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Orbit Determination Accuracy Improvement for Geostationary Satellite with Single Station Antenna Tracking Data

机译:利用单站天线跟踪数据提高对地静止卫星定轨精度

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An operational orbit determination (OD) and prediction system for the geostationary Communication, Ocean, and Meteorological Satellite (COMS) mission requires accurate satellite positioning knowledge to accomplish image navigation registration on the ground. Ranging and tracking data from a single ground station is used for COMS OD in normal operation. However, the orbital longitude of the COMS is so close to that of satellite tracking sites that geometric singularity affects observability. A method to solve the azimuth bias of a single station in singularity is to periodically apply an estimated azimuth bias using the ranging and tracking data of two stations. Velocity increments of a wheel off-loading maneuver which is performed twice a day are fixed by planned values without considering maneuver efficiency during OD. Using only single-station data with the correction of the azimuth bias, OD can achieve three-sigma position accuracy on the order of 1.5 km root-sum-square.
机译:对地静止通信,海洋和气象卫星(COMS)任务的运行轨道确定(OD)和预测系统需要准确的卫星定位知识才能在地面上完成图像导航配准。在正常操作中,来自单个地面站的测距和跟踪数据用于COMS OD。但是,COMS的轨道经度非常接近卫星跟踪站点的经度,以至于几何奇异性会影响可观测性。解决单个站的奇异性的方法是使用两个站的测距和跟踪数据定期应用估计的方位偏差。每天两次执行的车轮卸载操作的速度增量由计划值固定,而不考虑OD期间的操作效率。仅使用单站数据并校正了方位角偏差,OD就能获得1.5 km平方根和平方根的三西格玛位置精度。

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