In this work we propose a model for the Probability Density Function (PDF) of the elevation angle and the PDF of the attenuation conditioned to the elevation angle at W-band and in all-weather conditions. The proposed models are suitable to retrieve the PDF of the total attenuation at variable elevation for application to non-geostationary satellite communication links at W-band. The models, based on the Generalized Extreme Value (GEV) distribution, were developed and tested exploiting W-band Sun-tracking microwave radiometer measurements available from two independent measurements campaigns in Milano (Italy) and Rome (New York, USA), the only two datasets available in the world to date. The obtained results are satisfactory with a good agreement between models and measurements and highlighting a potential relationship between the GEV parameters and the local climatology.

Statistical Modeling of Atmospheric Propagation Channel at W-Band through Sun-Tracking Microwave Radiometric Measurements for Non-Geostationary Satellite Links / Biscarini, M.; Stazi, G.; Milani, L.; Luini, L.; Riva, C.; Cimini, D.; Nilo, S. T.; Gentile, S.; Romano, F.; Brost, G.; Martellucci, A.. - In: IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION. - ISSN 0018-926X. - 71:9(2023), pp. 7512-7522. [10.1109/TAP.2023.3296852]

Statistical Modeling of Atmospheric Propagation Channel at W-Band through Sun-Tracking Microwave Radiometric Measurements for Non-Geostationary Satellite Links

M. Biscarini
;
G. Stazi;
2023

Abstract

In this work we propose a model for the Probability Density Function (PDF) of the elevation angle and the PDF of the attenuation conditioned to the elevation angle at W-band and in all-weather conditions. The proposed models are suitable to retrieve the PDF of the total attenuation at variable elevation for application to non-geostationary satellite communication links at W-band. The models, based on the Generalized Extreme Value (GEV) distribution, were developed and tested exploiting W-band Sun-tracking microwave radiometer measurements available from two independent measurements campaigns in Milano (Italy) and Rome (New York, USA), the only two datasets available in the world to date. The obtained results are satisfactory with a good agreement between models and measurements and highlighting a potential relationship between the GEV parameters and the local climatology.
2023
millimeter waves; radiopropagation models; sun-tacking microwave radiometry; slant path attenuation
01 Pubblicazione su rivista::01a Articolo in rivista
Statistical Modeling of Atmospheric Propagation Channel at W-Band through Sun-Tracking Microwave Radiometric Measurements for Non-Geostationary Satellite Links / Biscarini, M.; Stazi, G.; Milani, L.; Luini, L.; Riva, C.; Cimini, D.; Nilo, S. T.; Gentile, S.; Romano, F.; Brost, G.; Martellucci, A.. - In: IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION. - ISSN 0018-926X. - 71:9(2023), pp. 7512-7522. [10.1109/TAP.2023.3296852]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1685921
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