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A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods

Because there are different types of BeiDou constellations with participating geostationary orbit (GEO) and inclined geosynchronous orbit (IGSO) satellites, the maneuvering frequency of BeiDou satellites is higher than that of other navigation systems. The satellite orbital maneuvers lead to orbital...

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Autores principales: Qin, Zhiwei, Huang, Guanwen, Zhang, Qin, Wang, Le, Yan, Xingyuan, Kang, Yanchao, Wang, Xiaolei, Xie, Shichao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6631157/
https://www.ncbi.nlm.nih.gov/pubmed/31200536
http://dx.doi.org/10.3390/s19122675
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author Qin, Zhiwei
Huang, Guanwen
Zhang, Qin
Wang, Le
Yan, Xingyuan
Kang, Yanchao
Wang, Xiaolei
Xie, Shichao
author_facet Qin, Zhiwei
Huang, Guanwen
Zhang, Qin
Wang, Le
Yan, Xingyuan
Kang, Yanchao
Wang, Xiaolei
Xie, Shichao
author_sort Qin, Zhiwei
collection PubMed
description Because there are different types of BeiDou constellations with participating geostationary orbit (GEO) and inclined geosynchronous orbit (IGSO) satellites, the maneuvering frequency of BeiDou satellites is higher than that of other navigation systems. The satellite orbital maneuvers lead to orbital parameter failure for several hours from broadcast ephemeris. Due to the missing initial orbit, the maneuvering thrust, and the period of orbital maneuvering, the orbit products of maneuvering satellites cannot be provided by the International Global Navigation Satellite System (GNSS) Service (IGS) and International GNSS Monitoring and Assessment System (iGMAS). In addition, the period of unhealthy status and the orbital parameters of maneuvering satellites in broadcast ephemeris are unreliable, making the detection of orbital maneuver periods more difficult. Here, we develop a method to detect orbital maneuver periods involving two key steps. The first step is orbit prediction of maneuvering satellites based on precise orbit products. The second step is time period detection of orbit maneuvering. The start time detection factor is calculated by backward prediction orbit and pseudo-range observations, and the end time detection factor is calculated by forward prediction orbit and pseudo-range observations. Data of stations from the Multi-GNSS Experiment (MGEX) and iGMAS were analyzed. The results show that the period of orbit maneuvering could be detected accurately for BeiDou GEO and IGSO satellites. In addition, the orbital maneuver period of other GNSS medium Earth orbit (MEO) satellites could also be determined by this method. The results of period detection for orbit maneuvering provide important reference information for precision orbit and clock offset determination during satellite maneuvers.
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spelling pubmed-66311572019-08-19 A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods Qin, Zhiwei Huang, Guanwen Zhang, Qin Wang, Le Yan, Xingyuan Kang, Yanchao Wang, Xiaolei Xie, Shichao Sensors (Basel) Article Because there are different types of BeiDou constellations with participating geostationary orbit (GEO) and inclined geosynchronous orbit (IGSO) satellites, the maneuvering frequency of BeiDou satellites is higher than that of other navigation systems. The satellite orbital maneuvers lead to orbital parameter failure for several hours from broadcast ephemeris. Due to the missing initial orbit, the maneuvering thrust, and the period of orbital maneuvering, the orbit products of maneuvering satellites cannot be provided by the International Global Navigation Satellite System (GNSS) Service (IGS) and International GNSS Monitoring and Assessment System (iGMAS). In addition, the period of unhealthy status and the orbital parameters of maneuvering satellites in broadcast ephemeris are unreliable, making the detection of orbital maneuver periods more difficult. Here, we develop a method to detect orbital maneuver periods involving two key steps. The first step is orbit prediction of maneuvering satellites based on precise orbit products. The second step is time period detection of orbit maneuvering. The start time detection factor is calculated by backward prediction orbit and pseudo-range observations, and the end time detection factor is calculated by forward prediction orbit and pseudo-range observations. Data of stations from the Multi-GNSS Experiment (MGEX) and iGMAS were analyzed. The results show that the period of orbit maneuvering could be detected accurately for BeiDou GEO and IGSO satellites. In addition, the orbital maneuver period of other GNSS medium Earth orbit (MEO) satellites could also be determined by this method. The results of period detection for orbit maneuvering provide important reference information for precision orbit and clock offset determination during satellite maneuvers. MDPI 2019-06-13 /pmc/articles/PMC6631157/ /pubmed/31200536 http://dx.doi.org/10.3390/s19122675 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Qin, Zhiwei
Huang, Guanwen
Zhang, Qin
Wang, Le
Yan, Xingyuan
Kang, Yanchao
Wang, Xiaolei
Xie, Shichao
A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods
title A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods
title_full A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods
title_fullStr A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods
title_full_unstemmed A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods
title_short A Method to Determine BeiDou GEO/IGSO Orbital Maneuver Time Periods
title_sort method to determine beidou geo/igso orbital maneuver time periods
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6631157/
https://www.ncbi.nlm.nih.gov/pubmed/31200536
http://dx.doi.org/10.3390/s19122675
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