首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Using Galileo and BDS-3 Quad-Frequency Signals for Long-Baseline Instantaneous Decimeter-Level Positioning
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Using Galileo and BDS-3 Quad-Frequency Signals for Long-Baseline Instantaneous Decimeter-Level Positioning

机译:利用伽利略和北斗三号四频信号进行长基线瞬时分米级定位

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摘要

As the signals of Galileo and the global BDS-3 navigation satellite system have been accessible, positioning users can use quad-frequency even five-frequency signals nowadays. With multifrequency signals, one can form some useful combinations to improve the positioning performance, e.g., the widely used extra-wide-lane (EWL)/wide-lane (WL) in triple-frequency cases. For quad-frequency or five-frequency cases, better positioning performance can be expected since additional frequencies are introduced. In this study, we systematically analyse the benefits of Galileo and BDS-3 quad-frequency signals on long-baseline instantaneous positioning. First, the theoretical analysis of EWL/WL ambiguity resolution (AR) and satellite-station range estimation with a single-satellite geometry-free and ionosphere-free model is studied, along with the comparison with triple-frequency cases. Second, using the quad-frequency advantages, an instantaneous decimeter-level positioning model is proposed, where the geometry-free model is adopted for the first two EWL AR and the geometry-based model is adopted for the third WL AR. In the end, the AR and positioning performance are evaluated using real long-baseline date containing Galileo and BDS-3 quad-frequency observations. The results indicate that, with quad-frequency observations, both Galileo and BDS-3 EWL/WL ambiguities can be fixed reliably with a single epoch. Contributed by the resolved EWL/WL ambiguities, instantaneous decimeter-level positioning can be obtained, with the accuracies of 0.116 m/0.126 m/0.351 m in north, east, and up directions, respectively.
机译:由于伽利略号和全球北斗三号卫星导航系统的信号已经触达,定位用户现在可以使用四频甚至五频信号。对于多频信号,可以形成一些有用的组合来提高定位性能,例如,在三频情况下广泛使用的超宽通道(EWL)/宽通道(WL)。对于四频或五频情况,由于引入了额外的频率,因此可以预期更好的定位性能。在这项研究中,我们系统地分析了伽利略和BDS-3四频信号对长基线瞬时定位的好处。首先,研究了无单星几何和无电离层模型的EWL/WL模糊分辨率(AR)和卫星站距离估计的理论分析,并与三频工况进行了比较。其次,利用四频优势,提出了一种瞬时分米级定位模型,其中前两个EWL AR采用无几何模型,第三个WL AR采用基于几何模型。最后,使用包含伽利略和北斗三号四频观测的真实长基线数据对AR和定位性能进行评估。结果表明,在四频观测中,伽利略和北斗三号EWL/WL的模糊性都可以在单个周期内可靠地固定。通过解决EWL/WL模糊问题,可以获得瞬时分米级定位,北、东、上方向的精度分别为0.116 m/0.126 m/0.351 m。

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    Southeast Univ, Sch Instrument Sci & Engn, Nanjing 210096, Peoples R China|Southeast Univ, Key Lab Microinertial Instrument & Adv Nav Techno, Nanjing 210096, Peoples R China;

    Southeast Univ, Sch Instrument Sci & Engn, Nanjing 210096, Peoples R China;

    Nanjing Compass Nav Technol Co Ltd, Nanjing 210008, Peoples R China;

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