A compact multi-frequency GNSS scintillation model

被引:21
|
作者
Rino, Charles [1 ]
Breitsch, Brian [1 ]
Morton, Yu [1 ]
Jiao, Yu [2 ]
Xu, Dongyang [3 ]
Carrano, Charles [4 ]
机构
[1] Univ Colorado, Boulder, CO 80309 USA
[2] Intel Corp, Santa Clara, CA 95051 USA
[3] Colorado State Univ, Ft Collins, CO 80523 USA
[4] Boston Coll, Inst Sci Res, Chestnut Hill, MA 02167 USA
来源
关键词
SIGNALS;
D O I
10.1002/navi.263
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
We present a scintillation model that generates complex scintillation realizations using two-dimensional phase-screen calculations. A compact parameter set simplifies the model. The parameters can be adjusted to reproduce statistically equivalent realizations of target multi-frequency GNSS intensity and phase scintillation time series or defaulted to representative values. Geometric range and TEC inputs can be incorporated to generate realizations of baseband GNSS signals for processor performance evaluation. Selecting model parameters is guided by an efficient encapsulation of the two-dimensional phase-screen theory. Motion of the propagation path through ionospheric structure generates temporal variation. The phase-screen theory incorporates space-to-time conversion via a ratio of the Fresnel scale to an effective scan velocity. A universal strength parameter adjusts the strength of the scintillation. The model is an encapsulation of results that have been used for GPS performance analysis work that is cited in the paper. A MATLAB implementation of the model with examples has been made available.
引用
收藏
页码:563 / 569
页数:7
相关论文
共 50 条
  • [21] Towards Modeling Phase Center Variations for Multi-Frequency and Multi-GNSS
    Kersten, Tobias
    Schoen, Steffen
    2010 5TH ESA WORKSHOP ON SATELLITE NAVIGATION TECHNOLOGIES AND EUROPEAN WORKSHOP ON GNSS SIGNALS AND SIGNAL PROCESSING (NAVITEC), 2010,
  • [22] On the Feasibility of Instantaneous Multi-GNSS Multi-Frequency PPP-RTK
    Brack, Andreas
    Maennel, Benjamin
    Schuh, Harald
    2023 IEEE/ION POSITION, LOCATION AND NAVIGATION SYMPOSIUM, PLANS, 2023, : 883 - 890
  • [23] A multi-frequency multi-constellation GNSS development platform with an open interface
    Garzia, Fabio
    Strobel, Christian
    Overbeck, Matthias
    Kumari, Neelam
    Joshi, Shrikul
    Foerster, Frank
    Felber, Wolfgang
    2016 EUROPEAN NAVIGATION CONFERENCE (ENC), 2016,
  • [24] Principle and performance of multi-frequency and multi-GNSS PPP-RTK
    Li, Xingxing
    Wang, Bo
    Li, Xin
    Huang, Jiaxin
    Lyu, Hongbo
    Han, Xinjuan
    SATELLITE NAVIGATION, 2022, 3 (01):
  • [25] Principle and performance of multi-frequency and multi-GNSS PPP-RTK
    Xingxing Li
    Bo Wang
    Xin Li
    Jiaxin Huang
    Hongbo Lyu
    Xinjuan Han
    Satellite Navigation, 3
  • [26] Design Paradigms for Multi-Constellation Multi-Frequency Software GNSS Receivers
    Curran, James T.
    Petovello, Mark
    Lachapelle, Gerard
    CHINA SATELLITE NAVIGATION CONFERENCE (CSNC) 2013 PROCEEDINGS: BEIDOU/GNSS NAVIGATION APPLICATIONS, TEST & ASSESSMENT TECHNOLOGY, USER TERMINAL TECHNOLOGY, 2013, : 751 - 765
  • [27] NDVI inversion of multi-frequency and multi-satellite GNSS-IR model based on machine learning
    Liu Y.
    Zheng N.
    Ding R.
    Zhang K.
    Ju H.
    Zhongguo Kuangye Daxue Xuebao/Journal of China University of Mining and Technology, 2023, 52 (05): : 1014 - 1021
  • [28] An optimal linear combination model to accelerate PPP convergence using multi-frequency multi-GNSS measurements
    Viet Duong
    Ken Harima
    Suelynn Choy
    Denis Laurichesse
    Chris Rizos
    GPS Solutions, 2019, 23
  • [29] An optimal linear combination model to accelerate PPP convergence using multi-frequency multi-GNSS measurements
    Viet Duong
    Harima, Ken
    Choy, Suelynn
    Laurichesse, Denis
    Rizos, Chris
    GPS SOLUTIONS, 2019, 23 (02) : 1 - 15
  • [30] Multi-GNSS Fast Precise Point Positioning with Multi-Frequency Uncombined Model and Cascading Ambiguity Resolution
    Zhao, Qing
    Pan, Shuguo
    Gao, Wang
    Wu, Bo
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2022, 2022