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Inter-System Differencing between GPS and BDS for Medium-Baseline RTK Positioning

机译:基于基线RTK定位的GPS和BDS间的系统间差异

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摘要

An inter-system differencing model between two Global Navigation Satellite Systems (GNSS) enables only one reference satellite for all observations. If the associated differential inter-system biases (DISBs) are priori known, double-differenced (DD) ambiguities between overlapping frequencies from different GNSS constellations can also be fixed to integers. This can provide more redundancies for the observation model, and thus will be beneficial to ambiguity resolution (AR) and real-time kinematic (RTK) positioning. However, for Global Positioning System (GPS) and the regional BeiDou Navigation Satellite System (BDS-2), there are no overlapping frequencies. Tight combination of GPS and BDS needs to process not only the DISBs but also the single-difference ambiguity of the reference satellite, which is caused by the influence of different frequencies. In this paper, we propose a tightly combined dual-frequency GPS and BDS RTK positioning model for medium baselines with real-time estimation of DISBs. The stability of the pseudorange and phase DISBs is analyzed firstly using several baselines with the same or different receiver types. The dual-frequency ionosphere-free model with parameterization of GPS-BDS DISBs is proposed, where the single-difference ambiguity is estimated jointly with the phase DISB parameter from epoch to epoch. The performance of combined GPS and BDS RTK positioning for medium baselines is evaluated with simulated obstructed environments. Experimental results show that with the inter-system differencing model, the accuracy and reliability of RTK positioning can be effectively improved, especially for the obstructed environments with a small number of satellites available.
机译:两个全局导航卫星系统(GNSS)之间的系统间差异模型仅为所有观察结果提供一个参考卫星。如果已知相关的差分间偏差(DISB)已知,则来自不同GNSS星座的重叠频率之间的双差异(DD)歧义也可以固定为整数。这可以为观察模型提供更多的冗余,因此有利于模糊的分辨率(AR)和实时运动(RTK)定位。但是,对于全球定位系统(GPS)和区域北斗导航卫星系统(BDS-2),没有重叠频率。 GPS和BDS的紧密组合需要不仅处理DISCB,还需要处理参考卫星的单差模糊,这是由不同频率的影响引起的。在本文中,我们提出了一种紧密组合的双频GPS和BDS RTK定位模型,用于媒体基线的实时估计麻差。首先使用具有相同或不同接收器类型的若干基线来分析伪静脉和相位的稳定性。提出了具有GPS-BDS的参数化的双频电离层的模型,其中单差模糊是与从时期到时期的相位差异估计。通过模拟阻塞环境评估组合GPS和BDS RTK定位的表现对媒体基线的性能。实验结果表明,通过系统间差分模型,可以有效地改善RTK定位的准确性和可靠性,特别是对于具有少量卫星的受阻环境。

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