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Impact of Real-Time Ionospheric Determination on Improving Precise Navigation with GALILEO and Next-Generation GPS

机译:电离层实时测定对GALILEO和下一代GPS改进精确导航的影响

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摘要

Ionospheric differential refraction at distances of tens of kilometers or more is one of the main problems affecting the capability of instantaneous carrier-phase ambiguity resolution. As a consequence, the ionosphere affects the feasibility of centimeter-accuracy navigation with dual-frequency global navigation satellite systems (GNSSs), such as present-day GPS, as well as future systems with three frequencies, such as GALILEO and modernized GPS. We have shown in previous work that a real-time toniographic model of the ionosphere, computed from GPS reference network data, is accurate enough to allow GPS real-time carrier-phase ambiguity resolution for a rover at hundreds of kilometers from the nearest reference site. In this work, we study the extension of such techniques to the improvement of instantaneous three-carrier-phase ambiguity resolution algorithms, such as three-carrier ambiguity resolution (TCAR), at medium and long distances (from tens to hundreds of kilometers) and with a minimum of geodetic computation. The datasets used were generated with a modified GNSS satellite signal generator. In particular, the success rate of instantaneous ambiguity resolution with three frequencies can be improved from about 60 percent of all attempts in previous work to about 100 percent with the proposed technique at distances of about 60 km and with low ionospheric values, and to more than 90 percent at distances of more than 100 km under solar maximum conditions.
机译:数十公里或更远距离的电离层微分折射是影响瞬时载波相位模糊度分辨能力的主要问题之一。结果,电离层影响使用双频全球导航卫星系统(GNSS)进行厘米精度导航的可行性,例如当今的GPS,以及使用三频的未来系统,例如GALILEO和现代化的GPS。我们在以前的工作中已经表明,根据GPS参考网络数据计算出的电离层实时X射线断​​层扫描模型足够精确,可以为距最近参考站点数百公里的流动站提供GPS实时载波相位模糊度解析。在这项工作中,我们研究了此类技术的扩展,以改进中距离(从几十公里到几百公里)的瞬时三载波相位模糊度解决算法,例如三载波模糊度解决方案(TCAR),以及最少的大地测量。使用的数据集是通过改进的GNSS卫星信号发生器生成的。尤其是,使用建议的技术在约60 km的距离和低电离层值的情况下,三个频率的瞬时歧义解决的成功率可以从先前工作中所有尝试的大约60%提高到大约100%。在太阳最大条件下,超过100公里的距离时有90%。

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