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An impact analysis of arc length on orbit prediction and clock estimation for PPP ambiguity resolution

机译:弧长对PPP歧义解析对轨道预测和时钟估计的影响分析

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摘要

Real-time precise orbit and clock products are crucial for real-time high-precision precise point positioning (PPP). The key for precise orbit prediction is to precisely determine the initial conditions (satellite position, velocity at the initial epoch) and the solar radiation pressure (SRP) parameters using an arc of known precise orbits. The optimal arc length will be investigated for precise orbit prediction, with which the high-accuracy satellite clocks can be estimated. The orbit prediction accuracies with different arc lengths and conditions over time are also investigated. The results indicate that the predicted orbit accuracy is governed by the SRP parameters. In addition, the predicted orbits and estimated clocks are evaluated quantitatively with respect to PPP solutions during in and out of eclipses seasons, based on which the optimal arc length is identified. The numerical results show that high-accuracy orbital prediction can be achieved using an arc length between 36 and 48 h and generally an arc length of 42 h is considered to be optimal. With this optimal arc length, the estimated clock accuracy is 0.048 and 0.122 ns for a prediction interval of 6 and 24 h, respectively. The average PPP ambiguity fix-rates with a prediction interval of 6 h are 80.2 and 84.7 % over an observation period of 30 min and 1 h, respectively.
机译:实时精确轨道和时钟产品对于实时高精度精确点定位(PPP)至关重要。精确轨道预测的关键是使用已知精确轨道的弧线精确确定初始条件(卫星位置,初始时期的速度)和太阳辐射压力(SRP)参数。将研究最佳弧长,以进行精确的轨道预测,从而可以估算高精度卫星时钟。还研究了随时间变化具有不同弧长和条件的轨道预测精度。结果表明,预测的轨道精度受SRP参数支配。此外,在日食季节内外期间,针对PPP解决方案对预测轨道和估计时钟进行定量评估,从而确定最佳弧长。数值结果表明,使用36至48 h之间的弧长可以实现高精度的轨道预测,一般认为42 h的弧长是最佳的。在此最佳电弧长度下,对于6和24 h的预测间隔,估计的时钟精度分别为0.048和0.122 ns。在30分钟和1小时的观察期内,预测间隔为6小时的平均PPP模糊度固定率分别为80.2%和84.7%。

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