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首页> 外文期刊>The Journal of the Astronautical Sciences >Precision Low Earth Orbit Determination Using Atmospheric Density Calibration
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Precision Low Earth Orbit Determination Using Atmospheric Density Calibration

机译:利用大气密度校准精确确定低地球轨道

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摘要

Atmospheric drag is the largest uncertainty in determining orbits of low altitude satellites. Deficiencies in operational satellite drag models persist due to empirical model limitations as well as inadequacies of proxy indices used as model drivers. Satellite drag errors result in degraded accuracy, requirements for frequent updates and inadequate predictions of true positions for accurate catalog maintenance, collision avoidance and re-entry operations. Time-dependent global corrections to operational drag models have been derived based on assimilation of satellite tracking data. These corrected drag values circumvent the persisting deficiencies of current drag models and provide significant improvements in precision orbit determination and prediction lot low-earth orbit satellites.
机译:大气阻力是确定低空卫星轨道的最大不确定性。由于经验模型的局限性以及用作模型驱动器的代理指标的不足,操作卫星阻力模型的缺陷仍然存在。卫星拖曳错误会导致精度下降,需要频繁更新并且对正确位置的预测不足,无法进行准确的目录维护,避免碰撞和重新进入操作。已基于对卫星跟踪数据的同化,得出了对运行阻力模型的时变全局校正。这些校正的阻力值避免了当前阻力模型的持续缺陷,并在精确轨道确定和预测低地球轨道卫星方面提供了重大改进。

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