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A New GNSS Single-Epoch Ambiguity Resolution Method Based on Triple-Frequency Signals

机译:基于三频信号的GNSS单点模糊度求解新方法

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摘要

Fast and reliable ambiguity resolution (AR) has been a continuing challenge for real-time precise positioning based on dual-frequency Global Navigation Satellite Systems (GNSS) carrier phase observation. New GNSS systems (i.e., GPS modernization, BDS (BeiDou Navigation Satellite System), GLONASS (Global Navigation Satellite System), and Galileo) will provide multiple-frequency signals. The GNSS multiple-constellation and multiple-frequency signals are expected to bring great benefits to AR. A new GNSS single-epoch AR method for a short-range baseline based on triple-frequency signals is developed in this study. Different from most GNSS multiple-constellation AR methods, this technique takes advantage of the triple-frequency signals and robust estimation as much as possible. In this technique, the double difference (DD) AR of the triple-frequency observations is achieved in the first step. Second, the triple-frequency carrier phase observations with fixed ambiguities are used with the dual-frequency carrier phase observations to estimate their ambiguity. Finally, to realize reliable GNSS single-epoch AR, robust estimation is involved. The performance of the new technique is examined using 24 hours of GPS/GLONASS/BDS observation collected from a short-range baseline. The results show that single-epoch AR of the GNSS signals can be realized using this new technique. Moreover, the AR of BDS Geostationary Earth Orbit (GEO) satellites’ observations is easier than are those of the Medium Earth Orbit (MEO) and Inclined Geosynchronous Satellite Orbit (IGSO) satellites’ observations.
机译:对于基于双频全球导航卫星系统(GNSS)载波相位观测的实时精确定位,快速可靠的歧义分辨率(AR)一直是一个挑战。新的GNSS系统(即GPS现代化,BDS(北斗导航卫星系统),GLONASS(全球导航卫星系统)和Galileo)将提供多频信号。预计GNSS多星座和多频率信号将为AR带来巨大好处。在这项研究中,开发了一种新的基于三频信号的短距离基线的GNSS单周期AR方法。与大多数GNSS多星座AR方法不同,该技术尽可能利用三频信号和鲁棒估计。在此技术中,第一步是实现三频观测的双差(DD)AR。其次,将具有固定歧义性的三频载波相位观测值与双频载波相位观测值一起使用,以估计其歧义性。最后,为了实现可靠的GNSS单周期AR,需要进行鲁棒估计。使用从短程基线收集的24小时GPS / GLONASS / BDS观测结果检查了这项新技术的性能。结果表明,使用这种新技术可以实现GNSS信号的单周期AR。此外,BDS对地静止地球轨道(GEO)卫星的AR观测比中地球轨道(MEO)和倾斜地球同步卫星轨道(IGSO)卫星的AR观测容易。

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