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Fluxgate sensor for the vector magnetometer onboard the 'Astrid-2' satellite

机译:用于“ Astrid-2”卫星上的矢量磁力计的磁通门传感器

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The vector magnetometer sensor onboard the Astrid-2 satellite is made as a compact ringcore fluxgate sensor with single axis compensation. The ringcores used in the sensor are identical to the cores used in the fluxgate (CSC-) sensor in the high quality magnetometer onboard the field mapping satellite called 'Orsted'. To obtain good axial stability special attention is drawn to the mechanical construction of the tri-axial sensor configuration. Almost all parts of the sensor are machined from the glassy material MACOR(R) that has approximately the same thermal expansion coefficient as the core ribbon. The single axis compensated ringcore sensors are known to have some linearity problems with large uncompensated fields perpendicular to the measuring axis, This phenomenon is also seen for the Astrid-2 sensor, and from a coil-calibration of the flight-spare sensor we observe: non-linearities in the order of 2.1 to 4.3 nT(p). From the results of the calibration, an unfortunate magnetic coupling between two of the axes was discovered. This coupling is also associated with the ringcore geometry and large uncompensated transverse field, (C) 2000 Elsevier Science S.A. All rights reserved. [References: 9]
机译:Astrid-2卫星上的矢量磁力计传感器是具有单轴补偿的紧凑型环形铁心磁通门传感器。传感器中使用的环形磁心与磁场映射卫星“ Orsted”上的高质量磁力计中的磁通门(CSC-)传感器中使用的磁心相同。为了获得良好的轴向稳定性,需要特别注意三轴传感器配置的机械构造。传感器的几乎所有零件都是由玻璃纤维材料MACOR®加工而成的,该材料的热膨胀系数与芯带大致相同。已知单轴补偿的环形磁芯传感器在垂直于测量轴的大未补偿场中存在一些线性问题,对于Astrid-2传感器也可以看到这种现象,并且从飞行备用传感器的线圈校准中我们可以观察到:非线性范围为2.1至4.3 nT(p)。根据校准结果,发现两个轴之间存在不幸的磁耦合。这种耦合还与环形芯的几何形状和较大的未补偿横向场有关,(C)2000 Elsevier Science S.A.保留所有权利。 [参考:9]

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