磁矢量信息测量系统测量精度的两个主要因素。本信中提出了校准和补偿方法。第一步,建立三轴磁力计的校准模型,并使用非线性最小二乘算法全面估计误差参数。然后,提出了一种基于相对姿态信息的畸变补偿模型,其中只需要四组姿态信息就可以精确估计出畸变参数。最后,整个系统用于磁异常检测。实验结果表明,磁强计误差可以得到准确校准,并且磁场畸变可以得到显着抑制。经过校准和补偿后,可以通过地磁矢量测量系统准确测量强度和磁异常矢量,例如西向矢量,南向矢量和垂直矢量。结果表明,该方法可以有效提高地磁矢量测量系统的精度。

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