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伽利略高精度服务(HAS)测试信号评估及初步定位性能

Assessment of Galileo High Accuracy Service (HAS) test signals and preliminary positioning performance.

作者信息

Naciri Nacer, Yi Ding, Bisnath Sunil, de Blas F Javier, Capua Roberto

机构信息

Department of Earth and Space Science and Engineering, York University, Toronto, ON M3J 1P3 Canada.

European Union Agency for the Space Programme, Prague, Czech Republic.

出版信息

GPS Solut. 2023;27(2):73. doi: 10.1007/s10291-023-01410-y. Epub 2023 Feb 15.

Abstract

The Galileo High Accuracy Service (HAS) is a GNSS augmentation that provides precise satellite corrections to users worldwide for free directly through Galileo's E6 signal. The HAS service provides free PPP corrections from the Galileo constellation and the Internet, with targeted real-time 95% positioning performance of better than 20 cm horizontal and 40 cm vertical error after 5 min of convergence time globally and shorter in Europe. The HAS initial service, under validation at the time of writing, provides these capabilities with a reduced performance (based on the current Galileo stations network). Live HAS test signals broadcasted from the Galileo satellites during summer 2022 have been decoded and analyzed. Corrections include Galileo and GPS orbit, clock, and code bias corrections, with SISRE of 10.6 cm and 11.8 cm for Galileo and GPS, respectively. Code bias corrections showed good performance as well, with rms of 0.28 ns, 0.26 ns, and 0.22 ns for Galileo C1C-C5Q, C1C-C7Q, and C1C-C6C, respectively, and 0.20 ns for GPS C1C-C2L. Float PPP positioning performance results show that the combined Galileo and GPS solution can already achieve the HAS full service accuracy performance target and is close in terms of convergence time, with 95% rms of 13.1 cm and 18.6 cm horizontally and vertically, respectively, in kinematic mode, and with a 95% convergence time of 7.5 min. The latter is expected to be improved with the inclusion of satellite phase bias and local atmospheric corrections. With these early Galileo HAS test signals, this preliminary analysis indicates that the HAS full service targets are attainable. Finally, a correction latency analysis is performed, showing that even with latency of up to 60 s, positioning can remain within the targeted HAS accuracy performance.

摘要

伽利略高精度服务(HAS)是一种全球导航卫星系统增强服务,它通过伽利略的E6信号直接向全球用户免费提供精确的卫星校正。HAS服务通过伽利略星座和互联网提供免费的精密单点定位(PPP)校正,目标是在全球收敛时间5分钟后实现实时95%定位性能,水平误差优于20厘米,垂直误差优于40厘米,在欧洲收敛时间更短。在撰写本文时正在进行验证的HAS初始服务以降低的性能(基于当前伽利略地面站网络)提供这些功能。2022年夏季从伽利略卫星广播的实时HAS测试信号已被解码和分析。校正包括伽利略和GPS轨道、时钟和码偏差校正,伽利略和GPS的空间信号误差(SISRE)分别为10.6厘米和11.8厘米。码偏差校正也表现出良好的性能,伽利略C1C - C5Q、C1C - C7Q和C1C - C6C的均方根(rms)分别为0.28纳秒、0.26纳秒和0.22纳秒,GPS C1C - C2L的均方根为0.20纳秒。浮点PPP定位性能结果表明,伽利略和GPS的组合解决方案已经可以达到HAS全面服务的精度性能目标,并且在收敛时间方面相近,在动态模式下,水平和垂直方向的95%均方根分别为13.1厘米和18.6厘米,95%收敛时间为7.5分钟。预计通过纳入卫星相位偏差和局部大气校正,后者将得到改善。通过这些早期的伽利略HAS测试信号,初步分析表明HAS全面服务目标是可以实现的。最后,进行了校正延迟分析,结果表明即使延迟高达60秒,定位仍可保持在HAS目标精度性能范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ccf/9931823/568c1ae26097/10291_2023_1410_Fig1_HTML.jpg

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