Di Paola, Francesco
(2008)
Aumento della risoluzione spaziale per il sondaggio di temperatura e umidità da satellite geostazionario mediante radiometria ad onde millimetriche e submillimetriche, [Dissertation thesis], Alma Mater Studiorum Università di Bologna.
Dottorato di ricerca in
Geofisica, 20 Ciclo. DOI 10.6092/unibo/amsdottorato/862.
Documenti full-text disponibili:
Abstract
The purpose of this study is to develop and evaluate techniques that improve the
spatial resolution of the channels already selected in the preliminary studies for
Geostationary Observatory for Microwave Atmospheric Soundings (GOMAS).
Reference high resolution multifrequency brightness temperatures scenarios have
been derived by applying radiative transfer calculation to the spatially and
microphysically detailed output of meteorological events simulated by the University
of Wisconsin - Non-hydrostatic Model System (UW-NMS). Three approaches, Wiener
filter, Super-Resolution and Image Fusion have been applied to some representative
GOMAS frequency channels to enhance the resolution of antenna temperatures. The
Wiener filter improved resolution of the largely oversampled images by a factor 1.5-
2.0 without introducing any penalty in the radiometric accuracy. Super-resolution,
suitable for not largely oversampled images, improved resolution by a factor ~1.5 but
introducing an increased radiometric noise by a factor 1.4-2.5. The image fusion
allows finally to further increase the spatial frequency of the images obtained by the
Wiener filter increasing the total resolution up to a factor 5.0 with an increased
radiometric noise closely linked to the radiometric frequency and to the examined
case study.
Abstract
The purpose of this study is to develop and evaluate techniques that improve the
spatial resolution of the channels already selected in the preliminary studies for
Geostationary Observatory for Microwave Atmospheric Soundings (GOMAS).
Reference high resolution multifrequency brightness temperatures scenarios have
been derived by applying radiative transfer calculation to the spatially and
microphysically detailed output of meteorological events simulated by the University
of Wisconsin - Non-hydrostatic Model System (UW-NMS). Three approaches, Wiener
filter, Super-Resolution and Image Fusion have been applied to some representative
GOMAS frequency channels to enhance the resolution of antenna temperatures. The
Wiener filter improved resolution of the largely oversampled images by a factor 1.5-
2.0 without introducing any penalty in the radiometric accuracy. Super-resolution,
suitable for not largely oversampled images, improved resolution by a factor ~1.5 but
introducing an increased radiometric noise by a factor 1.4-2.5. The image fusion
allows finally to further increase the spatial frequency of the images obtained by the
Wiener filter increasing the total resolution up to a factor 5.0 with an increased
radiometric noise closely linked to the radiometric frequency and to the examined
case study.
Tipologia del documento
Tesi di dottorato
Autore
Di Paola, Francesco
Supervisore
Dottorato di ricerca
Ciclo
20
Coordinatore
Settore disciplinare
Settore concorsuale
Parole chiave
microonde satellite sondaggio profilo verticale umidità temperatura
URN:NBN
DOI
10.6092/unibo/amsdottorato/862
Data di discussione
30 Giugno 2008
URI
Altri metadati
Tipologia del documento
Tesi di dottorato
Autore
Di Paola, Francesco
Supervisore
Dottorato di ricerca
Ciclo
20
Coordinatore
Settore disciplinare
Settore concorsuale
Parole chiave
microonde satellite sondaggio profilo verticale umidità temperatura
URN:NBN
DOI
10.6092/unibo/amsdottorato/862
Data di discussione
30 Giugno 2008
URI
Statistica sui download
Gestione del documento: