A unified model of GNSS phase/code bias calibration for PPP ambiguity resolution with GPS, BDS, Galileo and GLONASS multi-frequency observations

被引:33
|
作者
Li, Xin [1 ]
Li, Xingxing [1 ]
Jiang, Zihao [1 ]
Xia, Chunxi [1 ]
Shen, Zhiheng [1 ]
Wu, Jiaqi [1 ]
机构
[1] Wuhan Univ, Sch Geodesy & Geomat, 129 Luoyu Rd, Wuhan 430079, Peoples R China
基金
中国国家自然科学基金;
关键词
Multi-GNSS; Multi-frequency; Observable-specific signal bias; Precise point positioning; Ambiguity resolution; CODE BIASES;
D O I
10.1007/s10291-022-01269-5
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
The performance of high-precision Global Navigation Satellite System (GNSS) positioning in multi-frequency and multi-constellation environments strongly depends on the understanding and handling the biases that inevitably exist between the different systems and signals. The usage of observable-specific signal bias (OSB), allowing to map biases to each individual observation type involved, provides full flexibility for the multi-GNSS bias processing. In this contribution, the OSB estimation model is extended from the traditional dual-frequency model to multi-frequency and multi-GNSS one to provide GPS/GLONASS triple-frequency, Galileo five-frequency, BDS six-frequency phase/code bias products for precise point positioning (PPP) ambiguity resolution (AR). Results indicate that the code bias products exhibit high stability with average standard deviations (STDs) of 0.06-0.10 ns for GPS and 0.16-0.33 ns for BDS/Galileo/GLONASS. Likewise, the daily phase bias is extremely stable, with average STDs of 0.01-0.02 ns for GPS and Galileo, 0.03-0.05 ns for BDS and 0.05-0.07 ns for GLONASS. Particularly, for the modernized binary offset carrier signals of Galileo E5 and BDS-3 B2, their phase/code biases present relatively high consistency between the different tracking modes and different frequencies. In addition, obvious differences in the range of 10.92-28.58 ns can be noted between the receiver-specific code bias of BDS-2 and BDS-3 for their common frequency signals. Based on the observable-specific phase and code biases, a multi-frequency PPP cascade integer resolution model is developed to make full use of all available observations from different GNSSs. After applying these bias products, PPP AR with GPS, BDS, Galileo and GLONASS multi-frequency observations is achieved with an average convergence time of 4.44 min, showing remarkable improvements of 56.8% and 16.8% compared to dual-frequency PPP float and fixed solutions, respectively.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] GNSS carrier phase time-variant observable-specific signal bias (OSB) handling: an absolute bias perspective in multi-frequency PPP
    Ke Su
    Shuanggen Jin
    Guoqiang Jiao
    GPS Solutions, 2022, 26
  • [42] GNSS carrier phase time-variant observable-specific signal bias (OSB) handling: an absolute bias perspective in multi-frequency PPP
    Su, Ke
    Jin, Shuanggen
    Jiao, Guoqiang
    GPS SOLUTIONS, 2022, 26 (03)
  • [43] Multi-frequency phase observable-specific signal bias estimation and its application in the precise point positioning with ambiguity resolution
    Weiping Jiang
    Tianjun Liu
    Hua Chen
    Chuanfeng Song
    Qusen Chen
    Tao Geng
    GPS Solutions, 2023, 27
  • [44] Multi-frequency phase observable-specific signal bias estimation and its application in the precise point positioning with ambiguity resolution
    Jiang, Weiping
    Liu, Tianjun
    Chen, Hua
    Song, Chuanfeng
    Chen, Qusen
    Geng, Tao
    GPS SOLUTIONS, 2023, 27 (01)
  • [45] Real-time estimation of multi-frequency phase observable-specific bias for the BDS3 PPP-B2b service
    Tao, Jun
    Zhang, Gaojian
    Chen, Guo
    Jiang, Yihao
    Zhao, Qile
    GPS SOLUTIONS, 2025, 29 (01)
  • [46] An improved estimation approach of GNSS multi-frequency code observable-specific bias aided by geometry-free and ionospheric-free observations
    Yuan, Haijun
    Zhang, Zhetao
    He, Xiufeng
    Zhan, Wei
    GPS SOLUTIONS, 2024, 28 (04)
  • [47] Satellite's differential code bias conversion model between different IGS clock products using uncombined BDS-3 multi-frequency data
    Zhao, Jingzhu
    Fan, Lei
    Guo, Shiwei
    Shi, Chuang
    JOURNAL OF GEODESY, 2024, 98 (10)
  • [48] 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
    Min Li
    Jiuping Zha
    Yunbin Yuan
    Teng Liu
    Xiao Zhang
    Chuanbao Zhao
    Journal of Geodesy, 2024, 98
  • [49] BDS-3/GNSS Undifferenced Pseudorange and Phase Time-Variant Mixed OSB Considering the Receiver Time-Variant Biases and Its Benefit on Multi-Frequency PPP
    Jiao, Guoqiang
    Su, Ke
    Fan, Min
    Yang, Yuze
    Hu, Huaquan
    REMOTE SENSING, 2024, 16 (23)
  • [50] BDS multi-frequency PPP ambiguity resolution with new B2a/B2b/B2a + b signals and legacy B1I/B3I signals
    Xin Li
    Xingxing Li
    Gege Liu
    Yongqiang Yuan
    Mohamed Freeshah
    Keke Zhang
    Feng Zhou
    Journal of Geodesy, 2020, 94