Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improve our knowledge of the atmospheric dynamics and the performance of numerical weather prediction models. In recent studies, a new measurement concept, the normalized differential spectral attenuation (NDSA) approach, was proposed. It is based on measurements of differential attenuation at 18.8 and 19.2 GHz performed along a tropospheric radio link. While NDSA measurement at a fixed elevation angle provides information on integrated WV (IWV), measurements at different elevation angles allow to retrieve the vertical WV content profile. A prototype NDSA demonstrator, which consists of two units, a synthesized transmitter and a software-defined ra...
The exploitation of multifrequency differential attenuation measurements at microwaves made between ...
Based on a Ph.D. thesis in the Dept. of Meteorology, 1967.Bibliography: p. 99-101
The DSA (Differential Spectral Attenuation) approach, presented in a companion paper in this confere...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...
The estimation of water vapor (WV) content in the lowest part of the troposphere is a critical issue...
The estimation of water vapor (WV) content in the lowest part of the troposphere is a critical issue...
The knowledge of the water vapor (WV) distribution in the Earth's atmosphere is of great importance ...
The measure of water vapor (WV) in the lowest part of the troposphere is a critical issue which, up ...
NDSA (Normalized Differential Spectral Absorption) was recently proposed as a differential attenuati...
A dual-channel, ground-based microwave radiometer, working at the frequencies 21.0 and 31.4 GHz, an ...
Knowledge of the temporal and spatial distribution of water vapor and liquid water in the tropospher...
A deeper understanding of how clouds will respond to a warming climate is one of the outstanding cha...
15th MST Radar WorkshopSession M2: New radar/radio systems and future MST plansMay 30 (Tue), NIPR Au...
Water vapor in the atmosphere plays a crucial role in climate and in atmospheric processes. Due to i...
The radio wave propagation time, the primary observable in the geodetic techniques Global Positionin...
The exploitation of multifrequency differential attenuation measurements at microwaves made between ...
Based on a Ph.D. thesis in the Dept. of Meteorology, 1967.Bibliography: p. 99-101
The DSA (Differential Spectral Attenuation) approach, presented in a companion paper in this confere...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...
The estimation of water vapor (WV) content in the lowest part of the troposphere is a critical issue...
The estimation of water vapor (WV) content in the lowest part of the troposphere is a critical issue...
The knowledge of the water vapor (WV) distribution in the Earth's atmosphere is of great importance ...
The measure of water vapor (WV) in the lowest part of the troposphere is a critical issue which, up ...
NDSA (Normalized Differential Spectral Absorption) was recently proposed as a differential attenuati...
A dual-channel, ground-based microwave radiometer, working at the frequencies 21.0 and 31.4 GHz, an ...
Knowledge of the temporal and spatial distribution of water vapor and liquid water in the tropospher...
A deeper understanding of how clouds will respond to a warming climate is one of the outstanding cha...
15th MST Radar WorkshopSession M2: New radar/radio systems and future MST plansMay 30 (Tue), NIPR Au...
Water vapor in the atmosphere plays a crucial role in climate and in atmospheric processes. Due to i...
The radio wave propagation time, the primary observable in the geodetic techniques Global Positionin...
The exploitation of multifrequency differential attenuation measurements at microwaves made between ...
Based on a Ph.D. thesis in the Dept. of Meteorology, 1967.Bibliography: p. 99-101
The DSA (Differential Spectral Attenuation) approach, presented in a companion paper in this confere...