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基于SLR精密轨道的天文定位精度分析
引用本文:孙明国,刘承志,范存波,赵罡,李振伟,梁智鹏.基于SLR精密轨道的天文定位精度分析[J].天文学报,2012,53(2):153-160.
作者姓名:孙明国  刘承志  范存波  赵罡  李振伟  梁智鹏
作者单位:1. 中国科学院国家天文台长春人造卫星观测站 长春130117
2. 中国科学院国家天文台长春人造卫星观测站 长春130117;中国科学院上海天文台 上海200030;中国科学院研究生院 北京100049
摘    要:利用全球卫星激光测距服务系统(ILRS,International Laser Ranging Service)标准点资料对Ajisai卫星进行精密定轨,残差均方根(RMS)优于3 cm,得到该星的精密轨道.进而对长春站40 cm空间碎片光电望远镜获得的Ajisai卫星的天文定位资料进行精度分析,外符合精度约3″左右.单独利用天文定位数据进行轨道改进,内符合精度优于3″.改进轨道的x、y、z坐标3分量在观测数据覆盖范围内的精度在100 m之内.同样地对Jason-1卫星作数据分析,结果和Ajisai卫星精度相当.分析各个弧段的精度变化,发现定标星个数减少,会导致天文定位精度下降.据此提出可以把最少定标星比例作为评定数据质量的参考指标之一.

关 键 词:航天器  天体力学:轨道计算与定轨  方法:数据分析

Analysis on the Accuracy of Celestial Positioning Based on the SLR Precise Orbit
SUN Ming-guo , LIU Cheng-zhi , FAN Cun-bo , ZHAO Gang , LI Zhen-wei , LIANG Zhi-peng.Analysis on the Accuracy of Celestial Positioning Based on the SLR Precise Orbit[J].Acta Astronomica Sinica,2012,53(2):153-160.
Authors:SUN Ming-guo  LIU Cheng-zhi  FAN Cun-bo  ZHAO Gang  LI Zhen-wei  LIANG Zhi-peng
Institution:1 (1 Changchun Observatory Of National Astronomical Observatories,Chinese Academy of Sciences, Changchun 130117) (2 Shanghai Observatory,Chinese Academy of Sciences,Shanghai 200030) (3 Graduate School of Chinese Academy of Sciences,Beijing 100049)
Abstract:The precise orbit of the satellite Ajisai is derived from the normal point data of the satellite’s laser ranging obtained from the International Laser Ranging Service(ILRS) with a RMS precision better than 3 centimeters.The accuracy of the celestial positioning data is analyzed based on the precise orbit,resulting an external accuracy of 3".The celestial positioning data is obtained by the 40 cm optical electric telescope in Changchun observatory.The internal accuracy estimated by the orbit determination solely using the celestial positioning data is better than 3".The accuracy of above orbit is better than 100 m in the J2000.0 coordinate within the observation pass.The data analysis on Jason-1 by the same method yields a similar result as Ajisai.The analysis on the accuracy shows that less reference stars lead to worse celestial positioning accuracy.It is proposed that the proportion of observations with least reference stars can be one of the quality criteria.
Keywords:space vehicles  celestial mechanics:determination of orbit  methods:data analysis
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