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Astrometric positioning and orbit determination of geostationary satellites

机译:对地静止卫星的星象定位和轨道确定

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摘要

In the project titled "Astrometric Positioning of Geostationary Satellite" (PASAGE), carried out by the Real Instituto y Observatorio de la Armada (ROA), optical observation techniques were developed to allow satellites to be located in the geostationary ring with angular accuracies of up to a few tenths of an arcsec. These techniques do not necessarily require the use of large telescopes or especially dark areas, and furthermore, because optical observation is a passive method, they could be directly applicable to the detection and monitoring of passive objects such as space debris in the geostationary ring. By using single-station angular observations, geostationary satellite orbits with positional uncertainties below 350 m (2 sigma) were reconstructed using the Orbit Determination Tool Kit software, by Analytical Graphics, Inc. This software is used in collaboration with the Spanish Instituto Nacional de Tecnica Aeroespacial. Orbit determination can be improved by taking into consideration the data from other stations, such as angular observations alone or together with ranging measurements to the satellite. Tests were carried out combining angular observations with the ranging measurements obtained from the Two-Way Satellite Time and Frequency Transfer technique that is used by ROA's Time Section to carry out time transfer with other laboratories. Results show a reduction of the 2 sigma uncertainty to less than 100 m.
机译:在由阿尔玛达皇家天文台(ROA)进行的题为“对地静止卫星的星体定位”(PASAGE)的项目中,开发了光学观测技术,以使卫星可以定位在对地静止环中,且角精度达到十分之一弧秒。这些技术不一定需要使用大型望远镜或特别是暗区,此外,由于光学观察是一种被动方法,因此它们可以直接应用于检测和监视静止对象,例如对地静止环中的空间碎片。通过使用单站角观测,使用Analytical Graphics,Inc.的“轨道确定工具套件”软件重建了位置不确定度低于350 m(2 sigma)的对地静止卫星轨道。该软件与西班牙国立科学研究院合作使用航空航天可以通过考虑来自其他台站的数据来改进轨道确定,例如单独进行角度观测或与对卫星进行测距一起。测试是结合角度观测和从双向卫星时间和频率转换技术获得的测距测量结果而进行的,ROA的时间部门使用该技术与其他实验室进行时间转换。结果表明,2 sigma不确定度降低到小于100 m。

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