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LAUNCH WINDOW ANALYSIS FOR THE MAGNETOSPHERIC MULTISCALE MISSION

机译:发射磁体多尺度使命的窗口分析

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The NASA Magnetospheric Multiscale (MMS) mission will fly four spinning spacecraft in formation in highly elliptical orbits to study the magnetosphere of the Earth. This paper describes the development of an MMS launch window tool that uses the orbit-averaged Variation of Parameter equations as the basis for a semi-analytic quantification of the dominant oblateness and lunisolar perturbation effects on the MMS orbit. This approach, coupled with a geometric interpretation of all of the MMS science and engineering constraints, allows a scan of 180~(2) = 32,400 different (RAAN, AOP) pairs to be carried out for a specified launch day in less than 10 s on a typical modern laptop. The resulting plot indicates the regions in (RAAN, AOP) space where each constraint is satisfied or violated: their intersection gives, in an easily interpreted graphical manner, the final solution space for the day considered. This tool, SWM76, is now used to provide launch conditions to the full fidelity (but far slower) MMS simulation code: very good agreement has been observed between the two methods.
机译:美国宇航局磁体Multiscale(MMS)任务将在高度椭圆轨道上飞行四种纺纱航天器,以研究地球的磁圈。本文介绍了MMS启动窗口工具的开发,该工具使用参数方程的轨道平均变化作为对MMS轨道上显性抗置性和Lunisolar扰动效应的半分析量化的基础。这种方法,与所有MMS科学和工程限制的几何解释耦合,允许扫描180〜(2)= 32,400个不同(Raan,AOP)对,以便在不到10秒的时间内进行指定的发射日进行指定的发射日在典型的现代笔记本电脑上。得到的曲线表示(Raan,AOP)空间中的区域,其中满足或违反每个约束:它们的交叉以易于解释的图形方式给出,所考虑的一天的最终解决方案空间。该工具SWM76现在用于为全部保真度提供发射条件(但远慢)MMS仿真代码:两种方法之间已经观察到非常好的协议。

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