The measure of water vapor (WV) in the lowest part of the troposphere is a critical issue which, up to now, cannot be measured from space with sufficient accuracy. A novel technique, which is based on a microwave radio link and the measure of differential attenuation of two signals transmitted at closely spaced frequencies in the Ku-K band, has been recently proposed. In order to prove the potential of this technique a new low-cost microwave link has been designed and the first measurements will be performed by means of a ground-to-ground link. Instrument design and characteristics, as well as expected results are presented here
The development of a system capable of continuously monitoring atmospheric brightness temperatures a...
A microwave interferometer system for humidity measurement has been developed. The system is based o...
Water vapor as an error source in radio interferometry systems is briefly examined. At microwave fre...
The measure of water vapor (WV) in the lowest part of the troposphere is a critical issue which, up ...
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...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...
A dual-channel, ground-based microwave radiometer, working at the frequencies 21.0 and 31.4 GHz, an ...
Water vapor in the atmosphere plays a crucial role in climate and in atmospheric processes. Due to i...
A dual-frequency microwave radiometer has been developed to remotely sense water vapor and liquid in...
The MGO St-Peterburg Russia has designed ground-based microwave radiometric tools for investigations...
We present a new compact ground-based microwave radiometer dedicated to the study of middle atmosphe...
Abstract An empirical model estimating water vapor density from the attenuation of electromagnetic w...
Microwave radiometers were used to measure the emission line due to the water vapor molecules of atm...
Knowledge of the temporal and spatial distribution of water vapor and liquid water in the tropospher...
The development of a system capable of continuously monitoring atmospheric brightness temperatures a...
A microwave interferometer system for humidity measurement has been developed. The system is based o...
Water vapor as an error source in radio interferometry systems is briefly examined. At microwave fre...
The measure of water vapor (WV) in the lowest part of the troposphere is a critical issue which, up ...
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...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...
A dual-channel, ground-based microwave radiometer, working at the frequencies 21.0 and 31.4 GHz, an ...
Water vapor in the atmosphere plays a crucial role in climate and in atmospheric processes. Due to i...
A dual-frequency microwave radiometer has been developed to remotely sense water vapor and liquid in...
The MGO St-Peterburg Russia has designed ground-based microwave radiometric tools for investigations...
We present a new compact ground-based microwave radiometer dedicated to the study of middle atmosphe...
Abstract An empirical model estimating water vapor density from the attenuation of electromagnetic w...
Microwave radiometers were used to measure the emission line due to the water vapor molecules of atm...
Knowledge of the temporal and spatial distribution of water vapor and liquid water in the tropospher...
The development of a system capable of continuously monitoring atmospheric brightness temperatures a...
A microwave interferometer system for humidity measurement has been developed. The system is based o...
Water vapor as an error source in radio interferometry systems is briefly examined. At microwave fre...