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Improved GPS receiver clock modeling for kinematic orbit determination of the GRACE satellites

机译:改进的GPS接收器时钟模型,用于宽恕卫星的运动轨道测定

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Kinematic orbit positions of Low Earth Orbiting satellites (LEOs) derived from GPS observations are frequently used for single satellite gravity field recovery. Unfortunately, the precision of the kinematic coordinates is compromised by the estimation of the receiver clock synchronization offset in addition to the three kinematic coordinates for every observation epoch. In this paper the potential of receiver clock modeling to improve the precision of the kinematic orbit determination is investigated. The formation flying twin satellites of the Gravity Recovery And Climate Experiment (GRACE) mission are considered as a case study. A unique feature of these satellites is the combination of a dual frequency GPS receiver with an Ultra Stable Oscillator (USO), that provides the required frequency stability for the proposed clock modeling approach. Based on a piece-wise linear clock parametrization with 60 s intervals, a significant reduction of the high-frequency radial orbit differences with respect to a reduced-dynamic orbit is shown.
机译:源自GPS观测的低地轨道卫星(LEOS)的运动轨道位置经常用于单卫星重力场回收。遗憾的是,除了每个观察时期的三个运动坐标之外,运动时钟同步偏移还通过估计接收器时钟同步偏移来损害。本文研究了接收器时钟建模,以提高运动轨道测定精度的潜力。飞行重力恢复和气候实验(Grace)任务的地层被视为案例研究。这些卫星的独特特征是双频率GPS接收器具有超稳定振荡器(USO)的组合,为所提出的时钟建模方法提供所需的频率稳定性。基于具有60秒间隔的分型线性时钟参数化,示出了关于减少动态轨道的高频径向轨道差异的显着降低。

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