Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction

Abstract Decimeter-level service is provided by the BeiDou satellite navigation system wide area differential service (BDS WADS) for users who collect carrier phase measurements. However, the fluctuations in Geostationary Earth Orbit (GEO) satellite orbit errors reduce the spatial correlation of orb...

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Main Authors: Binghao Wang, Jianhua Zhou, Bin Wang, Dianwei Cong, Hui Zhang
Format: Article
Language:English
Published: SpringerOpen 2020-06-01
Series:Satellite Navigation
Subjects:
Online Access:https://doi.org/10.1186/s43020-020-00020-0
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spelling doaj-af0a992519334c8ab50301afd47f57a32021-06-13T11:29:05ZengSpringerOpenSatellite Navigation2662-13632020-06-01111810.1186/s43020-020-00020-0Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correctionBinghao Wang0Jianhua Zhou1Bin Wang2Dianwei Cong3Hui Zhang4Beijing Navigation CenterBeijing Navigation CenterShanghai Astronomical Observatory, Chinese Academy of SciencesInformation Engineering UniversityNational Defense University Joint Operations CollegeAbstract Decimeter-level service is provided by the BeiDou satellite navigation system wide area differential service (BDS WADS) for users who collect carrier phase measurements. However, the fluctuations in Geostationary Earth Orbit (GEO) satellite orbit errors reduce the spatial correlation of orbit errors. These fluctuations not only decrease the accuracy and stability of zone correction service provided by BDS WADS, but also shorten its effective range. In this paper, we proposed an algorithm to weaken the influence of GEO satellite orbit error fluctuations and verified the method using data from eight sparsely distributed zones. The results show that orbit errors can be stabilized using orbit fluctuation corrections, and the positioning precision and stability of the BDS WADS can be improved simultaneously. Under normal circumstances, the horizontal and vertical positioning accuracy of users within 1000 km from the center of the zone can reach 0.19 m and 0.34 m. Furthermore, the effective range is increased. The positioning performance within 1800 km could reach 0.24 m and 0.38 m for the horizontal and vertical components, respectively.https://doi.org/10.1186/s43020-020-00020-0Wide area differential serviceDecimeter-level serviceZone correctionGEO orbit errorEffective range
collection DOAJ
language English
format Article
sources DOAJ
author Binghao Wang
Jianhua Zhou
Bin Wang
Dianwei Cong
Hui Zhang
spellingShingle Binghao Wang
Jianhua Zhou
Bin Wang
Dianwei Cong
Hui Zhang
Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction
Satellite Navigation
Wide area differential service
Decimeter-level service
Zone correction
GEO orbit error
Effective range
author_facet Binghao Wang
Jianhua Zhou
Bin Wang
Dianwei Cong
Hui Zhang
author_sort Binghao Wang
title Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction
title_short Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction
title_full Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction
title_fullStr Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction
title_full_unstemmed Influence of the GEO satellite orbit error fluctuation correction on the BDS WADS zone correction
title_sort influence of the geo satellite orbit error fluctuation correction on the bds wads zone correction
publisher SpringerOpen
series Satellite Navigation
issn 2662-1363
publishDate 2020-06-01
description Abstract Decimeter-level service is provided by the BeiDou satellite navigation system wide area differential service (BDS WADS) for users who collect carrier phase measurements. However, the fluctuations in Geostationary Earth Orbit (GEO) satellite orbit errors reduce the spatial correlation of orbit errors. These fluctuations not only decrease the accuracy and stability of zone correction service provided by BDS WADS, but also shorten its effective range. In this paper, we proposed an algorithm to weaken the influence of GEO satellite orbit error fluctuations and verified the method using data from eight sparsely distributed zones. The results show that orbit errors can be stabilized using orbit fluctuation corrections, and the positioning precision and stability of the BDS WADS can be improved simultaneously. Under normal circumstances, the horizontal and vertical positioning accuracy of users within 1000 km from the center of the zone can reach 0.19 m and 0.34 m. Furthermore, the effective range is increased. The positioning performance within 1800 km could reach 0.24 m and 0.38 m for the horizontal and vertical components, respectively.
topic Wide area differential service
Decimeter-level service
Zone correction
GEO orbit error
Effective range
url https://doi.org/10.1186/s43020-020-00020-0
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