2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters

Fully-focusing of radar altimeters is a recent concept that has been introduced to allow further improvement of along-track resolution in high pulse repetition frequency (PRF) radar altimeters. The straight potentiality of this new perspective reflects into a more accurate estimation of geophysical...

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Main Authors: Pietro Guccione, Michele Scagliola, Davide Giudici
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Remote Sensing
Subjects:
Online Access:https://www.mdpi.com/2072-4292/10/12/1943
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spelling doaj-13c9fc8cfa434a2c940c67b8403ed7132020-11-24T23:30:10ZengMDPI AGRemote Sensing2072-42922018-12-011012194310.3390/rs10121943rs101219432D Frequency Domain Fully Focused SAR Processing for High PRF Radar AltimetersPietro Guccione0Michele Scagliola1Davide Giudici2Department of Electrical and Information Engineering, Politecnico di Bari, 70125 Bari, ItalyAresys srl, via Flumendosa 16, 20132 Milan, ItalyAresys srl, via Flumendosa 16, 20132 Milan, ItalyFully-focusing of radar altimeters is a recent concept that has been introduced to allow further improvement of along-track resolution in high pulse repetition frequency (PRF) radar altimeters. The straight potentiality of this new perspective reflects into a more accurate estimation of geophysical parameters in some applications such as sea-ice observation. However, as documented in a recent paper, such capability leaves unsolved the problem of the high computational effort required. In this paper, we face the problem of adapting for altimeters the Omega-Kappa SAR focusing algorithm that is performed in the two-dimensional wavenumber domain, accounting for the difference existing between SAR and altimeter from geometry (looking and swath width) and instrument (echoes are deramped onboard on receiving) point of view. Simulations and an application using in-orbit data show the effectiveness of the proposed approach and the highly reduced computational effort.https://www.mdpi.com/2072-4292/10/12/1943altimeterSynthetic Aperture RadarDelay/Doppler altimeterOmega-Kappa domain
collection DOAJ
language English
format Article
sources DOAJ
author Pietro Guccione
Michele Scagliola
Davide Giudici
spellingShingle Pietro Guccione
Michele Scagliola
Davide Giudici
2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters
Remote Sensing
altimeter
Synthetic Aperture Radar
Delay/Doppler altimeter
Omega-Kappa domain
author_facet Pietro Guccione
Michele Scagliola
Davide Giudici
author_sort Pietro Guccione
title 2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters
title_short 2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters
title_full 2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters
title_fullStr 2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters
title_full_unstemmed 2D Frequency Domain Fully Focused SAR Processing for High PRF Radar Altimeters
title_sort 2d frequency domain fully focused sar processing for high prf radar altimeters
publisher MDPI AG
series Remote Sensing
issn 2072-4292
publishDate 2018-12-01
description Fully-focusing of radar altimeters is a recent concept that has been introduced to allow further improvement of along-track resolution in high pulse repetition frequency (PRF) radar altimeters. The straight potentiality of this new perspective reflects into a more accurate estimation of geophysical parameters in some applications such as sea-ice observation. However, as documented in a recent paper, such capability leaves unsolved the problem of the high computational effort required. In this paper, we face the problem of adapting for altimeters the Omega-Kappa SAR focusing algorithm that is performed in the two-dimensional wavenumber domain, accounting for the difference existing between SAR and altimeter from geometry (looking and swath width) and instrument (echoes are deramped onboard on receiving) point of view. Simulations and an application using in-orbit data show the effectiveness of the proposed approach and the highly reduced computational effort.
topic altimeter
Synthetic Aperture Radar
Delay/Doppler altimeter
Omega-Kappa domain
url https://www.mdpi.com/2072-4292/10/12/1943
work_keys_str_mv AT pietroguccione 2dfrequencydomainfullyfocusedsarprocessingforhighprfradaraltimeters
AT michelescagliola 2dfrequencydomainfullyfocusedsarprocessingforhighprfradaraltimeters
AT davidegiudici 2dfrequencydomainfullyfocusedsarprocessingforhighprfradaraltimeters
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