GNSS PPP-RTK: integrity monitoring method considering wrong ambiguity fixing

被引:8
|
作者
Zhang, Wenhao [1 ]
Wang, Jinling [1 ]
机构
[1] Univ New South Wales UNSW, Sch Civil & Environm Engn, Sydney, NSW 2052, Australia
关键词
Global navigation satellite systems (GNSS); PPP-RTK; Integrity monitoring; Wrong ambiguity fixing; Multiple hypothesis solution separations; RESOLUTION; VALIDATION; BIASES;
D O I
10.1007/s10291-023-01572-9
中图分类号
TP7 [遥感技术];
学科分类号
081102 ; 0816 ; 081602 ; 083002 ; 1404 ;
摘要
In previous studies on multiple hypothesis solution separations (MHSS) advanced autonomous integrity monitoring (ARAIM) in phase-based GNSS precise point positioning (PPP)-real-time kinematic (RTK), the risk of wrong (or incorrect) ambiguity fixing is generally considered to be negligible after ambiguity validation. However, this unrealistic assumption can introduce risks to PPP-RTK positioning solutions that have strict requirements for accuracy and integrity. In this study, a new integrity monitoring method considering the risks of wrong ambiguity fixing is proposed. The proposed method extends the scope of ARAIM to accommodate a type of pseudo-measurements for integer ambiguity fixing. Then, wrong ambiguity fixing can be treated as a type of fault in the MHSS ARAIM scheme. We test the proposed integrity monitoring method with both simulated and real-world PPP-RTK data sets, demonstrating that this method is conservative and can properly bound the positioning errors. Additionally, we analyze the effect of the probability of wrong ambiguity fixing on PPP-RTK positioning protection levels (PLs). The numerical results show that when the probability of wrong ambiguity fixing is smaller than the magnitude of the integrity budget, the effects on PLs are usually very small. On the contrary, due to the impact of wrong integer ambiguity fixing risks, it can increase the PLs levels of ambiguity-fixed solutions, which however will still be smaller than the PLs of ambiguity-float solutions.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] Homogeneous PPP-RTK user positioning performance as a consequence of network integer ambiguity resolution
    Hou, Pengyu
    Zhang, Baocheng
    Yasyukevich, Yu. V.
    GPS SOLUTIONS, 2024, 28 (02)
  • [42] PPP-RTK: from common-view to all-in-view GNSS networks
    Baocheng Zhang
    Pengyu Hou
    Robert Odolinski
    Journal of Geodesy, 2022, 96
  • [43] Multi-GNSS PPP-RTK: Mixed-Receiver Network and User Scenarios
    Teunissen, P. J. G.
    Khodabandeh, A.
    Zhang, B.
    INTERNATIONAL SYMPOSIUM ON EARTH AND ENVIRONMENTAL SCIENCES FOR FUTURE GENERATIONS, 2018, 147 : 215 - 221
  • [44] PPP-RTK: from common-view to all-in-view GNSS networks
    Zhang, Baocheng
    Hou, Pengyu
    Odolinski, Robert
    JOURNAL OF GEODESY, 2022, 96 (12)
  • [45] Effects of equatorial plasma bubble-induced ionospheric gradients on GNSS PPP-RTK
    Tang, Long
    Zhang, Fenkai
    Li, Pan
    Deng, Yuanfan
    Chen, Wu
    GPS SOLUTIONS, 2024, 28 (03)
  • [46] Realization and Performance Assessment of Uncombined Multi-GNSS PPP-RTK for Expressway Scenarios
    Yin, Xiao
    Chai, Hongzhou
    Zhao, Liang
    Zhang, Yize
    CHINA SATELLITE NAVIGATION CONFERENCE PROCEEDINGS, CSNC 2022, VOL I, 2022, 908 : 342 - 351
  • [47] GNSS undifferenced and uncombined data processing and PPP-RTK high-precision positioning
    Yuan Y.
    Hou P.
    Zhang B.
    Cehui Xuebao/Acta Geodaetica et Cartographica Sinica, 2022, 51 (07): : 1225 - 1238
  • [48] A Combination of Classification Robust Adaptive Kalman Filter with PPP-RTK to Improve Fault Detection for Integrity Monitoring of Autonomous Vehicles
    Elsayed, Hassan
    El-Mowafy, Ahmed
    Allahvirdi-Zadeh, Amir
    Wang, Kan
    Mi, Xiaolong
    REMOTE SENSING, 2025, 17 (02)
  • [49] Designing and Testing an IoT Low-Cost PPP-RTK Augmented GNSS Location Device
    Amalfitano, Domenico
    Cutugno, Matteo
    Robustelli, Umberto
    Pugliano, Giovanni
    SENSORS, 2024, 24 (02)
  • [50] Hong Kong–Zhuhai–Macao Bridge deformation monitoring using PPP-RTK with multipath correction method
    Rui Gao
    Zhizhao Liu
    Robert Odolinski
    Qiang Jing
    Jiantong Zhang
    Hua Zhang
    Baocheng Zhang
    GPS Solutions, 2023, 27