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General Perturbations Method for Orbit Lifetime Analysis Incorporating Non-Spherically-Symmetrical Atmospheres

机译:考虑非球对称大气的轨道寿命分析的一般摄动法

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A general perturbations method for orbit lifetime analysis is extended to include an analytical non-spherically-symmetrical atmospheric density model. This improvement allows the method to be applied with confidence to highly inclined orbits and special cases such as sun-synchronous orbits where the inclusion of the effects of atmospheric oblateness and the diurnal bulge will be particularly significant. These improvements can be applied to any general perturbations model for lifetime analysis. Using a case study of a sun-synchronous satellite a comparison is drawn between the original and improved methods, showing that by capturing the effects of a non-spherically-symmetrical atmosphere the orbit lifetime predicted could be up to 7% longer or 10% shorter than when using the spherically-symmetrical model. Also notable is the difference between the orbit lifetime predictions made using the spherically-symmetrical model derived from different data sets; for the case study this was approximately a third of the orbit lifetime.
机译:扩展了用于轨道寿命分析的通用摄动方法,以包括一个非球对称的大气密度分析模型。这种改进使该方法可以放心地应用于高度倾斜的轨道和特殊情况下,例如太阳同步轨道,其中大气扁率和昼夜隆起的影响将特别重要。这些改进可以应用于生命周期分析的任何通用扰动模型。使用太阳同步卫星的案例研究,对原始方法和改进方法进行了比较,结果表明,通过捕获非球面对称大气的影响,预测的轨道寿命可能会延长7%或缩短10%比使用球对称模型时要好。同样值得注意的是,使用从不同数据集得出的球对称模型进行的轨道寿命预测之间的差异;对于案例研究,这大约是轨道寿命的三分之一。

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