Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

GPU-accelerated 3D backprojection of ALOS SAR data from Greenland

View through CrossRef
The backprojection algorithm for synthetic aperture radar (SAR) has the ability of focusing raw data and forming an image without requiring simplifying assumptions for the azimuth-direction phase response of the recorded signal (Zebker et al., 2010). In fact, the usual quadratic phase assumption is not accurate when the recording platform is affected by turbulent motion or when wide variations in incidence angle across the range swath are present in the acquired data (Duersh, 2013). In addition, as we show here the backprojection algorithm is easily extendable to create SAR images of the subsurface in addition to the surface. These reasons make backprojection a well-suited method to create 3D subsurface SAR volume images from spaceborne acquisitions. The ability to form 3D SAR volumes using spaceborne data allows the study of larger areas than those available using to airborne acquisitions (Hélière et al., 2007). In this work, we create volume images by applying a 3D backprojection method to Advanced Land Observing Satellite (ALOS) data recorded over an icy area in Greenland previously studied by Banda et at. (2016). The 3D SAR image volumes created using different acquisition times enables the study of the evolution of the ice structure and properties. To decrease the processing time, we implement our algorithm using graphics processing units (GPUs) by taking advantage of the embarrassingly parallel nature of the backprojection algorithm (Fasih and Hartley, 2010).
Title: GPU-accelerated 3D backprojection of ALOS SAR data from Greenland
Description:
The backprojection algorithm for synthetic aperture radar (SAR) has the ability of focusing raw data and forming an image without requiring simplifying assumptions for the azimuth-direction phase response of the recorded signal (Zebker et al.
, 2010).
In fact, the usual quadratic phase assumption is not accurate when the recording platform is affected by turbulent motion or when wide variations in incidence angle across the range swath are present in the acquired data (Duersh, 2013).
In addition, as we show here the backprojection algorithm is easily extendable to create SAR images of the subsurface in addition to the surface.
These reasons make backprojection a well-suited method to create 3D subsurface SAR volume images from spaceborne acquisitions.
The ability to form 3D SAR volumes using spaceborne data allows the study of larger areas than those available using to airborne acquisitions (Hélière et al.
, 2007).
In this work, we create volume images by applying a 3D backprojection method to Advanced Land Observing Satellite (ALOS) data recorded over an icy area in Greenland previously studied by Banda et at.
(2016).
The 3D SAR image volumes created using different acquisition times enables the study of the evolution of the ice structure and properties.
To decrease the processing time, we implement our algorithm using graphics processing units (GPUs) by taking advantage of the embarrassingly parallel nature of the backprojection algorithm (Fasih and Hartley, 2010).

Related Results

Marine applications of SAR polarimetry
Marine applications of SAR polarimetry
Els oceans mantenen una fràgil i complexa cadena que enllaça un alt nombre de factors biològics, sociològics i econòmics. Actualment, aquest ecosistema està amenaçat per l'activita...
Deformation measurement and monitoring with Ground-Based SAR
Deformation measurement and monitoring with Ground-Based SAR
The Ground-Based Synthetic Aperture Radar (GB-SAR) is a relatively new technique, which in the last ten years has gained interest as deformation measurement and m...
Ground moving target indication with synthetic aperture radars for maritime surveillance
Ground moving target indication with synthetic aperture radars for maritime surveillance
The explosive growth of shipping traffic all over the World, with around three quarters of the total trade goods and crude oil transported by sea, has raised newly emerging concern...
Polarimetric differential SAR Interferometry with ground-based sensors
Polarimetric differential SAR Interferometry with ground-based sensors
Las técnicas de Interferometría Diferencial se basan en la combinación de varias imágenes SAR con distinta separación temporal y permiten la recuperación de las componentes lineale...
Preliminary landslide mapping in Greenland
Preliminary landslide mapping in Greenland
The landslide of 17 June 2017 in Karrat Fjord, central West Greenland, highlighted the need for a better understanding of landslides and landslide-generated tsunamis in Greenland a...
Heat transfer in supercritical fluids: computational approaches & studies
Heat transfer in supercritical fluids: computational approaches & studies
(English) This thesis delves into investigating the complexities of heat transfer in supercritical fluids through the application of advanced theoretical and computational methodol...
Cross-shelf exchanges between the East Greenland shelf and interior seas
Cross-shelf exchanges between the East Greenland shelf and interior seas
The Atlantic Meridional Overturning Circulation (AMOC) is predicted to weaken in the 21st century as a result of climate change. One of the proposed drivers for such a weakening is...

Back to Top