未来阿尔及利亚卫星的低成本磁力计:用Python对地球磁场建模的评估

M. Y. Ghaffour, E. Bensikaddour, Mohammed Yacine Yousfi, M. A. S. Mohammed, Y. Kebbati
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引用次数: 0

摘要

阿尔及利亚航天局最近确定的目标涉及发展一个卫星平台。从这一角度来看,应发展一套姿态控制和确定工具。其中一种仪器是磁力计。事实上,从地球磁场测量中确定卫星姿态通常用于近地轨道(LEO)卫星。这一发展的第一步是本文的主题,其中使用基于python库的开源解决方案模拟与影响卫星的地球磁场相关的数据,以将结果与专用于空间应用的强大软件(系统工具包:STK)进行比较。所获得的结果表明,python能够模拟地球磁场,与STK相比差异很小。这些结果最终将使我们能够选择合适的技术解决方案,用于开发我们内部的地球磁场传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Low Cost Magnetometer for Future Algerian Satellites: Evaluation of Earth Magnetic Field Modelling with Python
The recent objectives set by the Algerian Space Agency (ASAL) concern the development of a satellite platform. In this perspective, a set of instruments for attitude control and determination shall be developed. One of these instruments is the magnetometer. In fact, satellite attitude determination from the earth magnetic field measurement is commonly used for Low Earth Orbit (LEO) satellites. The first step of this development is the subject of this paper, where the data related to the earth magnetic field affecting the satellite is simulated using open source solution based on python libraries to compare the results with the powerful software dedicated to space applications (Systems Tool Kit: STK). The obtained results show that python is capable to model the earth magnetic field with small difference compared to STK. These results will ultimately allow us to choose the appropriate technological solution that will be used for the development of our in-house Earth’s magnetic field sensor.
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