This communication presents an improved approximate method for the estimation of water vapor attenuation along Earth-space slant paths, over the 1-350-GHz frequency range. Evaluated against a large set of radiosonde data, the proposed method provides more accurate results than those delivered by the current alternative approximation methods included in Annex 2 of recommendation ITU-R P.676-10. This result is important as it sheds light on which approximate water vapor attenuation model should be selected for predictions along Earth-space slant paths
A single model for a standard of comparison for other models when dealing with rain attenuation prob...
236-239Water vapour plays a dominant role in terrestrial and earth-space communication systems. Base...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...
This communication presents an improved approximate method for the estimation of water vapor attenua...
This contribution focuses on improving the accuracy of the simplified method currently recommended b...
The accuracy of the approximate prediction models included in recommendation ITU-R P.676 aimed at es...
A simplified yet accurate model to predict oxygen attenuation for Earth-space applications (10-350 G...
This letter presents a simple and accurate approach to calculate cloud attenuation for Earth-space c...
Abstract — This contribution presents a simple and accurate approach to calculate cloud attenuation ...
165-171Emission and absorption of microwaves in atmospheric gases often limit the useful sensitivity...
The water vapor absorption effect cannot be neglected in satellite communication (SatCom) systems op...
A single model for a standard of comparison for other models when dealing with rain attenuation prob...
236-239Water vapour plays a dominant role in terrestrial and earth-space communication systems. Base...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...
This communication presents an improved approximate method for the estimation of water vapor attenua...
This contribution focuses on improving the accuracy of the simplified method currently recommended b...
The accuracy of the approximate prediction models included in recommendation ITU-R P.676 aimed at es...
A simplified yet accurate model to predict oxygen attenuation for Earth-space applications (10-350 G...
This letter presents a simple and accurate approach to calculate cloud attenuation for Earth-space c...
Abstract — This contribution presents a simple and accurate approach to calculate cloud attenuation ...
165-171Emission and absorption of microwaves in atmospheric gases often limit the useful sensitivity...
The water vapor absorption effect cannot be neglected in satellite communication (SatCom) systems op...
A single model for a standard of comparison for other models when dealing with rain attenuation prob...
236-239Water vapour plays a dominant role in terrestrial and earth-space communication systems. Base...
Measurement of water vapor (WV) in the lower troposphere on a continuous temporal basis would improv...