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Single-Baseline RTK Positioning Using Dual-Frequency GNSS Receivers Inside Smartphones

机译:使用智能手机内部的双频GNSS接收器进行单基线RTK定位

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摘要

Global Navigation Satellite System (GNSS) positioning is currently a common practice thanks to the development of mobile devices such as smartphones and tablets. The possibility to obtain raw GNSS measurements, such as pseudoranges and carrier-phase, from these instruments has opened new windows towards precise positioning using smart devices. This work aims to demonstrate the positioning performances in the case of a typical single-base Real-Time Kinematic (RTK) positioning while considering two different kinds of multi-frequency and multi-constellation master stations: a typical geodetic receiver and a smartphone device. The results have shown impressive performances in terms of precision in both cases: with a geodetic receiver as the master station, the reachable precisions are several mm for all 3D components while if a smartphone is used as the master station, the best results can be obtained considering the GPS+Galileo constellations, with a precision of about 2 cm both for 2D and Up components in the case of L1+L5 frequencies, or 3 cm for 2D components and 2 cm for the Up, in the case of an L1 frequency. Moreover, it has been demonstrated that it is not feasible to reach the phase ambiguities fixing: despite this, the precisions are still good and also the obtained 3D accuracies of positioning solutions are less than 1 m. So, it is possible to affirm that these results are very promising in the direction of cooperative positioning using smartphone devices.
机译:由于智能手机和平板电脑等移动设备的发展,全球导航卫星系统(GNSS)定位目前是一种普遍的做法。从这些仪器获得原始GNSS测量值(例如伪距和载波相位)的可能性为使用智能设备进行精确定位打开了新的窗口。这项工作旨在展示典型的单基实时运动(RTK)定位情况下的定位性能,同时考虑两种不同类型的多频和多星座主站:典型的大地测量接收机和智能手机设备。在两种情况下,结果均显示出令人印象深刻的精度:以大地测量接收机作为主站,所有3D组件的可达精度均为毫米,而如果将智能手机用作主站,则可以获得最佳结果考虑到GPS + Galileo星座,对于L1 + L5频率,2D和Up分量的精度均为2 cm;对于L1频率,2D分量为3 cm,Up精度为2 cm。此外,已经证明,达到相位模糊度固定是不可行的:尽管如此,精度仍然很高,并且所获得的定位解的3D精度小于1 m。因此,可以肯定这些结果在使用智能手机设备进行协作定位的方向上非常有希望。

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