GOCE CDMU产生的低频磁场和电场的稳态发射模型

A. T. Baklezos, C. D. Nikolopoulos, S. Spantideas, E. G. Chatzineofytou, M. Nicoletto, I. Marziali, D. Boschetti, Christos N. Capsalis
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引用次数: 6

摘要

在GOCE航天任务指挥与数据处理管理单元(CDMU)的近场测量中,实现了航天器设备辐射低频电场和磁场的测试程序和建模结果。具体来说,该装置的低频电磁信号可获得高达200 kHz的频率,并根据电场和磁场的贡献确定发射频率。为了捕获和表征CDMU的稳态运行,进行了测量和建模过程。本工作中提出的建模方法依赖于ESA对THOR电磁清洁度方法的预验证研究框架内进行的测量。
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Steady State Emissions Modeling of Low Frequency Magnetic and Electric Fields Generated by GOCE CDMU
In this work, the test procedures and modeling results of low frequency (LF) electric and magnetic fields radiated by spacecraft equipment are implemented on near field measurements of the Command & Data Handling Management Unit (CDMU) of GOCE space mission. Specifically, the unit's LF electromagnetic signature is acquired up to 200 kHz and the frequencies that exhibit emissions are identified for both electric and magnetic field contributions. The measurements and modeling procedure are performed targeting to capture and characterize the steady state operation of the CDMU. The modeling methods presented in this work rely on measurements conducted in the frame of ESA's study on Pre-Verification of THOR Electro-Magnetic Cleanliness Approach.
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