Zenith tropospheric delay (ZTD) plays an important role in high-precision global navigation satellite system (GNSS) positioning and meteorology. At present, commonly used ZTD forecasting models comprise empirical, meteorological parameter, and neural network models. The empirical model can only fit approximate periodic variations, and its accuracy is relatively low. The accuracy of the meteorological parameter model depends heavily on the accuracy of the meteorological parameters. The recurrent neural network (RNN) is suitable for short-term series data prediction, but for long-term series, the ZTD prediction accuracy is clearly reduced. Long short-term memory (LSTM) has superior forecasting accuracy for long-term ZTD series; however, the L...
The time resolution of GZTD model developed by Yao[16] is 24 hours. To further improve the time reso...
Accurate GPS-derived ZTD (zenith tropospheric delay) plays a key role in near real-time weather fore...
Global navigation satellite system (GNSS) remote sensing of the troposphere, called GNSS meteorology...
Global navigation satellite system (GNSS) signals are affected by refraction when traveling through ...
Abstract The tropospheric delay is a significant error source in Global Navigation Satellite System ...
The tropospheric delay is a major error source for Global Navigation Satellite System (GNSS) positio...
This paper presents the preliminary results in establishing a strategy for predicting Zenith Troposp...
The Global Navigation Satellite System (GNSS) can be used to derive accurately the Zenith Tropospher...
Accurate tropospheric delay (TD) and weighted mean temperature (Tm) are important for Global Navigat...
With the ongoing development of global navigation satellite system (GNSS) technologies, user's depen...
The zenith tropospheric delay (ZTD) is an important atmospheric parameter in the wide application of...
Sentinel-1 mission with its wide spatial coverage (250 km), short revisit time (6 days), and rapid d...
The use of observations from Global Navigation Satellite Systems (GNSS) in operational meteorology i...
Tropospheric delay is an important error affecting GNSS high-precision navigation and positioning, w...
Tropospheric delay is a major error source that affects the performance of the Global Navigation Sat...
The time resolution of GZTD model developed by Yao[16] is 24 hours. To further improve the time reso...
Accurate GPS-derived ZTD (zenith tropospheric delay) plays a key role in near real-time weather fore...
Global navigation satellite system (GNSS) remote sensing of the troposphere, called GNSS meteorology...
Global navigation satellite system (GNSS) signals are affected by refraction when traveling through ...
Abstract The tropospheric delay is a significant error source in Global Navigation Satellite System ...
The tropospheric delay is a major error source for Global Navigation Satellite System (GNSS) positio...
This paper presents the preliminary results in establishing a strategy for predicting Zenith Troposp...
The Global Navigation Satellite System (GNSS) can be used to derive accurately the Zenith Tropospher...
Accurate tropospheric delay (TD) and weighted mean temperature (Tm) are important for Global Navigat...
With the ongoing development of global navigation satellite system (GNSS) technologies, user's depen...
The zenith tropospheric delay (ZTD) is an important atmospheric parameter in the wide application of...
Sentinel-1 mission with its wide spatial coverage (250 km), short revisit time (6 days), and rapid d...
The use of observations from Global Navigation Satellite Systems (GNSS) in operational meteorology i...
Tropospheric delay is an important error affecting GNSS high-precision navigation and positioning, w...
Tropospheric delay is a major error source that affects the performance of the Global Navigation Sat...
The time resolution of GZTD model developed by Yao[16] is 24 hours. To further improve the time reso...
Accurate GPS-derived ZTD (zenith tropospheric delay) plays a key role in near real-time weather fore...
Global navigation satellite system (GNSS) remote sensing of the troposphere, called GNSS meteorology...