Adaption of Magnetic Cleanliness Facilities and Procedures to Overcome the New Challenges of the Scientific Missions

M. Michelena, M. Á. Rivero, J. de Frutos, A. Ordoñez‐Cencerrado, J. Mesa
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引用次数: 2

Abstract

Scientific goals in magnetometry require extremely high resolution magnetometers, a very good program of magnetic cleanliness and a powerful processing methodology. When magnetic cleanliness reaches its limits the exhaustive characterisation of the magnetic signature of the different subsystems together with compensation systems (HW) and algorithms (SW) may be the only way to achieve the performance demanded by the scientific objectives. Furthermore, exploration horizons, only within the limits of our Solar System, present scientific challenges in harsh conditions which comprise, among others, extreme swings of temperature. The magnetic properties of materials depend on temperature and the electrical resistance of wires and coils too. Therefore in wide temperature ranges the behaviour of the magnetic signature with temperature needs to be analysed, minimized when possible, and introduced in the retrieval algorithms for an optimal response. The requirements for the subsystems are present in their testing route documentation. However there are not standards or norms with the established procedures to develop these tests. In this work the INTA Space Magnetism Laboratory will overview different methodologies implemented for standard tests, will introduce some of the upcoming and challenging requirements and will present some of the solutions implemented.
适应磁清洁设备和程序以克服科学任务的新挑战
磁强计的科学目标需要极高分辨率的磁强计、非常好的磁洁净度程序和强大的处理方法。当磁洁净度达到极限时,对不同子系统的磁特征进行详尽的描述以及补偿系统(HW)和算法(SW)可能是实现科学目标所要求的性能的唯一途径。此外,只有在我们太阳系范围内的勘探地平线,在包括极端温度波动在内的恶劣条件下,对科学提出了挑战。材料的磁性也取决于温度以及导线和线圈的电阻。因此,在较宽的温度范围内,需要分析磁信号随温度的行为,尽可能最小化,并将其引入检索算法以获得最佳响应。子系统的需求出现在它们的测试路径文档中。然而,在制定这些测试的既定程序方面并没有标准或规范。在这项工作中,INTA空间磁性实验室将概述为标准测试实施的不同方法,将介绍一些即将到来的和具有挑战性的要求,并将提出一些实施的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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