A unified model of multi-GNSS and multi-frequency precise point positioning for the joint estimation of ionospheric TEC and time-varying receiver code bias

被引:5
作者
Li, Min [1 ]
Zha, Jiuping [2 ,3 ]
Yuan, Yunbin [1 ]
Liu, Teng [1 ,4 ]
Zhang, Xiao [2 ,3 ]
Zhao, Chuanbao [2 ,3 ]
机构
[1] Chinese Acad Sci, Innovat Acad Precis Measurement Sci & Technol, State Key Lab Geodesy & Earths Dynam, Wuhan, Peoples R China
[2] Guangzhou Urban Planning & Design Survey Res Inst, Guangzhou 510003, Peoples R China
[3] Guangdong Enterprise Key Lab Urban Sensing, Monitoring & Early Warning, Guangzhou 510003, Peoples R China
[4] Hubei Luojia Lab, Wuhan 430079, Peoples R China
关键词
Modified precise point positioning (MPPP); Multifrequency and multi-GNSS; Total electron content (TEC); Time-varying receiver code biases (RCBs); SINGLE-FREQUENCY; GPS; SLANT; ALGORITHM; ACCURACY; GLONASS; BEIDOU;
D O I
10.1007/s00190-023-01808-z
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The short-term variability in receiver code biases (RCBs) has been identified as a prominent source of error leading to the degradation of precise point positioning (PPP) performance and ionospheric total electron content (TEC) estimation accuracy. To minimize the adverse impact of RCB variability, this study extends the modified PPP (MPPP) method from the GPS only dual-frequency (DF) model to multifrequency (MF) and multiconstellation cases. In the MF MPPP method, multi-GNSS (GPS, BDS and Galileo) dual-, triple- or even arbitrary-frequency observations can be jointly processed in a flexible and reliable way by taking the time-varying RCBs of all available signals into account. Benefiting from this, the between-epoch fluctuations experienced by RCBs for all constellations and frequencies can be detected and their adverse impacts on the ionospheric observables and ambiguity parameters are mitigated. Compared to the traditional MF PPP method, the retrieval accuracy of the multi-GNSS-based ionospheric observables using our proposed method can be improved by more than 74% in the presence of significant intraday RCB variations. The variation trends are not always consistent for RCBs in different frequency bands for different satellite systems. The dependence of multi-GNSS and MF RCB variations on the ambient temperature is also verified. The percentages of the stations analyzed with the absolute Pearson correlation coefficient (PCC) values above 0.8 for BDS are higher than those of GPS and Galileo, and the temperature dependence of RCB on the second frequency band is higher than those of the first frequency band for all the three constellations.
引用
收藏
页数:14
相关论文
共 46 条
[1]   An enhanced calibration method of GLONASS inter-channel bias for GNSS RTK [J].
Al-Shaery, A. ;
Zhang, S. ;
Rizos, C. .
GPS SOLUTIONS, 2013, 17 (02) :165-173
[2]   On the importance of the Pearson correlation coefficient in noise reduction [J].
Benesty, Jacob ;
Chen, Jingdong ;
Huang, Yiteng .
IEEE TRANSACTIONS ON AUDIO SPEECH AND LANGUAGE PROCESSING, 2008, 16 (04) :757-765
[3]   Accuracy assessment of the GPS-based slant total electron content [J].
Brunini, Claudio ;
Javier Azpilicueta, Francisco .
JOURNAL OF GEODESY, 2009, 83 (08) :773-785
[4]   Calibration errors on experimental slant total electron content (TEC) determined with GPS [J].
Ciraolo, L. ;
Azpilicueta, F. ;
Brunini, C. ;
Meza, A. ;
Radicella, S. M. .
JOURNAL OF GEODESY, 2007, 81 (02) :111-120
[5]   Accuracy of GPS total electron content: GPS receiver bias temperature dependence [J].
Coster, A. ;
Williams, J. ;
Weatherwax, A. ;
Rideout, W. ;
Herne, D. .
RADIO SCIENCE, 2013, 48 (02) :190-196
[6]   EVALUATION OF GPS IONOSPHERIC TIME-DELAY MODEL [J].
FEESS, WA ;
STEPHENS, SG .
IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 1987, 23 (03) :332-338
[7]   Comparative testing of four ionospheric models driven with GPS measurements [J].
Feltens, J. ;
Angling, M. ;
Jackson-Booth, N. ;
Jakowski, N. ;
Hoque, M. ;
Hernandez-Pajares, M. ;
Aragon-Angel, A. ;
Orus, R. ;
Zandbergen, R. .
RADIO SCIENCE, 2011, 46
[8]   Toward global instantaneous decimeter-level positioning using tightly coupled multi-constellation and multi-frequency GNSS [J].
Geng, Jianghui ;
Guo, Jiang ;
Chang, Hua ;
Li, Xiaotao .
JOURNAL OF GEODESY, 2019, 93 (07) :977-991
[9]   Review of code and phase biases in multi-GNSS positioning [J].
Hakansson, Martin ;
Jensen, Anna B. O. ;
Horemuz, Milan ;
Hedling, Gunnar .
GPS SOLUTIONS, 2017, 21 (03) :849-860
[10]   A new way of improving global ionospheric maps by ionospheric tomography: consistent combination of multi-GNSS and multi-space geodetic dual-frequency measurements gathered from vessel-, LEO- and ground-based receivers [J].
Hernandez-Pajares, Manuel ;
Lyu, Haixia ;
Garcia-Fernandez, Miquel ;
Orus-Perez, Raul .
JOURNAL OF GEODESY, 2020, 94 (08)