期刊文献+

星蚀期北斗卫星轨道性能分析——SLR检核结果 被引量:17

Performance Analysis of BDS Satellite Orbits during Eclipse Periods:Results of Satellite Laser Ranging Validation
下载PDF
导出
摘要 星蚀期北斗卫星的轨道性能是北斗卫星导航系统性能分析的重要部分。了解北斗卫星导航系统星历中星蚀期轨道的精度,不仅可为系统服务性能评估提供支持,还有助于了解星蚀期精密定轨中相关模型可能存在的问题,进而为精密定轨函数模型改进提供参考。本文基于2014年1月至2015年7月的卫星激光测距资料,重点分析了星蚀期对北斗不同类型卫星轨道的影响,同时也对北斗广播星历和精密星历中整体轨道径向精度进行检核。结果表明:星蚀期内(尤其是偏航机动期间),IGSO/MEO卫星的广播星历和精密星历轨道均存在明显的精度下降;广播星历轨道径向误差达1.5~2.0m,精密星历轨道径向误差超过10.0cm。但仅从轨道径向残差序列中难以发现星蚀期对GEO卫星轨道是否有显著影响。非星蚀期间,IGSO/MEO卫星和GEO卫星的广播星历轨道径向精度分别优于0.5 m和0.9 m。IGSO/MEO卫星的精密星历轨道径向精度优于10.0cm,GEO卫星的轨道径向精度约50.0cm,且存在40.0cm左右的系统性偏差。 The performance of BeiDou satellite orbits during eclipse periods is an important part of the performance analysis of BeiDou Navigation Satellite System (BDS). Accuracy evaluation of satellite orbits in ephemeris of BDS during eclipse periods can provide support for the service performance assessment. It also helps to find possible deficiencies in the orbit modeling during eclipse periods, which may further contribute to the improvements of functional models for precise orbit determination. The effects of eclipse periods on the orbits of the three types of satellites of BDS are analyzed with the satellite laser ranging (SLR) observations ranging from January 2014 to July 2015. At the same time, the orbit radial accuracy of BDS broadcast and precise ephemeris are validated. The results show that, obvious orbit accuracy decrease can be observed in both broadcast and precise ephemeris for IGSO/MEO satellites during eclipse periods (especially the yaw-maneuver periods). And orbit radial errors of IGSQ/MEQ satellites in broadcast ephemeris reach 1.5--2.0 m, and exceed ]0.0 cm for that in precise ephemeris. Performance decrease of the GEO satellite orbit during eclipse arcs can hardly be revealed by the orbit radial residual series. During non-eclipse periods, radial accuracy of IGSO/MEO and GEO satellite orbits in broadcast ephemeris are better than 0.5 m and 0.9 m respectively. The radial accuracy of IGSO/MEO satellite orbits in precise ephemeris are better than 10.0 cm and that of the GEO satellite is about 50.0 cm with a systematic bias of 40.0 cm around.
出处 《测绘学报》 EI CSCD 北大核心 2016年第6期639-645,共7页 Acta Geodaetica et Cartographica Sinica
基金 国家自然科学基金(41020144004A 41374019 41474015) 国家863计划(2013AA122501)~~
关键词 北斗卫星导航系统 星蚀期 轨道性能 卫星激光测距 偏航机动 BeiDou Navigation Satellite System (BDS) eclipse periods orbit performance satellite laserranging (SLR) yaw-maneuver
  • 相关文献

参考文献5

二级参考文献48

  • 1隋立芬,刘雁雨,王威.自适应序贯平差及其应用[J].武汉大学学报(信息科学版),2007,32(1):51-54. 被引量:12
  • 2李济生.人造卫星精密轨道确定[M].北京:解放军出版社,1995.3-13.
  • 3Weber R, Springer T. The International GLONASS Experiment: Products, Progress and Prospects. Journal of Geodesy,2001,75: 559-568.
  • 4Appleby G. Comparison of Precise SLR Orbits of the GLONASS Satellites with Microwave Orbits. In:Slater J A, Noll C E, Gowey K T, eds. International GLONASS Experiment IGEX-98, Workshop Proc. ,Nashville:TN. IGS Central Bureau, 2000. 247-257.
  • 5Ineichen D, Rothacher M, Springer T, et al. Results of CODE as an Analysis Center of the IGEX-98 Campaign. In: Slater J A, Noll C E, Gowey K T, eds.International GLONASS Experiment IGEX-98, Workshop Proc., Nashville: TN. IGS Central Bureau,2000. 157-168.
  • 6Richard J, Eanes R. GLONASS Orbit Determination at the Center for Space Research. In: Slater J A, Noll C E, Gowey K T, eds. International GLONASS Experiment IGEX-98, Workshop Proc. , Nashville: TN.IGS Central Bureau,2000. 209-218.
  • 7Glotov V. GLONASS Precise Orbits as a Result of the IGEX-98 Laser Tracking Campaign. In: Slater J A,Noll C E, Gowey K T, eds. International GLONASS Experiment IGEX-98, Workshop Proc. , Nashville:TN. IGS Central Bureau,2000. 219-226.
  • 8Govind R, Dawson J, Luton G. SLR GLONASS Orbit Determination. In: Slater J A, Noll C E, Gowey K T, eds. International GLONASS Experiment IGEX-98, Workshop Proc. , Nashville:TN. IGS Central Bureau, 2000. 227-232.
  • 9Barlier F, Berger C, Exertier P, et al, Laser-based Validation of GLONASS Orbits by Short - Arc Technique, Journal of Geodesy,2001,75:600-612.
  • 10McCarthy D D. IERS Conventions, IERS Technical Note 21, Observatoire de Paris, 1996.

共引文献449

同被引文献106

引证文献17

二级引证文献324

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部