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GPS plus Galileo plus BeiDou precise point positioning with triple-frequency ambiguity resolution

机译:GPS Plus Galileo Plus Beidou精确点定位,具有三频模糊性分辨率

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Along with the rapid development of GNSS, not only BeiDou, but also Galileo, and the newly launched GPS satellites can provide signals on three frequencies at present. To fully take advantage of the multi-frequency multi-system GNSS observations on precise point positioning (PPP) technology, this study aims to implement the triple-frequency ambiguity resolution (AR) for GPS, Galileo, and BeiDou-2 combined PPP using the raw observation model. The processing of inter-frequency clock bias (IFCB) estimation and correction in the context of triple-frequency PPP AR has been addressed, with which the triple-frequency uncalibrated phase delay (UPD) estimation is realized for real GPS observations for the first time. In addition, the GPS extra-wide-line UPD quality is significantly improved with the IFCB correction. Because of not being contaminated by the IFCB, the raw UPD estimation method is directly employed for Galileo which currently has 24 satellites in operation. An interesting phenomenon is found that all Galileo satellites except E24 have a zero extra-wide-lane UPD value. With the multi-GNSS observations provided by MGEX covering 15 days, the positioning solutions of GPS + Galileo + BeiDou triple-frequency PPP AR have been conducted and analyzed. The triple-frequency kinematic GNSS PPP AR can achieve an averaged 3D positioning error of 2.2 cm, and an averaged convergence time of 10.8 min. The average convergence time can be reduced by triple-frequency GNSS PPP AR by 15.6% compared with dual-frequency GNSS PPP AR, respectively. However, the additional third frequency has only a marginal contribution to positioning accuracy after convergence.
机译:随着GNSS的快速发展,不仅是北投而且还有伽利略,而新推出的GPS卫星目前可以为三个频率提供信号。为了充分利用关于精确点定位(PPP)技术的多频多系统GNSS观察,本研究旨在利用GPS,Galileo和Beidou-2组合PPP的三频模糊性分辨率(AR)。使用原始观察模型。已经解决了三频PPP AR的上下文中的频率间时钟偏置(IFCB)估计和校正的处理,其中第一次实现了三频未校准相延迟(UPD)估计的真实GPS观察。此外,使用IFCB校正,GPS超宽线更新质量显着提高。由于没有被IFCB污染,因此对伽利略直接采用RAW UPM估计方法,该伽利略目前在操作中具有24个卫星。发现一个有趣的现象,除了E24之外的所有伽利略卫星都具有零超级通道更新值。利用MGEX覆盖15天提供的多GNSS观察,已经进行了并分析了GPS + Galileo + Beidou三频PPP AR的定位解决方案。三频运动GNSS PPP AR可以达到2.2cm的平均3D定位误差,平均收敛时间为10.8分钟。与双频率GNSS PPP AR相比,平均收敛时间可以通过三频GNSS PPP AR减少15.6%。然而,额外的第三频率仅对收敛后的定位精度具有边际贡献。

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