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Bias and linearity measurement of three axis fluxgate magnetometers using high precise electromagnetic devices

机译:采用高精度电磁装置的三轴磁通磁力计的偏置和线性测量

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Bias error and linearity error influence the measurement precision of three axis fluxgate magnetometers. So, it is important to obtain and calibrate these errors. Bias error and linearity error of a German made DM-060 digital magnetometer are measured by precise electromagnetic devices. Firstly, bias of each axis is obtained by an alternating weak electromagnetic standard equipment. A method by comparing mean absolute error before and after calibration is proposed to demonstrate the bias results credibility. Then, the rotating method is proposed to measure bias by a horizontal barrel shield equipment. Lastly, linearity error of each axis is obtained by a low DC electromagnetic field standard system, and linearity coefficients are calculated by linearity fitting. Experimental results show that bias of X, Y and Z axis is −2.9 nT, −1.4 nT and 3.9 nT by the alternating weak electromagnetic standard equipment, respectively. Bias of each axis changes to −5 nT, −2.5 nT and 10.5 nT by the horizontal barrel shield equipment a year later. Linearity error of X axis, Y axis and Z axis is 3.78−e005, 4.51−e005 and 7.92−e005, respectively. These experimental results show that there is a promising application to use high precise electromagnetic devices for measuring and calibrating bias error and linearity error.
机译:偏置误差和线性误差会影响三轴磁阻磁力计的测量精度。因此,重要的是要获得和校准这些错误。德国制造的DM-060数字磁力计的偏置误差和线性误差由精确的电磁器件测量。首先,通过交替的弱电磁标准设备获得每个轴的偏差。通过比较校准之前和之后的平均绝对误差的方法,以证明偏差结果可信度。然后,提出旋转方法来通过水平桶屏蔽设备测量偏压。最后,通过低直流电磁场标准系统获得每个轴的线性误差,并且通过线性配件计算线性系数。实验结果表明,X,Y和Z轴的偏差分别由交流弱电磁标准设备分别为-2.9 nt,-1.4 nt和3.9nt。一年后,每个轴的偏置通过水平桶屏蔽设备改变为-5 nt,-2.5 nt和10.5 nt。 X轴,Y轴和Z轴的线性误差分别为3.78-E005,4.51-E005和7.92-E005。这些实验结果表明,有希望使用高精度电磁装置来测量和校准偏置误差和线性误差的应用。

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