测绘学报(英文版) · 2019年第3期68-78,共11页

Results and Analyses of BDS Precise Orbit Determination with the Enhancement of Fengyun-3C

作者:Tian ZENG,Lifen SUI,Xiaolin JIA,Guofeng JI,Qinghua ZHANG

摘要:Global navigation satellite system occultation sounder (GNOS) Fengyun-3C was launched successfully on September 23, 2013, which carried GPS/BDS receiver for the first time. This provides the convenience to study the enhancement results of low earth orbiter satellite (LEO) to BDS precise orbit determination (POD). First the data characteristic and code observation noise of GNOS are analyzed. Then the enhancement experiments in the case of global and regional ground observation stations layout are processed with four POD schemes: BDS single system, GPS/BDS double system, BDS single system with GNOS observations, GPS/BDS double system with GNOS observations. The precision of BDS orbits and clocks are compared via overlapping arcs. Results show that in the case of global station layout the along directional precision of GEO satellite has the biggest improvement, with the improvement percentage 60%. Then the precision of cross direction and the along direction of remaining satellites shows the second biggest improvement. The orbit precision of BDS-only POD in part of observation arcs some satellite even suffers a slight decline. The root mean square (RMS) of overlapping clock difference of visible arcs in GPS/BDS POD experiments improves by 0.1 ns level. As to the experiments of regional station layout with 7 ground stations, the orbit and clock overlapping precision and orbit predicting precision are analyzed. Results show that the predicting precision of BDS GEO satellites in the along direction improves by 85%. The remaining also has a substantial improvement, with the average percentage 21.7%. RMS of overlapping clock difference of visible arcs improves by 0.5 ns level.

发文机构:Information Engineering University State Key Laboratory of Geo-Information Engineering Xi’an Research Institute of Surveying and Mapping Chang’an University PLA University of Science & Technology

关键词:BEIDOUsatellitenavigationsystemLEOPRECISEORBITdeterminationGEOORBITENHANCEMENT

分类号: P[天文地球]

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