The marine boundary layer (MBL) is the region where energy, momentum and masses are exchanged between the ocean surface and the free troposphere. The lack of observations with high vertical resolution over the ocean significantly restricts the understanding of the complex physical processes that occur inside the MBL. The relatively short vertical extent of the MBL (average about 1~2 km) and the frequent cloudiness at its top make probing the MBL extremely difficult from the space. Several features of the Global Positioning System (GPS) radio occultation (RO) technique suggest that it has a great potential for sensing the MBL. These features include global coverage, high vertical resolution, and the ability of GPS signals to penetrate clouds...
The use of ground-based GPS observations for the estimation of preciptiable water vapor (PWV) is now...
Increasing the density of Global Navigation Satellite System radio occultation (RO) with commercial ...
(RO) is a space-borne remote sensing technique providing accurate, all-weather, high vertical resolu...
Global Navigation Satellite System (GNSS) radio occultation (RO) measurements are promising in sensi...
This study presents an algorithm for estimating atmospheric boundary layer (ABL) depth from Global P...
The Global Navigation Satellite System (GNSS) radio occultation (RO) is an effective tool for Earth ...
In this study, high-resolution radiosondes from the MAGIC field campaign and ERA5 global reanalysis ...
The marine atmospheric boundary layer (MABL) has a profound impact on sensible heat and moisture exc...
Global Navigation Satellite System (GNSS) Radio Occultation (RO) is an atmospheric remote sensing me...
The Global Positioning System radio occultation experiment aboard the geoscience satellite CHAMP (CH...
The GNSS Instrument System for Multistatic and Occultation Sensing (GISMOS) was designed for dense s...
The global positioning system (GPS) radio occultation (RO) method is a relatively new technique for ...
This work consists of the development and validation of a new radar product based on Bragg scatterin...
Knowledge on the marine boundary layer is of importance for the prediction of the optical image qual...
Atmospheric soundings using signals received in low Earth orbit from Global Positioning System (GPS)...
The use of ground-based GPS observations for the estimation of preciptiable water vapor (PWV) is now...
Increasing the density of Global Navigation Satellite System radio occultation (RO) with commercial ...
(RO) is a space-borne remote sensing technique providing accurate, all-weather, high vertical resolu...
Global Navigation Satellite System (GNSS) radio occultation (RO) measurements are promising in sensi...
This study presents an algorithm for estimating atmospheric boundary layer (ABL) depth from Global P...
The Global Navigation Satellite System (GNSS) radio occultation (RO) is an effective tool for Earth ...
In this study, high-resolution radiosondes from the MAGIC field campaign and ERA5 global reanalysis ...
The marine atmospheric boundary layer (MABL) has a profound impact on sensible heat and moisture exc...
Global Navigation Satellite System (GNSS) Radio Occultation (RO) is an atmospheric remote sensing me...
The Global Positioning System radio occultation experiment aboard the geoscience satellite CHAMP (CH...
The GNSS Instrument System for Multistatic and Occultation Sensing (GISMOS) was designed for dense s...
The global positioning system (GPS) radio occultation (RO) method is a relatively new technique for ...
This work consists of the development and validation of a new radar product based on Bragg scatterin...
Knowledge on the marine boundary layer is of importance for the prediction of the optical image qual...
Atmospheric soundings using signals received in low Earth orbit from Global Positioning System (GPS)...
The use of ground-based GPS observations for the estimation of preciptiable water vapor (PWV) is now...
Increasing the density of Global Navigation Satellite System radio occultation (RO) with commercial ...
(RO) is a space-borne remote sensing technique providing accurate, all-weather, high vertical resolu...