JUICE太阳能电池阵的磁性测试与分析

M. Kroon, E. Bongers, K. Bubeck
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引用次数: 1

摘要

JUICE航天器上非常敏感的磁性仪器需要各种子系统的极低磁场发射。JUICE太阳能阵列包括一个光伏组件和各种具有磁签名的机制。光伏组件的设计不仅在磁矩方面得到了优化,而且在发射磁场方面也得到了优化,通过应用所谓的反向布线技术,交替的串极性等。测试了机构(铰链、涡流阻尼器、压紧和释放机构)的剩余磁场,包括消磁过程。此外,测量了磁矩的温度系数,直到工作温度为- 130℃。涡流阻尼器还进行了场感应磁化试验。所有的贡献者都包含在一个模型中,以计算仪器位置的磁场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic tests and analysis of JUICE solar array
Very sensitive magnetic instruments on the JUICE spacecraft require an extremely low magnetic field emission of the various subsystems. The JUICE solar array includes a photovoltaic assembly and various mechanisms with a magnetic signature. The design of the photovoltaic assembly has been optimised not only with respect to magnetic moment, but also with respect to the emitted magnetic field, by applying the so-called back-wiring technique, alternating string polarity etc. The remanent magnetic field of the mechanisms (hinges, eddy-current damper, hold-down & release mechanism) was tested including a process for demagnetisation. In addition, the temperature coefficient for the magnetic moment was measured, down to the operational temperature of −130°C. The eddy-current damper was also subjected to a field-induced magnetisation test. All the contributors were included in a model to calculate the magnetic field at the instrument location.
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