Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases

With the completion of the BeiDou-3 Navigation Satellite System (BDS-3) and the development of Galileo and quasi-zenith satellite system (QZSS), more and more satellites can be used to retrieve the atmospheric ionosphere. Generally, the short-time variation of receiver differential code biases (DCB)...

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Autores principales: MI Xiaolong, YUAN Yunbin, ZHANG Baocheng
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Lenguaje:ZH
Publicado: Surveying and Mapping Press 2021
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Acceso en línea:https://doaj.org/article/4ca780e4e5574eb59c21412e888979ff
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spelling oai:doaj.org-article:4ca780e4e5574eb59c21412e888979ff2021-11-12T02:25:59ZCharacteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases1001-159510.11947/j.AGCS.2021.20200489https://doaj.org/article/4ca780e4e5574eb59c21412e888979ff2021-10-01T00:00:00Zhttp://xb.sinomaps.com/article/2021/1001-1595/2021-10-1290.htmhttps://doaj.org/toc/1001-1595With the completion of the BeiDou-3 Navigation Satellite System (BDS-3) and the development of Galileo and quasi-zenith satellite system (QZSS), more and more satellites can be used to retrieve the atmospheric ionosphere. Generally, the short-time variation of receiver differential code biases (DCB) is considered as an important error source for ionospheric inversion using Global Navigation Satellite System (GNSS). However, some studies have shown that the short-time variation of receiver differential phase biases (DPB) may also affect the accuracy and reliability of ionospheric inversion. This paper presents a method to estimate the receiver DPB based on the single-differenced (SD) model without changing the reference satellite, which can realize the continuous estimation of the receiver DPB. DPB of the overlapping frequency combination of BDS-3, Galileo, GPS and QZSS is analyzed based on data collected from several multi-frequency and multi-constellation receivers capable of tracking the new signals of the BDS-3. The results show that ① The intraday changes of DPB of BDS-3, Galileo, GPS and QZSS are obvious and have a strong correlation with temperature. ② There is a strong correlation between the DPB of the overlapping frequency combinations of BDS-3, Galileo, GPS and QZSS. ③ There is a significant correlation between changes in DPB based on the baseline of the same type of combination.MI XiaolongYUAN YunbinZHANG BaochengSurveying and Mapping Pressarticledifferential code biasesdifferential phase biasesglobal navigation satellite systembeidou navigation satellite system with global coveragegalileoquasi-zenith satellite systemMathematical geography. CartographyGA1-1776ZHActa Geodaetica et Cartographica Sinica, Vol 50, Iss 10, Pp 1290-1297 (2021)
institution DOAJ
collection DOAJ
language ZH
topic differential code biases
differential phase biases
global navigation satellite system
beidou navigation satellite system with global coverage
galileo
quasi-zenith satellite system
Mathematical geography. Cartography
GA1-1776
spellingShingle differential code biases
differential phase biases
global navigation satellite system
beidou navigation satellite system with global coverage
galileo
quasi-zenith satellite system
Mathematical geography. Cartography
GA1-1776
MI Xiaolong
YUAN Yunbin
ZHANG Baocheng
Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases
description With the completion of the BeiDou-3 Navigation Satellite System (BDS-3) and the development of Galileo and quasi-zenith satellite system (QZSS), more and more satellites can be used to retrieve the atmospheric ionosphere. Generally, the short-time variation of receiver differential code biases (DCB) is considered as an important error source for ionospheric inversion using Global Navigation Satellite System (GNSS). However, some studies have shown that the short-time variation of receiver differential phase biases (DPB) may also affect the accuracy and reliability of ionospheric inversion. This paper presents a method to estimate the receiver DPB based on the single-differenced (SD) model without changing the reference satellite, which can realize the continuous estimation of the receiver DPB. DPB of the overlapping frequency combination of BDS-3, Galileo, GPS and QZSS is analyzed based on data collected from several multi-frequency and multi-constellation receivers capable of tracking the new signals of the BDS-3. The results show that ① The intraday changes of DPB of BDS-3, Galileo, GPS and QZSS are obvious and have a strong correlation with temperature. ② There is a strong correlation between the DPB of the overlapping frequency combinations of BDS-3, Galileo, GPS and QZSS. ③ There is a significant correlation between changes in DPB based on the baseline of the same type of combination.
format article
author MI Xiaolong
YUAN Yunbin
ZHANG Baocheng
author_facet MI Xiaolong
YUAN Yunbin
ZHANG Baocheng
author_sort MI Xiaolong
title Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases
title_short Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases
title_full Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases
title_fullStr Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases
title_full_unstemmed Characteristics of the short-term temporal variations of multi-constellation and multi-frequency GNSS receiver differential phase biases
title_sort characteristics of the short-term temporal variations of multi-constellation and multi-frequency gnss receiver differential phase biases
publisher Surveying and Mapping Press
publishDate 2021
url https://doaj.org/article/4ca780e4e5574eb59c21412e888979ff
work_keys_str_mv AT mixiaolong characteristicsoftheshorttermtemporalvariationsofmulticonstellationandmultifrequencygnssreceiverdifferentialphasebiases
AT yuanyunbin characteristicsoftheshorttermtemporalvariationsofmulticonstellationandmultifrequencygnssreceiverdifferentialphasebiases
AT zhangbaocheng characteristicsoftheshorttermtemporalvariationsofmulticonstellationandmultifrequencygnssreceiverdifferentialphasebiases
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