Assessing IGS GPS/Galileo/BDS-2/BDS-3 phase bias products with PRIDE PPP-AR

被引:0
|
作者
Jianghui Geng
Songfeng Yang
Jiang Guo
机构
[1] GNSS Research Center,
[2] Wuhan University,undefined
来源
关键词
Precise point positioning; Phase bias products; Ambiguity resolution; Multi-GNSS;
D O I
暂无
中图分类号
学科分类号
摘要
Ambiguity Resolution in Precise Point Positioning (PPP-AR) is important to achieving high-precision positioning in wide areas. The International GNSS (Global Navigation Satellite System) Service (IGS) and some other academic organizations have begun to provide phase bias products to enable PPP-AR, such as the integer-clock like products by Centre National d’Etudes Spatials (CNES), Wuhan University (WUM) and the Center for Orbit Determination in Europe (CODE), as well as the Uncalibrated Phase Delay (UPD) products by School of Geodesy and Geomatics (SGG). To evaluate these disparate products, we carry out Global Positioning System (GPS)/Galileo Navigation Satellite System (Galileo) and BeiDou Navigation Satellite System (BDS-only) PPP-AR using 30 days of data in 2019. In general, over 70% and 80% of GPS and Galileo ambiguity residuals after wide-lane phase bias corrections fall in ± 0.1 cycles, in contrast to less than 50% for BeiDou Navigation Satellite (Regional) System (BDS-2); moreover, around 90% of GPS/Galileo narrow-lane ambiguity residuals are within ± 0.1 cycles, while the percentage drops to about 55% in the case of BDS products. GPS/Galileo daily PPP-AR can usually achieve a positioning precision of 2, 2 and 6 mm for the east, north and up components, respectively, for all phase bias products except those based on German Research Centre for Geosciences (GBM) rapid satellite orbits and clocks. Due to the insufficient number of BDS satellites during 2019, the BDS phase bias products perform worse than the GPS/Galileo products in terms of ambiguity fixing rates and daily positioning precisions. BDS-2 daily positions can only reach a precision of about 10 mm in the horizontal and 20 mm in the vertical components, which can be slightly improved after PPP-AR. However, for the year of 2020, BDS-2/BDS-3 (BDS-3 Navigation Satellite System) PPP-AR achieves about 50% better precisions for all three coordinate components.
引用
收藏
相关论文
共 50 条
  • [21] Accounting for BDS-2/BDS-3 inter-system biases in PPP and RTK models
    Shi, Chuang
    Hu, Yong
    Zheng, Fu
    Zhang, Dong
    [J]. ADVANCES IN SPACE RESEARCH, 2022, 70 (04) : 890 - 906
  • [22] Evaluation of BDS-2 and BDS-3 Satellite Atomic Clock Products and Their Effects on Positioning
    Gu, Shengfeng
    Mao, Feiyu
    Gong, Xiaopeng
    Lou, Yidong
    Xu, Xueyong
    Zhou, Ye
    [J]. REMOTE SENSING, 2021, 13 (24)
  • [23] Tight integration of BDS-3/BDS-2/GPS/Galileo observations considering the new overlapping DISBs and its application in obstructed environments
    Yuan, Haijun
    Zhang, Zhetao
    He, Xiufeng
    Zeng, Jinwen
    [J]. ADVANCES IN SPACE RESEARCH, 2023, 71 (06) : 2879 - 2891
  • [24] 高采样率下BDS-3/BDS-2/GPS单频PPP定位性能研究
    郭楠
    韩厚增
    张建
    [J]. 北京测绘, 2022, (07) : 935 - 939
  • [25] Precise orbit determination of the LuTan satellite using GPS, BDS-2, and BDS-3 signals
    Zhang, Yu
    Zhao, Qile
    Jiang, Kecai
    Guo, Xiang
    Lian, Yidu
    Li, Min
    [J]. MEASUREMENT SCIENCE AND TECHNOLOGY, 2024, 35 (09)
  • [26] 铁路场景下的GPS/Galileo/BDS-2/BDS-3观测数据质量的对比分析
    张再鑫
    林春峰
    郜珂
    赵兵
    [J]. 北京测绘, 2022, (04) : 517 - 523
  • [27] Assessment of Real-Time GPS/BDS-2/BDS-3 Single-Frequency PPP and INS Tight Integration Using Different RTS Products
    Lv, Jie
    Gao, Zhouzheng
    Xu, Qiaozhuang
    Lan, Ruohua
    Yang, Cheng
    Peng, Junhuan
    [J]. REMOTE SENSING, 2022, 14 (17)
  • [28] Precise Orbit Determination of BDS-2 and BDS-3 Using SLR
    Yang, Honglei
    Xu, Tianhe
    Nie, Wenfeng
    Gao, Fan
    Guan, Meiqian
    [J]. REMOTE SENSING, 2019, 11 (23)
  • [29] Apparent clock and TGD biases between BDS-2 and BDS-3
    Yize Zhang
    Nobuaki Kubo
    Junping Chen
    Feng-Yu Chu
    Ahao Wang
    Jiexian Wang
    [J]. GPS Solutions, 2020, 24
  • [30] Apparent clock and TGD biases between BDS-2 and BDS-3
    Zhang, Yize
    Kubo, Nobuaki
    Chen, Junping
    Chu, Feng-Yu
    Wang, Ahao
    Wang, Jiexian
    [J]. GPS SOLUTIONS, 2019, 24 (01)