Development of Global Tropospheric Empirical Correction Model with High Temporal Resolution
暂无分享,去创建一个
Yibin Yao | Chaoqian Xu | Qi Zhang | Junbo Shi | Wenjie Peng | Yibin Yao | Chaoqian Xu | Wenjie Peng | Qi Zhang | Junbo Shi
[1] Steven Businger,et al. GPS Meteorology: Mapping Zenith Wet Delays onto Precipitable Water , 1994 .
[2] Peng Zhang,et al. Precise Point Positioning Using Dual-Frequency GNSS Observations on Smartphone , 2019, Sensors.
[3] T. Nilsson,et al. GPT2: Empirical slant delay model for radio space geodetic techniques , 2013, Geophysical research letters.
[4] Torben Schüler,et al. The TropGrid2 standard tropospheric correction model , 2013, GPS Solutions.
[5] Christian Rocken,et al. Near real‐time GPS sensing of atmospheric water vapor , 1997 .
[6] Yang Gao,et al. Precise Point Positioning Using Combined GPS and GLONASS Observations , 2007 .
[7] Alan Dodson,et al. Assessment of EGNOS Tropospheric Correction Model , 1999 .
[8] Jiming Guo,et al. Local troposphere augmentation for real-time precise point positioning , 2014, Earth, Planets and Space.
[9] Jan Kouba,et al. Testing of global pressure/temperature (GPT) model and global mapping function (GMF) in GPS analyses , 2009 .
[10] Steven Businger,et al. GPS Meteorology: Direct Estimation of the Absolute Value of Precipitable Water , 1996 .
[11] Yibin Yao,et al. ITG: A New Global GNSS Tropospheric Correction Model , 2015, Scientific Reports.
[12] Robert Weber,et al. Development of an improved empirical model for slant delays in the troposphere (GPT2w) , 2015, GPS Solutions.
[13] H. S. Hopfield. Two- quartic tropospheric refractivity profile for correcting satellite data , 1969 .
[14] Maorong Ge,et al. Tropospheric delay parameters from numerical weather models for multi-GNSS precise positioning , 2016 .
[15] Xingxing Li,et al. Accuracy and reliability of multi-GNSS real-time precise positioning: GPS, GLONASS, BeiDou, and Galileo , 2015, Journal of Geodesy.
[16] Richard P. Allan,et al. The Role of Water Vapour in Earth’s Energy Flows , 2012, Surveys in Geophysics.
[17] Ahmed El-Rabbany,et al. PPP Accuracy Enhancement Using GPS/GLONASS Observations in Kinematic Mode , 2015 .
[18] Kamil Maciuk,et al. GPS-only, GLONASS-only and Combined GPS+GLONASS Absolute Positioning under Different Sky View Conditions , 2018, Tehnicki vjesnik - Technical Gazette.
[19] Yang Gao,et al. A Troposphere Constraint Method To Improve PPP Ambiguity-Resolved Height Solution , 2013, Journal of Navigation.
[20] Feng Zhou,et al. Performance of Multi-GNSS Precise Point Positioning Time and Frequency Transfer with Clock Modeling , 2019, Remote. Sens..
[21] Jan Askne,et al. Estimation of tropospheric delay for microwaves from surface weather data , 1987 .
[22] 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.
[23] H. Schuh,et al. Short Note: A global model of pressure and temperature for geodetic applications , 2007 .
[24] G. Wang,et al. Millimeter-accuracy GPS landslide monitoring using Precise Point Positioning with Single Receiver Phase Ambiguity (PPP-SRPA) resolution: a case study in Puerto Rico , 2013 .
[25] D. Jacob,et al. The role of water vapour in the atmosphere. A short overview from a climate modeller's point of view , 2001 .