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首页> 外文期刊>Journal of Spacecraft and Rockets >Deriving Accurate Satellite Ballistic Coefficients from Two-Line Element Data
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Deriving Accurate Satellite Ballistic Coefficients from Two-Line Element Data

机译:从两线元素数据中得出准确的卫星弹道系数

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摘要

Using a specially developed orbital propagator, it is shown that only two-line element data are required to accurately predict a satellite's ballistic coefficient. By analyzing orbit degradation due to atmospheric drag, a ballistic coefficient can be estimated using an inexpensive way to determine an important satellite characteristic, without the need for additional satellite information or a design model. As atmospheric drag is a significant perturbing force for satellites in low Earth orbit, any improvements in its estimation are vital for many applications, such as reentry predictions, satellite lifetimes, and orbital evolution. The motivation for this work originates from the study of long-term thermospheric density changes. The publicly available two-line element catalog of currently orbiting and decayed objects is a vast resource of atmospheric density information. However, two-line element data modestly provide orbital ephemerides with an accuracy of hundreds of meters up to a few kilometers. Therefore, due to these inaccuracies, deriving an accurate estimate of ballistic coefficient requires an averaging technique using multiple estimates from multiple two-line element sets.
机译:结果表明,使用专门开发的轨道传播器,只需两行元素数据即可准确预测卫星的弹道系数。通过分析由于大气阻力引起的轨道退化,可以使用廉价的方法估算弹道系数,以确定重要的卫星特性,而无需其他卫星信息或设计模型。由于大气阻力是低地球轨道卫星的巨大干扰力,因此其估算的任何改进对于许多应用来说都是至关重要的,例如重入预报,卫星寿命和轨道演变。这项工作的动机源于对长期热圈密度变化的研究。当前正在运行和已腐烂物体的公开两线元素目录是大气密度信息的巨大资源。但是,两线元素数据适度地为轨道星历提供了数百米到几公里的精度。因此,由于这些不准确性,要得出精确的弹道系数估计值,需要使用平均技术,该技术使用来自多个两线元素集的多个估计值。

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