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Publications about 'fast-factorized back-projection (FFBP)'
Articles in journal or book chapters
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S. Zhou,
L. Yang,
L. Zhao,
and G. Bi.
Quasi-Polar-Based FFBP Algorithm for Miniature UAV SAR Imaging Without Navigational Data.
IEEE Transactions on Geoscience and Remote Sensing,
55(12):7053-7065,
December 2017.
Keyword(s): autonomous aerial vehicles,
image resolution,
radar imaging,
radar resolution,
synthetic aperture radar,
polar coordinate system,
phase autofocusing,
trajectory deviations,
quasipolar grid image,
data-driven motion compensation,
back-projection algorithm,
unmanned aerial vehicle synthetic aperture radar applications,
time-domain algorithms,
trajectory designation,
flexible geometric configuration,
navigational data,
miniature UAV SAR imaging,
FFBP algorithm,
miniature UAV-SAR test bed,
raw data experiments,
high-resolution SAR applications,
image focusing quality,
analytical image spectrum,
phase errors,
quasipolar coordinate system,
Synthetic aperture radar,
Trajectory,
Unmanned aerial vehicles,
Signal processing algorithms,
Algorithm design and analysis,
Fast factorized back-projection (FFBP),
motion compensation (MOCO),
quasi-polar coordinate system,
synthetic aperture radar (SAR),
unmanned aerial vehicle (UAV).
[Abstract]
[bibtex-entry]
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Octavio Ponce,
Pau Prats-Iraola,
Rolf Scheiber,
Andreas Reigber,
and Alberto Moreira.
First Airborne Demonstration of Holographic SAR Tomography With Fully Polarimetric Multicircular Acquisitions at L-Band.
IEEE_J_GRS,
54(10):6170-6196,
October 2016.
Keyword(s): geophysical techniques,
radar imaging,
remote sensing by radar,
synthetic aperture radar,
2-D synthetic aperture,
Fully Polarimetric Multicircular Acquisitions,
German Aerospace Center,
Germany,
HoloSAR tomogram polarimetric analysis,
Kaufbeuren,
L-Band,
SAR systems,
airborne F-SAR sensor,
coherent imaging approach,
complex reflectivity,
compressive sensing,
fast-factorized back-projection,
forest backscattering analysis,
full 3-D reconstructions,
generalized likelihood ratio test,
geometric acquisition,
geoscience community,
holographic SAR tomography,
holographic techniques,
impulse response function,
incoherent imaging,
individual circular trajectories,
internal structure imaging,
multicircular SAR acquisitions,
polarimetric L-band HoloSAR survey,
radar resolution capability function,
scatterer polarimetric signature,
semitransparent media,
sidelobe power,
spatial resolution,
target 3-D IRF,
tomographic techniques,
volumetric backscattering,
Apertures,
Radar imaging,
Spatial resolution,
Synthetic aperture radar,
Tomography,
Circular synthetic aperture radar (CSAR),
compressive sensing (CS),
fast-factorized back-projection (FFBP),
holographic sar tomography (HoloSAR),
phase gradient autofocus (PGA),
polarimetric synthetic aperture radar (PolSAR).
[bibtex-entry]
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Lei Zhang,
Hao-lin Li,
Zhi-Jun Qiao,
Meng-Dao Xing,
and Zheng Bao.
Integrating Autofocus Techniques With Fast Factorized Back-Projection for High-Resolution Spotlight SAR Imaging.
IEEE Geosci. Remote Sens. Lett.,
10(6):1394-1398,
November 2013.
Keyword(s): SAR Processing,
Fast-Factorized Back-Projection,
FFBP,
Time-Domain Back-Projection,
TDBP,
Fourier transforms,
geophysical techniques,
remote sensing by radar,
synthetic aperture radar,
BP coordinate,
BP imagery,
FFBP SA images,
FFBP recursion,
FFBP sub-aperture images,
Fourier transform,
MAMD algorithm,
MAMD recursion,
conventional autofocus techniques integration,
fast factorized back-projection,
high efficiency FFBP,
high precision FFBP,
high-resolution SAR imaging,
high-resolution spotlight SAR imaging,
high-resolution synthetic aperture radar imaging,
novel multiple aperture map drift algorithm,
phase correction,
phase error function,
range-compressed phase history data,
raw data,
real data experiments,
well-focused imagery,
Apertures,
Azimuth,
Doppler effect,
Fourier transforms,
History,
Signal processing algorithms,
Synthetic aperture radar,
Autofocus,
back-projection (BP),
fast factorized back-projection (FFBP),
multiple aperture map drift (MAMD),
synthetic aperture radar (SAR).
[Abstract]
[bibtex-entry]
Conference articles
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O. Ponce,
H. Joerg,
R. Scheiber,
P. Prats,
I. Hajnsek,
and A. Reigber.
First study on holographic SAR tomography over agricultural crops at C-/X-band.
In Proc. IEEE Int. Geoscience and Remote Sensing Symp. (IGARSS),
pages 7403-7406,
July 2016.
Keyword(s): crops,
geophysical image processing,
image reconstruction,
radar polarimetry,
remote sensing by radar,
synthetic aperture radar,
2D polarimetric image,
3D crop field backscattering,
3D forest backscattering distribution,
3D imaging reconstruction,
3D polarimetric image,
C-band SAR,
DLR F-SAR sensor,
Germany,
HoloSAR campaign,
HoloSAR imaging mode,
HoloSAR tomography,
Wallerfing,
X-band SAR,
agricultural crop,
azimuthal aspect angle,
holographic SAR,
scattering mechanisms,
tomographic constellation,
Tomography,
Agricultural crops,
Fast Factorized Back-Projection (FFBP),
Holographic SAR Tomography (HoloSAR),
Polarimetric Synthetic Aperture Radar (PolSAR).
[bibtex-entry]
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O. Ponce,
R. Scheiber,
P. Prats,
I. Hajnsek,
and A. Reigber.
Multi-dimensional airborne holographic SAR tomography reconstruction for glaciers at L-/P-band.
In Proc. IEEE Int. Geoscience and Remote Sensing Symp. (IGARSS),
pages 9-12,
July 2016.
Keyword(s): geophysical image processing,
glaciology,
hydrological techniques,
image reconstruction,
remote sensing by radar,
solid modelling,
synthetic aperture radar,
2-D image arc-pattern,
2-D image circular pattern,
3-D imaging reconstructions,
Greenland,
HoIoSAR campaign,
HoloSAR mode,
K-Transect,
circular synthetic aperture,
cryosphere,
fast factorized back-projection,
fully polarimetric data,
glacier structures,
glacier vertical profile,
ice sheet vertical profile,
ice structures,
multidimensional airborne holographic SAR tomography reconstruction,
vertical synthetic aperture,
Apertures,
Ice,
Image resolution,
L-band,
Synthetic aperture radar,
Tomography,
Cryosphere,
Fast Factorized Back-Projection (FFBP),
Glaciers,
Holographic SAR Tomography (HoloSAR),
Polarimetric Synthetic Aperture Radar (PolSAR).
[bibtex-entry]
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O. Ponce,
P. Prats,
R. Scheiber,
A. Reigber,
I. Hajnsek,
and A. Moreira.
Polarimetric 3-D imaging with airborne holographic SAR tomography over glaciers.
In Proc. IEEE Int. Geoscience and Remote Sensing Symp. (IGARSS),
pages 5280-5283,
July 2015.
Keyword(s): airborne radar,
glaciology,
hydrological techniques,
radar polarimetry,
synthetic aperture radar,
DLR F-SAR sensor,
Findel glacier,
HoloSAR campaign,
L-band,
Monte Rosa,
Switzerland,
airborne holographic SAR tomography mode,
arc-pattern,
bedrock vertical profile,
biosphere,
circular pattern,
circular synthetic aperture,
cryosphere,
glacier backscattering,
ice sheet vertical profile,
polarimetric 3-D imaging reconstruction,
polarimetric analysis,
single circular flight,
snow vertical profile,
vertical synthetic aperture,
Apertures,
Ice,
Image resolution,
Radar imaging,
Synthetic aperture radar,
Tomography,
Compressive Sensing (CS),
Cryosphere,
Fast Factorized Back-Projection (FFBP),
Holographic SAR Tomography (HoloSAR),
Polarimetric Synthetic Aperture Radar (PolSAR).
[bibtex-entry]
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O. Ponce,
P. Prats,
R. Scheiber,
A. Reigber,
and A. Moreira.
Analysis and optimization of multi-circular SAR for fully polarimetric holographic tomography over forested areas.
In Proc. IEEE Int. Geoscience and Remote Sensing Symp. - IGARSS,
pages 2365-2368,
July 2013.
Keyword(s): geophysical image processing,
holography,
radar imaging,
radar polarimetry,
synthetic aperture radar,
vegetation,
3D resolution,
DLR F-SAR sensor,
GLRT algorithm,
Germany,
IRF,
Kauf-beuren,
L-band,
acquisition geometry,
anisotropic analysis,
forested areas,
fully polarimetric holographic tomography,
generalized likelihood ratio test,
holographic SAR tomograms,
impulse response function,
incoherent imaging,
multicircular SAR analysis,
multicircular SAR optimization,
polarimetric MCSAR campaign,
scatterers,
sidelobe suppression,
system bandwidth,
Apertures,
Bandwidth,
Geometry,
Image resolution,
Imaging,
Synthetic aperture radar,
Anisotropy,
compressive sensing (CS),
fast factorized back-projection (FFBP),
holographic tomography,
multi-circular synthetic aperture radar (MCSAR),
polarimetric synthetic aperture radar (PolSAR).
[bibtex-entry]
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O. Ponce,
P. Prats,
R. Scheiber,
A. Reigber,
and A. Moreira.
First demonstration of 3-D holographic tomography with fully polarimetric multi-circular SAR at L-band.
In Proc. IEEE Int. Geoscience and Remote Sensing Symp. - IGARSS,
pages 1127-1130,
July 2013.
Keyword(s): airborne radar,
array signal processing,
compressed sensing,
geophysical image processing,
holography,
optical focusing,
optical tomography,
radar imaging,
radar polarimetry,
radar resolution,
synthetic aperture radar,
transient response,
3D holographic tomography,
3D polarimetric holographic tomogram,
3D sidelobe reduction,
BF,
CS,
DLR F-SAR airborne system,
Earth analysis,
IRF,
Kaufbeuren Germany,
L-band,
MCSAR,
beamforming,
coherent 3D radar backscattering,
compressive sensing,
dry soil,
forested area,
fully polarimetric multicircular SAR,
ice,
impulse response function,
multiangular measurement acquisition,
temporal decorrelation,
volume scatterer,
Apertures,
Bandwidth,
Image resolution,
Imaging,
Synthetic aperture radar,
Vegetation,
Circular synthetic aperture radar (CSAR),
compressive sensing (CS),
fast factorized back-projection (FFBP),
holographic tomography,
polarimetric synthetic aperture radar (PolSAR).
[bibtex-entry]
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Please note that access to full text PDF versions of papers is restricted to the Chair of Earth Observation and Remote Sensing, Institute of Environmental Engineering, ETH Zurich.
Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to
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This collection of SAR literature is far from being complete. It is rather a collection of papers which I store in my literature data base. Hence, the list of publications under PUBLICATIONS OF AUTHOR'S NAME
should NOT be mistaken for a complete bibliography of that author.
Last modified: Fri Feb 24 14:23:19 2023
Author: Othmar Frey, Earth Observation and Remote Sensing, Institute of Environmental Engineering, Swiss Federal Institute of Technology - ETH Zurich .
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