An enhanced spatial resolution brightness temperature product is proposed for future conical scan microwave radiometers. The technique is developed for Copernicus Imaging Microwave Radiometer (CIMR) measurements that are simulated using the CIMR antenna pattern at the L-band and the measurement geometry proposed in the Phase A study led by Airbus. An inverse antenna pattern reconstruction method is proposed. Reconstructions are obtained using two CIMR configurations, namely, using measurements collected at L-band by the forward (FWD) scans only, and combining forward and backward (FWD+BWD) scans. Two spatial grids are adopted, namely, 3 km x 3 km and 36 km x 36 km. Simulation results, referred to synthetic and realistic reference brightness fields, demonstrate the soundness of the proposed scheme that provides brightness temperature fields reconstructed at a spatial resolution up to ~ 1.9 times finer than the measured field when using the FWD+BWD combination.

An enhanced resolution brightness temperature product for future conical scanning microwave radiometers / Nunziata, F.; Alparone, M.; Camps, A.; Park, H.; Zurita, A. M.; Estatico, C.; Migliaccio, M.. - In: IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING. - ISSN 0196-2892. - 60:(2022). [10.1109/TGRS.2021.3109376]

An enhanced resolution brightness temperature product for future conical scanning microwave radiometers

Nunziata F.;Migliaccio M.
2022

Abstract

An enhanced spatial resolution brightness temperature product is proposed for future conical scan microwave radiometers. The technique is developed for Copernicus Imaging Microwave Radiometer (CIMR) measurements that are simulated using the CIMR antenna pattern at the L-band and the measurement geometry proposed in the Phase A study led by Airbus. An inverse antenna pattern reconstruction method is proposed. Reconstructions are obtained using two CIMR configurations, namely, using measurements collected at L-band by the forward (FWD) scans only, and combining forward and backward (FWD+BWD) scans. Two spatial grids are adopted, namely, 3 km x 3 km and 36 km x 36 km. Simulation results, referred to synthetic and realistic reference brightness fields, demonstrate the soundness of the proposed scheme that provides brightness temperature fields reconstructed at a spatial resolution up to ~ 1.9 times finer than the measured field when using the FWD+BWD combination.
2022
antenna measurements; inverse problem; microwave measurement; microwave radiometer; microwave radiometry; multichannel data fusion; radiometers; resolution enhancement; sea measurements; spatial resolution; temperature measurement
01 Pubblicazione su rivista::01a Articolo in rivista
An enhanced resolution brightness temperature product for future conical scanning microwave radiometers / Nunziata, F.; Alparone, M.; Camps, A.; Park, H.; Zurita, A. M.; Estatico, C.; Migliaccio, M.. - In: IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING. - ISSN 0196-2892. - 60:(2022). [10.1109/TGRS.2021.3109376]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1718474
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