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GPS-Based Precise Relative Orbit Determination for LEO Satellites Using GPS Double - Differenced Carrier Phases

机译:基于GPS的精确相对轨道使用GPS双差异载体阶段对Leo卫星的精确相对轨道测定

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The GPS-based precise relative orbit determination for Low-Earth Orbiting (LEO) satellites using double-differenced (DD) carrier phases is very important for formation flying missions to satisfy the different relative orbit accuracy requirements. Current methods need either reference stations or reference orbits, which are not convenient, particularly for real-time data processing. Based on this motivation, we investigated the GPS-based precise relative orbit determination for LEO satellites without any reference stations or reference orbits. Additionally, ambiguity resolution is also important for the precise relative orbit determination by using GPS carrier phase observations. Therefore, we also studied the impacts of ambiguity resolution on the precise relative orbit determination. A new approach for ambiguity resolution, which is based on the difference between the estimated and adjusted DD ionosphere free phase biases based on the resolved wide-lane and narrow-lane integers, is presented and implemented in the GPS data processing. Lastly, the effects of the arc length on the relative orbit determination were also investigated. For our study, we used the observations of the GRACE (Gravity Recovery and Climate Experiment) twin satellites, which are equipped with a very precise K-band ranging (KBR) system. The KBR data can be used for assessing the relative orbit accuracy. To determine orbits, the orbits are not only produced, but also assessed. The orbit accuracy is assessed using a number of tests, including analysis of the orbit fits, orbit comparisons, Satellite Laser Ranging (SLR) and KBR residuals.
机译:使用双差异(DD)载波的低地轨道(LEO)卫星的基于GPS的精确相对轨道测定对于形成飞行任务非常重要,以满足不同的相对轨道精度要求。当前方法需要参考站或参考轨道,这不方便,特别是对于实时数据处理。基于这种动机,我们研究了Leo卫星的基于GPS的精确相对轨道,而没有任何参考站或参考轨道。另外,模糊分辨率对于通过使用GPS载波相位观察来确定精确的相对轨道测定也很重要。因此,我们还研究了模糊分辨率对精确相对轨道测定的影响。在GPS数据处理中呈现并实现了基于基于所解析的宽通道和窄通道整数的估计和调整的DD电离层自由相偏置的差异分辨率的新方法。最后,还研究了弧长对相对轨道测定的影响。对于我们的研究,我们使用了宽限(重力恢复和气候实验)双卫星的观察,该卫星配备了非常精确的K频段(KBR)系统。 KBR数据可用于评估相对轨道精度。为了确定轨道,轨道不仅产生,还要评估。使用许多测试评估轨道精度,包括对轨道拟合,轨道比较,卫星激光测距(SLR)和KBR残留的分析。

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