Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report

ESA’s POLarimetric Airborne Radar Ice Sounder demonstrator (POLARIS) – built, maintained and deployed by the Technical University of Denmark (DTU) - operates at P-band and features a multi-phase-center antenna for the purpose of surface clutter suppression. The first data suitable for the developmen...

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Main Authors: Nannini, Matteo, Prats, Pau, Scheiber, Rolf, Villano, Michelangelo, Morrison, Keith, Bennett, John, Corr, Hugh
Format: Report
Language:unknown
Published: 2013
Subjects:
Online Access:https://elib.dlr.de/87912/
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author Nannini, Matteo
Prats, Pau
Scheiber, Rolf
Villano, Michelangelo
Morrison, Keith
Bennett, John
Corr, Hugh
author_facet Nannini, Matteo
Prats, Pau
Scheiber, Rolf
Villano, Michelangelo
Morrison, Keith
Bennett, John
Corr, Hugh
author_sort Nannini, Matteo
collection Unknown
description ESA’s POLarimetric Airborne Radar Ice Sounder demonstrator (POLARIS) – built, maintained and deployed by the Technical University of Denmark (DTU) - operates at P-band and features a multi-phase-center antenna for the purpose of surface clutter suppression. The first data suitable for the development and demonstration of surface clutter cancellation methods were acquired in February 2011 during the IceGrav campaign in Antarctica. The purpose of the present study was to investigate and compare different methods for surface clutter cancellation and to implement a Processing Tool to augment the along-track POLARIS processor developed by ESA, thus improving bedrock detectability. Four algorithms have been selected for implementation and analysis: the standard beamformer, two different clutter nulling algorithms and the optimum beamformer. Prior to the analysis with real POLARIS data the algorithms have been implemented in a simulation environment, allowing for a performance analysis concerning the different input parameters. These included pulse bandwidth, aircraft roll, cross-track terrain slopes, as well as POLARIS antenna patterns. The improved performance of the nulling and optimum beamformer techniques for surface clutter suppression compared to standard beamformer has been demonstrated and requirements on the knowledge of slope and roll parameters have been quantified. By means of simulation it was shown that the relatively large separation of the POLARIS phase centers (~
format Report
genre Antarc*
Antarctica
genre_facet Antarc*
Antarctica
id ftdlr:oai:elib.dlr.de:87912
institution Open Polar
language unknown
op_collection_id ftdlr
op_relation Nannini, Matteo und Prats, Pau und Scheiber, Rolf und Villano, Michelangelo und Morrison, Keith und Bennett, John und Corr, Hugh (2013) Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report. Projektbericht. MPC-104671-FR-DLR. German Aerospace Center (DLR). 64 S.
publishDate 2013
record_format openpolar
spelling ftdlr:oai:elib.dlr.de:87912 2025-06-15T14:08:20+00:00 Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report Nannini, Matteo Prats, Pau Scheiber, Rolf Villano, Michelangelo Morrison, Keith Bennett, John Corr, Hugh 2013-04-08 https://elib.dlr.de/87912/ unknown Nannini, Matteo und Prats, Pau und Scheiber, Rolf und Villano, Michelangelo und Morrison, Keith und Bennett, John und Corr, Hugh (2013) Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report. Projektbericht. MPC-104671-FR-DLR. German Aerospace Center (DLR). 64 S. Institut für Hochfrequenztechnik und Radarsysteme Radarkonzepte SAR-Technologie Berichtsreihe NonPeerReviewed 2013 ftdlr 2025-06-04T04:58:03Z ESA’s POLarimetric Airborne Radar Ice Sounder demonstrator (POLARIS) – built, maintained and deployed by the Technical University of Denmark (DTU) - operates at P-band and features a multi-phase-center antenna for the purpose of surface clutter suppression. The first data suitable for the development and demonstration of surface clutter cancellation methods were acquired in February 2011 during the IceGrav campaign in Antarctica. The purpose of the present study was to investigate and compare different methods for surface clutter cancellation and to implement a Processing Tool to augment the along-track POLARIS processor developed by ESA, thus improving bedrock detectability. Four algorithms have been selected for implementation and analysis: the standard beamformer, two different clutter nulling algorithms and the optimum beamformer. Prior to the analysis with real POLARIS data the algorithms have been implemented in a simulation environment, allowing for a performance analysis concerning the different input parameters. These included pulse bandwidth, aircraft roll, cross-track terrain slopes, as well as POLARIS antenna patterns. The improved performance of the nulling and optimum beamformer techniques for surface clutter suppression compared to standard beamformer has been demonstrated and requirements on the knowledge of slope and roll parameters have been quantified. By means of simulation it was shown that the relatively large separation of the POLARIS phase centers (~ Report Antarc* Antarctica Unknown
spellingShingle Institut für Hochfrequenztechnik und Radarsysteme
Radarkonzepte
SAR-Technologie
Nannini, Matteo
Prats, Pau
Scheiber, Rolf
Villano, Michelangelo
Morrison, Keith
Bennett, John
Corr, Hugh
Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report
title Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report
title_full Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report
title_fullStr Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report
title_full_unstemmed Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report
title_short Multi Phase Center Processing of Ice Sounding Radar Signals for Across Track Surface Clutter Cancellation: Final Report
title_sort multi phase center processing of ice sounding radar signals for across track surface clutter cancellation: final report
topic Institut für Hochfrequenztechnik und Radarsysteme
Radarkonzepte
SAR-Technologie
topic_facet Institut für Hochfrequenztechnik und Radarsysteme
Radarkonzepte
SAR-Technologie
url https://elib.dlr.de/87912/