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Near-magnetic-field scaling for verification of spacecraft equipment

机译:用于核查航天器设备的近磁场缩放

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Magnetic-field measurements are essential to the success of many scientific space missions. Outside of the earth's magnetic field the biggest potential source of magnetic-field contamination of these measurements is emitted by the spacecraft. Spacecraft magnetic cleanliness is enforced through the application of strict ground verification requirements for spacecraft equipment and instruments. Due to increasingly strict AC magnetic-field requirements, many spacecraft units cannot be verified on the ground using existing techniques. These measurements must instead be taken close to the equipment under test (EUT) and then extrapolated. A traditional dipole power law of a??3 (with a field fall-off proportional to ir/isup−3/sup) cannot be applied at these close distances without risk of underestimating the field emitted by the EUT, but we demonstrate that a power law of a??2 is too conservative. We propose a compromise that uses a power law of a??2 up to a distance equal to 3 times the unit size, beyond which a dipole power law can be applied. When extrapolating from a distance of 0.20 m to 1.00 m from the centre of a 0.20 m wide EUT, we demonstrate that this method avoids an under prediction of the field, and is at least twice as accurate as performing the extrapolation with a fixed power law of a??2.
机译:磁场测量对于许多科学太空任务的成功至关重要。这些测量的最大潜在磁场污染源是地球磁场,它是由航天器发出的。通过对航天器设备和仪器执行严格的地面验证要求,可以增强航天器的磁清洁度。由于对交流磁场的要求越来越严格,因此许多航天器无法使用现有技术在地面上进行验证。这些测量必须改为在被测设备(EUT)附近进行,然后外推。传统的a ?? 3偶极子幂定律(场衰减与 r − 3 成正比)不能在这些近距离上应用,而不会低估风险由EUT发射,但我们证明a?2的幂定律过于保守。我们提出了一种折衷方案,其使用a ?? 2的幂定律,直至等于单位大小的3倍的距离,超过此距离可以应用偶极幂定律。当从0.20 m宽的EUT的中心从0.20 m到1.00 m的距离进行外推时,我们证明了该方法避免了场的预测不足,并且其精度至少是使用固定功率定律进行外推的两倍2。

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