A Refinement Method of Real-Time Ionospheric Model for China
暂无分享,去创建一个
Liang Zhang | Yibin Yao | Yang Wang | Mingshan Fang | Yibin Yao | Yang Wang | Liang Zhang | Mingshan Fang
[1] Fei Liu,et al. IP3/DR - A low-cost precise and robust GNSS/INS integrated navigation system for land vehicles , 2020, 2020 IEEE 91st Vehicular Technology Conference (VTC2020-Spring).
[2] Andrzej Krankowski,et al. IGS real-time service for global ionospheric total electron content modeling , 2020, Journal of Geodesy.
[3] Xiaodong Ren,et al. Performance evaluation of real-time global ionospheric maps provided by different IGS analysis centers , 2019, GPS Solutions.
[4] Yibin Yao,et al. Real-Time Global Ionospheric Map and Its Application in Single-Frequency Positioning , 2019, Sensors.
[5] Zhixi Nie,et al. Quality assessment of CNES real-time ionospheric products , 2018, GPS Solutions.
[7] John Aggrey,et al. Assessment of Global and Regional Ionospheric Corrections in Multi-GNSS PPP , 2018, Proceedings of the 31st International Technical Meeting of The Satellite Division of the Institute of Navigation (ION GNSS+ 2018).
[8] Yang Li,et al. A novel ambiguity search algorithm for high accuracy differential GNSS relative positioning , 2018, Aerospace Science and Technology.
[9] Yang Gao,et al. Evaluation and analysis of real-time precise orbits and clocks products from different IGS analysis centers , 2018, Advances in Space Research.
[10] Ningbo Wang,et al. Performance of various predicted GNSS global ionospheric maps relative to GPS and JASON TEC data , 2018, GPS Solutions.
[11] Baocheng Zhang,et al. Real-Time Precise Point Positioning (RTPPP) with raw observations and its application in real-time regional ionospheric VTEC modeling , 2018, Journal of Geodesy.
[12] Baocheng Zhang,et al. Three methods to retrieve slant total electron content measurements from ground‐based GPS receivers and performance assessment , 2016 .
[13] Paul Collins,et al. Global and Regional Ionospheric Corrections for Faster PPP Convergence , 2014 .
[14] Maorong Ge,et al. A real-time ionospheric model based on GNSS Precise Point Positioning , 2013 .
[15] Shuanggen Jin,et al. M_DCB: Matlab code for estimating GNSS satellite and receiver differential code biases , 2012, GPS Solutions.
[16] Hyun-Yup Lee,et al. Assessment of GPS global ionosphere maps (GIM) by comparison between CODE GIM and TOPEX/Jason TEC data: Ionospheric perspective , 2010 .
[17] Yukihiro Kubo,et al. MODELING IONOSPHERE VTEC OVER JAPAN BASED ON GNSS REGRESSION MODELS AND GEONET , 2009 .
[18] G. Gendt,et al. Resolution of GPS carrier-phase ambiguities in Precise Point Positioning (PPP) with daily observations , 2008 .
[19] Tim Springer,et al. New IGS Station and Satellite Clock Combination , 2001, GPS Solutions.
[20] Peter Teunissen,et al. Long baseline 3 frequency differential GNSS , 2000, IEEE 2000. Position Location and Navigation Symposium (Cat. No.00CH37062).
[21] J. Zumberge,et al. Precise point positioning for the efficient and robust analysis of GPS data from large networks , 1997 .
[22] Geoffrey Blewitt,et al. An Automatic Editing Algorithm for GPS data , 1990 .
[23] Krzysztof Sośnica,et al. Quality assessment of multi-GNSS orbits and clocks for real-time precise point positioning , 2017, GPS Solutions.
[24] K. Moffett,et al. Remote Sens , 2015 .
[25] Tomasz Hadas,et al. IGS RTS precise orbits and clocks verification and quality degradation over time , 2014, GPS Solutions.
[26] Chris Rizos,et al. Precise Point Positioning: Is the era of differential GNSS positioning drawing to an end? , 2012 .
[27] Sunil Bisnath,et al. Current State of Precise Point Positioning and Future Prospects and Limitations , 2009 .