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使用全球首款双频GPS/伽利略系统智能手机进行精确点位定位。

Precise Point Positioning Using World's First Dual-Frequency GPS/GALILEO Smartphone.

作者信息

Elmezayen Abdelsatar, El-Rabbany Ahmed

机构信息

Department of Civil Engineering, Ryerson University, Toronto M5B 2K3, Canada.

出版信息

Sensors (Basel). 2019 Jun 6;19(11):2593. doi: 10.3390/s19112593.

Abstract

The release of the world's first dual-frequency GPS/Galileo smartphone, Xiaomi mi 8, in 2018 provides an opportunity for high-precision positioning using ultra low-cost sensors. In this research, the GNSS precise point positioning (PPP) accuracy of the Xiaomi mi 8 smartphone is tested in post-processing and real-time modes. Raw dual-frequency observations are collected over two different time windows from both of the Xiaomi mi 8 smartphone and a Trimble R9 geodetic-quality GNSS receiver using a short baseline, due to the lack of a nearby reference station to the observation site. The data sets are first processed in differential modes using Trimble business center (TBC) software in order to provide the reference positioning solution for both of the geodetic receiver and the smartphone. An in-house PPP software is then used to process the collected data in both of post-processing and real-time modes. Precise ephemeris obtained from the multi-GNSS experiment (MGEX) is used for post-processing PPP, while the new NAVCAST real-time GNSS service, Germany, is used for real-time PPP. Additionally, the real-time PPP solution is assessed in both of static and kinematic modes. It is shown that the dual-frequency GNSS smartphone is capable of achieving decimeter-level positioning accuracy, in both of post-processing and real-time PPP modes, respectively. Meter-level positioning accuracy is achieved in the kinematic mode.

摘要

2018年全球首款双频GPS/伽利略智能手机小米8的发布,为使用超低成本传感器进行高精度定位提供了契机。在本研究中,对小米8智能手机的全球导航卫星系统精密单点定位(PPP)精度进行了后处理和实时模式测试。由于观测地点附近缺乏参考站,使用短基线从小米8智能手机和天宝R9大地测量级全球导航卫星系统接收机在两个不同的时间窗口收集原始双频观测数据。首先使用天宝商业中心(TBC)软件以差分模式处理数据集,以便为大地测量接收机和智能手机提供参考定位解。然后使用内部PPP软件在后处理和实时模式下处理收集到的数据。从多全球导航卫星系统实验(MGEX)获得的精密星历用于后处理PPP,而德国新的NAVCAST实时全球导航卫星系统服务用于实时PPP。此外,还在静态和动态模式下评估了实时PPP解。结果表明,双频全球导航卫星系统智能手机在后处理和实时PPP模式下分别能够实现分米级定位精度。在动态模式下实现了米级定位精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/117b/6603672/b2ec297c0027/sensors-19-02593-g011.jpg

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