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Single-Station Orbit Determination with Astrometric Positioning and SLR Techniques

机译:借助星象定位和SLR技术确定单站轨道

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The principle of single-station orbit determination using astrometric positioning and SLR techniques is to add a laser ranging unit onto the optoelectronic telescope system, so as to conduct laser ranging and astrometric positioning angle measurement at the same time. By melting and processing all the data together, the new technique will achieve single-station orbit determination of the objects. In this paper, the actual measurement data of satellite Ajisai is analyzed for its single-station single-lap and multi-lap orbit determination. However, due to the limited amount of actual measurement data, objects of three types of orbit altitude have to be simulated and the single-station orbit determination analysis is just based on them in order to make the conclusion more universal. After studying the actual and simulated data, it turns out that for single-station single-lap orbit determination, the ranging measurement data (measurement duration longer than 4 min) will improve the orbit determination accuracy from several kilometers to tens of meters and the 24-h prediction accuracy from thousands of kilometers to several kilometers.
机译:利用天文定位和SLR技术确定单站轨道的原理是在光电望远镜系统上增加一个激光测距单元,以便同时进行激光测距和天文定位角的测量。通过融合和处理所有数据,新技术将实现对物体的单站轨道确定。本文分析了卫星Ajisai的实际测量数据,以确定其单站单圈和多圈轨道。然而,由于实际测量数据量有限,必须对三种类型的轨道高度进行模拟,而单站轨道确定分析只是基于它们,以使结论更加通用。对实际和模拟数据进行研究后,发现对于单站单圈轨道确定,测距测量数据(测量持续时间超过4分钟)会将轨道确定精度从几公里提高到几十米,而24 -h预测精度从数千公里到几公里。

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