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Evaluation of C-Band Precise Orbit Determination of Geostationary Earth Orbit Satellites based on the Chinese Area Positioning System

机译:基于中国区域定位系统的对地静止地球轨道卫星C波段精密定轨的评估

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摘要

Geostationary Earth Orbit (GEO) satellites play a significant role in the space segment of the Chinese Area Navigation System. The C-Band transfer ranging method developed by the National Time Service Center (NTSC) has been widely used in the Chinese Area Positioning System (CAPS), with its advantages of separating satellite ranging from time synchronization and being unaffected by weather. The explicit ranging correction models for the C-Band transfer ranging method are introduced in detail in this article for the first time. Precise Orbit Determination (POD) using C-Band pseudo-range observation of GEO satellite 2010-001A in July 2012 has been conducted. The residual Root Mean Square (RMS) of each site and POD are analysed with orbit difference over overlaps of adjacent orbit arcs. Moreover, the orbit of the GEO satellite has been evaluated by Satellite Laser Ranging (SLR) data from both domestic and foreign SLR sites for the first time. The residual RMS of POD using C-Band observation is better than 0·1 m, and the orbit difference over overlaps of adjacent orbit arcs is better than 3 m. In addition, the residual RMS in line-of-sight for a SLR site in China are better than 1 m, while the RMS for the Yarragadee site in Australia is about 3·4 m. It has been shown that the GEO satellite orbit accords very well with the C-Band observation. Also, the distribution of CAPS stations affects the orbit precision. All sites in CAPS are now located in China with low and medium latitudes. The residual RMS of the SLR site in the southern hemisphere is larger than that of the site in China.
机译:地球静止轨道(GEO)卫星在中国区域导航系统的空间部分中发挥着重要作用。由国家时间服务中心(NTSC)开发的C波段传输测距方法已在中国区域定位系统(CAPS)中得到了广泛使用,其优点是可以将卫星的测距与时间同步分开,并且不受天气影响。本文首次详细介绍了C波段传输测距方法的显式测距校正模型。已于2012年7月使用C波段伪距观测GEO卫星2010-001A进行精确轨道确定(POD)。分析每个站点和POD的剩余均方根(RMS),并通过相邻轨道弧重叠处的轨道差进行分析。此外,首次通过来自国内外SLR站点的卫星激光测距(SLR)数据评估了GEO卫星的轨道。 C波段观测的POD的剩余RMS均好于0·1 m,相邻轨道弧重叠部分的轨道差均优于3 m。另外,中国单反相机站点的视线有效值均优于1 m,而澳大利亚Yarragadee站点的视线均值约为3·4 m。已经证明,GEO卫星轨道与C波段观测非常吻合。同样,CAPS站的分布也会影响轨道精度。现在,CAPS中的所有站点都位于中国中低纬度地区。南半球SLR站点的残留RMS大于中国站点的残留RMS。

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  • 来源
    《The Journal of Navigation》 |2014年第2期|343-351|共9页
  • 作者单位

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China,Graduate University of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China;

    Beijing Institute of Tracking and Telecommunication Technology, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China,Graduate University of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Key Laboratory of Precision Navigation and Timing Technology,National Time Service Center of Chinese Academy of Sciences, China;

    National Time Service Center, Chinese Academy of Sciences, China,Shanghai Astronomical Observatory of Chinese Academy of Sciences, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    C-Band transfer ranging correction model; Evaluation of precise orbit determination (POD); Chinese Area Positioning System (CAPS);

    机译:C波段传输测距校正模型;评估精确轨道确定(POD);中文区域定位系统(CAPS);
  • 入库时间 2022-08-18 01:43:11

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