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Real-Time GPS/Galileo Precise Point Positioning Using NAVCAST Real-Time Corrections

机译:使用NAVCAST实时校正的实时GPS /伽利略精确点定位

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Real-time precise point positioning (PPP) is possible through the use of real-time precise satellite orbit and clock corrections, which are available through a number of organizations including the International GNSS Service (IGS) real-time service (IGS-RTS). Unfortunately, IGS-RTS is only available for the GPS and GLONASS constellations. In 2018, a new real-time service, NAVCAST, which provides real-time precise orbit and clock corrections for the GPS and Galileo constellations , was launched. In this research, the potential performance of real-time PPP which makes use of NAVCAST real-time corrections is analyzed using various static and kinematic datasets. In the static dataset, 24 hours of observations from eight IGS stations in Canada over three different days were utilized. The static results show that the contribution of Galileo satellites can improve the positioning accuracy, with 30%, 34%, and 31% in east, north, and up directions compared to the GPS-only counterparts. In addition, centimeter-level positioning accuracy in the horizontal direction and decimeter-level positioning accuracy in the vertical direction can be achieved by adding Galileo observations. In the kinematic dataset, a real vehicular test was conducted in urban and suburban combined areas. The real-time kinematic GPS/Galileo PPP solutions demonstrate an improvement of about 53%, 45%, and 70% in east, north, and up directions compared to the GPS-only counterparts. It is shown that the real-time GPS/Galileo PPP can achieve a sub-decimeter horizontal positioning accuracy and about meter-level vertical positioning accuracy through the use of NAVCAST real-time corrections.
机译:通过使用实时精确的卫星轨道和时钟校正,可以进行实时精确的点定位(PPP),包括国际GNSS服务(IGS)实时服务(IGS-RTS)在内的许多组织都可以使用它们。不幸的是,IGS-RTS仅适用于GPS和GLONASS星座。 2018年,推出了一项新的实时服务NAVCAST,可为GPS和Galileo星座提供实时的精确轨道和时钟校正。在这项研究中,使用各种静态和运动数据集分析了利用NAVCAST实时校正的实时PPP的潜在性能。在静态数据集中,利用了加拿大的8个IGS站在3天的不同时间内进行的24小时观测。静态结果表明,与仅使用GPS的同类卫星相比,伽利略卫星的贡献可以提高定位精度,在东,北和上方向分别达到30%,34%和31%。另外,通过添加伽利略观测值,可以获得水平方向的厘米级定位精度和垂直方向的分米级定位精度。在运动学数据集中,在城市和郊区的结合地区进行了实际的车辆测试。与仅GPS的同类产品相比,实时运动学GPS / Galileo PPP解决方案在东,北和上方向显示出约53%,45%和70%的改善。结果表明,通过使用NAVCAST实时校正,实时GPS / Galileo PPP可以达到亚分米的水平定位精度和大约米级的垂直定位精度。

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