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Calibration improvement of three-axis magnetometer in disturbing magnetic circumstance based on FIR digital filter

机译:基于FIR数字滤波器的三轴磁力计在干扰环境下的标定改进

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Ideally, the output total value of three-axis magnetometer is stable at a certain place no matter what direction the three-axis magnetometer is placed. Actually, diversionary error of the three-axis magnetometer can not be avoided. In stable magnetic circumstance, tradional LMS adaptive algorithm is with good performance to calibrate the three-axis magnetometer. Experiment result indicates that diversionary error is decreased from 28 nT to 3.5 nT; but the performance is bad in disturbing magnetic field circumstance. Hence, the new method of combining adaptive filter with FIR digital filter is introduced. Then, advantages of the new method is proved by comparing with traditional LMS adaptive filter. Original diversionary error of three-axis magnetometer is 34.4722 nT in disturbing magnetic field circumstance, which is calibrated to 25.7352 nT using traditional LMS adaptive filter and 2.3502 nT by the new method of combining adaptive filter with FIR digital filter, respectively. Obviously, the method proposed in this paper has better calibration performance in disturbing magnetic circumstance.
机译:理想情况下,无论将三轴磁力计放置在哪个方向,三轴磁力计的输出总值在某个位置都是稳定的。实际上,不能避免三轴磁力计的转向误差。在稳定的磁环境下,传统的LMS自适应算法具有很好的校准三轴磁力计的性能。实验结果表明,转移误差从28 nT降低到3.5 nT;但是在干扰磁场的情况下性能较差。因此,介绍了将自适应滤波器与FIR数字滤波器相结合的新方法。然后,通过与传统的LMS自适应滤波器进行比较,证明了该方法的优点。在干扰磁场情况下,三轴磁力计的原始分流误差为34.4722 nT,使用传统LMS自适应滤波器将其校准为25.7352 nT,并通过将自适应滤波器与FIR数字滤波器结合的新方法分别将其校准为2.3502 nT。显然,本文提出的方法在干扰磁场的情况下具有较好的校正性能。

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