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An assessment of wide-lane ambiguity resolution methods for multi-frequency multi-GNSS precise point positioning

机译:多频多GNSS精确点定位宽车道模糊分辨方法的评估

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摘要

We assess the time-to-first-fix (TTFF) and the ambiguity fixing rate of two PPP wide-lane ambiguity resolution (WL-AR) methods, namely the geometry-based and ionospheric-free (GB-IF) method, and the geometry-free and ionospheric-free (GF-IF) method. First, an optimal GF-IF WL linear combination is selected based on the ratio between the code and carrier phase measurement noise (). Then, the relation between ambiguity variance and satellite geometry in the GB-IF WL-AR is investigated. Both simulated and real data from 31 GNSS stations over 37 consecutive days in 2017 were used. Numerical results show that the GF-IF WL-AR method has shorter TTFF and higher ambiguity fixing rate compared to the GB-IF method when . However, when , the GB-IF method outperforms the GF-IF method. Depending on RT values used, 2-10 min would be required to resolve the WL ambiguities when using GNSS measurements with one second sampling rate.
机译:我们评估了第一个固定(TTFF)和两种PPP宽车道模糊分辨率(WL-AR)方法的模糊定影率,即几何基于和离子层(GB-IF)方法,以及无几何和电离层(GF-IF)方法。首先,基于代码和载波相位测量噪声()之间的比率来选择最佳GF-IF WL线性组合。然后,研究了GB-IF WL-AR中模糊性方差与卫星几何形状的关系。使用2017年连续31天的31个GNSS站的模拟和实际数据。数值结果表明,与GB-IF法相比,GF-IF WL-AR方法具有更短的TTFF和更高的模糊定影率。但是,何时,GB-IF方法始于GF-IF方法。根据使用的RT值,在使用一种第二种采样率时,将在使用GNSS测量时解决2-10分钟来解决WL模糊。

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