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Magnetic Calibration System With Interference Compensation

机译:具有干扰补偿的磁校准系统

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This paper describes a novel method for calibrating dc-precise magnetometers in the low field range ($pm 100~mu ext{T}$), which gives acceptable results even in laboratory conditions with significant magnetic interference. By introducing a closely mounted reference magnetometer and a specific calibration procedure, it is possible to compensate for the external magnetic field disturbances caused, e.g., by the local transportation operated with dc power supplies. The field compensation occurs only shortly after the calibrating coils are energized. In this case, the leakage of the coil’s magnetic flux to the reference sensor due to the cancelation of the time-varying compensating field was negligible. When using 60 cm coils and reference sensor in 2.5 m distance, we were able to calculate magnetometer gains with a standard deviation of 91 ppm. We show that an overall uncertainty of 0.1% can be achieved.
机译:本文介绍了一种在低磁场范围内校准直流精确磁力计的新方法( n $ pm 100〜 mu text {T} $ n),即使在具有明显电磁干扰的实验室条件下,也能给出可接受的结果。通过引入紧密安装的参考磁力计和特定的校准程序,可以补偿例如由使用直流电源的本地运输引起的外部磁场干扰。磁场补偿仅在校准线圈通电后不久发生。在这种情况下,由于抵消了随时间变化的补偿磁场,线圈的磁通量泄漏到参考传感器是可以忽略的。在2.5 m距离内使用60 cm线圈和参考传感器时,我们能够以91 ppm的标准偏差计算磁力计增益。我们表明可以实现0.1%的总体不确定性。

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