A variety of climate factors influence the precision of the long-term Global Navigation Satellite System (GNSS) monitoring data. To precisely analyze the effect of different climate factors on long-term GNSS monitoring records, this study combines the extended seven-parameter Helmert transformation and a machine learning algorithm named Extreme Gradient boosting (XGboost) to establish a hybrid model. We established a local-scale reference frame called stable Puerto Rico and Virgin Islands reference frame of 2019 (PRVI19) using ten continuously operating long-term GNSS sites located in the rigid portion of the Puerto Rico and Virgin Islands (PRVI) microplate. The stability of PRVI19 is approximately 0.4 mm/year and 0.5 mm/year in the horizon...
The long-term stability, high accuracy, all-weather capability, high vertical resolution, and global...
Over the last decade, Global Navigation Satellite Systems (GNSS) have emerged as a precise and cost-...
The long-term stability, high accuracy, all-weather capability, high vertical resolution, and global...
Global navigation satellite system (GNSS) site coordinate time series provides essential data for ge...
Long-term Global Navigation Satellite System (GNSS) height residual time series contain signals that...
Seasonal signals caused by the Earth’s surface mass redistribution can be detected by Global N...
International audienceThanks to the increasing number of permanent GNSS stations in Europe and their...
Considerable efforts are currently invested into the setup of a Global Climate Observing System (GCO...
International audienceSeasonal deformation related to mass redistribution on the Earth's surface can...
This paper is aimed at the problem of predicting the land subsidence or upheave in an area, using GN...
GNSS height residuals often exhibit seasonal amplitudes, that can partly be explained by environment...
Global Navigation Satellite Systems (GNSS) can be used formany applications with time scales varying...
The main objective of the International GNSS Service (IGS) Tide Gauge Benchmark Monitoring (TIGA) Wo...
International audienceThere has been growing interest in recent years in the use of homogeneously re...
Global Navigation Satellite System (GNSS) provides autonomous positioning, navigation, and timing se...
The long-term stability, high accuracy, all-weather capability, high vertical resolution, and global...
Over the last decade, Global Navigation Satellite Systems (GNSS) have emerged as a precise and cost-...
The long-term stability, high accuracy, all-weather capability, high vertical resolution, and global...
Global navigation satellite system (GNSS) site coordinate time series provides essential data for ge...
Long-term Global Navigation Satellite System (GNSS) height residual time series contain signals that...
Seasonal signals caused by the Earth’s surface mass redistribution can be detected by Global N...
International audienceThanks to the increasing number of permanent GNSS stations in Europe and their...
Considerable efforts are currently invested into the setup of a Global Climate Observing System (GCO...
International audienceSeasonal deformation related to mass redistribution on the Earth's surface can...
This paper is aimed at the problem of predicting the land subsidence or upheave in an area, using GN...
GNSS height residuals often exhibit seasonal amplitudes, that can partly be explained by environment...
Global Navigation Satellite Systems (GNSS) can be used formany applications with time scales varying...
The main objective of the International GNSS Service (IGS) Tide Gauge Benchmark Monitoring (TIGA) Wo...
International audienceThere has been growing interest in recent years in the use of homogeneously re...
Global Navigation Satellite System (GNSS) provides autonomous positioning, navigation, and timing se...
The long-term stability, high accuracy, all-weather capability, high vertical resolution, and global...
Over the last decade, Global Navigation Satellite Systems (GNSS) have emerged as a precise and cost-...
The long-term stability, high accuracy, all-weather capability, high vertical resolution, and global...