On the advantage of stochastic methods in the modeling of ionospheric total electron content: Southeast Asia case study
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Pawel Wielgosz | Xiaodong Ren | Wojciech Jarmołowski | Anna Krypiak-Gregorczyk | X. Ren | W. Jarmołowski | P. Wielgosz | A. Krypiak-Gregorczyk
[1] Ljiljana R. Cander,et al. Testing regional vertical total electron content maps over Europe during the 17–21 January 2005 sudden space weather event , 2007 .
[2] Pawel Wielgosz,et al. Regional Ionosphere Mapping with Kriging and Multiquadric Methods , 2003 .
[3] Chuang Shi,et al. Improved Modeling of Global Ionospheric Total Electron Content Using Prior Information , 2018, Remote Sensing.
[4] Claudio Brunini,et al. Analysis of the bias between TOPEX and GPS vTEC determinations , 2009 .
[5] H. S. Kutoglu,et al. Comments on Kavzoglu and Saka (2005) “Modelling local GPS/levelling geoid undulations using artificial neural networks” J Geod 78(9):520–527 , 2008 .
[6] Jaume Sanz,et al. Improvement of global ionospheric VTEC maps by using kriging interpolation technique , 2005 .
[7] 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 .
[8] Andrzej Krankowski,et al. Methodology and consistency of slant and vertical assessments for ionospheric electron content models , 2017, Journal of Geodesy.
[9] Mohammad Ali Sharifi,et al. The local ionospheric modeling by integration ground GPS observations and satellite altimetry data , 2017 .
[10] Edward L. Afraimovich,et al. Testing of the international reference ionosphere model using the data of dual-frequency satellite altimeters “Topex”/“Poseidon” and “Jason-1” , 2009 .
[11] Donald Danskin,et al. Developing a GPS TEC mapping service over Canada , 2011 .
[12] P. Teunissen. The least-squares ambiguity decorrelation adjustment: a method for fast GPS integer ambiguity estimation , 1995 .
[13] Ruizhi Chen,et al. Spherical cap harmonic model for mapping and predicting regional TEC , 2011 .
[14] Ke Fuyang,et al. Combination of GPS, HY-2A and COSMIC Observations to Establish Global Ionospheric Map , 2018 .
[15] Pawel Wielgosz,et al. A New Ionosphere Monitoring Service over the ASG-EUPOS Network Stations , 2014 .
[16] Chuang Shi,et al. Consistency of seven different GNSS global ionospheric mapping techniques during one solar cycle , 2018, Journal of Geodesy.
[17] Ehsan Forootan,et al. Reconstructing Regional Ionospheric Electron Density: A Combined Spherical Slepian Function and Empirical Orthogonal Function Approach , 2018, Surveys in Geophysics.
[18] Neda Darbeheshti,et al. Non-stationary covariance function modelling in 2D least-squares collocation , 2009 .
[19] Harald Schuh,et al. Ray tracing technique for global 3‐D modeling of ionospheric electron density using GNSS measurements , 2015 .
[20] D. Laurichesse,et al. The CNES Real-time PPP with Undifferenced Integer Ambiguity Resolution Demonstrator , 2011 .
[21] Maorong Ge,et al. A method for improving uncalibrated phase delay estimation and ambiguity-fixing in real-time precise point positioning , 2013, Journal of Geodesy.
[22] Juha Hyyppä,et al. Spherical cap harmonic analysis of the Arctic ionospheric TEC for one solar cycle , 2014 .
[23] Michael Schmidt,et al. Near real-time estimation of ionosphere vertical total electron content from GNSS satellites using B-splines in a Kalman filter , 2017 .
[24] Robert Heinkelmann,et al. Systematic differences between VTEC obtained by different space-geodetic techniques during CONT08 , 2011 .
[25] Yibin Yao,et al. Tomographic reconstruction of ionospheric electron density during the storm of 5-6 August 2011 using multi-source data , 2015, Scientific Reports.
[26] J. Kusche,et al. Regularization of gravity field estimation from satellite gravity gradients , 2002 .
[27] Pawel Wielgosz,et al. The impact of the ionospheric correction latency on long-baseline instantaneous kinematic GPS positioning , 2007 .
[28] Koji Matsumoto,et al. Regional ionosphere map over Japanese Islands , 2002 .
[29] Taskin Kavzoglu,et al. Modelling local GPS/levelling geoid undulations using artificial neural networks , 2005 .
[30] Wu Chen,et al. Revisit the calibration errors on experimental slant total electron content (TEC) determined with GPS , 2018, GPS Solutions.
[31] Iwona Stanislawska,et al. GIM-TEC adaptive ionospheric weather assessment and forecast system , 2013 .
[32] Adrian N. Evans,et al. An Evaluation of Interpolation Techniques for Reconstructing Ionospheric TEC Maps , 2008, IEEE Transactions on Geoscience and Remote Sensing.
[33] Denise Dettmering,et al. Comparison of spherical harmonic and B spline models for the vertical total electron content , 2011 .
[34] Biqiang Zhao,et al. An empirical orthogonal function model of total electron content over China , 2008 .
[35] Manuel Hernández-Pajares,et al. The ionosphere: effects, GPS modeling and the benefits for space geodetic techniques , 2011 .
[36] Rui Tu,et al. Determination of Ocean Tide Loading Displacement by GPS PPP with Priori Information Constraint of NAO99b Global Ocean Tide Model , 2018 .
[37] Manuela Seitz,et al. Combination of different space-geodetic observations for regional ionosphere modeling , 2011 .
[38] Kamil Kazmierski,et al. Optimum stochastic modeling for GNSS tropospheric delay estimation in real-time , 2017, GPS Solutions.
[39] A. Garcia-Rigo,et al. The IGS VTEC maps: a reliable source of ionospheric information since 1998 , 2009 .
[40] D. Sengupta. Linear models , 2003 .
[41] Wojciech Jarmołowski,et al. Least squares collocation with uncorrelated heterogeneous noise estimated by restricted maximum likelihood , 2015, Journal of Geodesy.
[42] Orhan Arikan,et al. Regional TEC mapping with Random Field Priors and Kriging , 2008 .
[43] Pawel Wielgosz,et al. Ionosphere Model for European Region Based on Multi-GNSS Data and TPS Interpolation , 2017, Remote. Sens..
[44] Keke Zhang,et al. Global Ionospheric Modelling using Multi-GNSS: BeiDou, Galileo, GLONASS and GPS , 2016, Scientific Reports.
[45] Lee-Anne McKinnell,et al. The international reference ionosphere today and in the future , 2011 .
[46] Chung-Yen Kuo,et al. Regional Validation of Jason-2 Dual-Frequency Ionosphere Delays , 2010 .
[47] H. Schuh,et al. Global Ionosphere Maps of VTEC from GNSS, satellite altimetry, and formosat-3/COSMIC data , 2011 .
[48] Shuanggen Jin,et al. Evaluation of regional ionospheric grid model over China from dense GPS observations , 2016 .
[49] Xiaohong Zhang,et al. Satellite clock estimation at 1 Hz for realtime kinematic PPP applications , 2011 .
[50] Augusto Mazzoni,et al. Real‐time GPS seismology with a stand‐alone receiver: A preliminary feasibility demonstration , 2010 .
[51] Timothy Fuller-Rowell,et al. Global Assimilation of Ionospheric Measurements (GAIM) , 2001 .
[52] Sandro M. Radicella,et al. Calibration errors on experimental slant total electron content (TEC) determined with GPS , 2007 .
[53] Helge Toutenburg,et al. Linear models : least squares and alternatives , 1999 .
[54] Baocheng Zhang,et al. Three methods to retrieve slant total electron content measurements from ground‐based GPS receivers and performance assessment , 2016 .
[55] Bruno Zolesi,et al. Ionospheric Prediction and Forecasting , 2013 .
[56] Jacek Paziewski,et al. Study on desirable ionospheric corrections accuracy for network-RTK positioning and its impact on time-to-fix and probability of successful single-epoch ambiguity resolution , 2016 .
[57] G. Moreaux,et al. Compactly supported radial covariance functions , 2008 .
[58] Xin Li,et al. Multi-GNSS phase delay estimation and PPP ambiguity resolution: GPS, BDS, GLONASS, Galileo , 2018, Journal of Geodesy.
[59] Pawel Wielgosz,et al. A new TEC interpolation method based on the least squares collocation for high accuracy regional ionospheric maps , 2017 .
[60] Ho Yun,et al. Performance Evaluation of Ionosphere Modeling Using Spherical Harmonics in the Korean Peninsula , 2013 .
[61] 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.
[62] Sandro M. Radicella,et al. Data ingestion into NeQuick 2 , 2011 .
[63] Pawel Wielgosz,et al. Carrier phase bias estimation of geometry-free linear combination of GNSS signals for ionospheric TEC modeling , 2018, GPS Solutions.