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Publications about 'large scale'
Articles in journal or book chapters
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Zhongbo Hu and Jordi J. Mallorqui.
An Accurate Method to Correct Atmospheric Phase Delay for InSAR with the ERA5 Global Atmospheric Model.
Remote Sensing,
11(17),
2019.
[Abstract]
[bibtex-entry]
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Matteo Pardini,
John Armston,
Wenlu Qi,
Seung Kuk Lee,
Marivi Tello,
Victor Cazcarra Bes,
Changhyun Choi,
Konstantinos P. Papathanassiou,
Ralph O. Dubayah,
and Lola E. Fatoyinbo.
Early Lessons on Combining Lidar and Multi-baseline SAR Measurements for Forest Structure Characterization.
Surveys in Geophysics,
40(4):803-837,
July 2019.
Keyword(s): SAR Processing,
Forest,
Biomass,
LiDAR,
SAR Tomography,
Multibaseline SAR.
[Abstract]
[bibtex-entry]
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H. Yu,
Y. Lan,
J. Xu,
D. An,
and Hyonki Lee.
Large-Scale ${L}^{0}$ -Norm and ${L}^{1}$ -Norm 2-D Phase Unwrapping.
IEEE Transactions on Geoscience and Remote Sensing,
55(8):4712-4728,
August 2017.
Keyword(s): SAR Processing,
Phase Unwrapping,
radar interferometry,
remote sensing by radar,
signal processing,
synthetic aperture radar,
InSAR technology,
L0-norm 2D phase unwrapping,
L1-norm 2D phase unwrapping,
L1-norm envelope-sparsity theorem,
big-data,
computer hardware,
global L1-norm PU solution,
local L1-norm PU solution,
subinterferograms,
synthetic aperture radar interferometry,
tiling accuracy,
tiling resolution,
tiling strategy,
Hardware,
Laser radar,
Laser theory,
Memory management,
Optimization,
Spatial resolution,
Synthetic aperture radar interferometry,
2-D phase unwrapping (PU),
L1-norm,
L0-norm,
large scale,
synthetic aperture radar interferometry (InSAR),
tiling strategy.
[Abstract]
[bibtex-entry]
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Silvan Leinss,
Andreas Wiesmann,
J. Lemmetyinen,
and I. Hajnsek.
Snow Water Equivalent of Dry Snow Measured by Differential Interferometry.
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,
8(8):3773-3790,
August 2015.
Keyword(s): radar interferometry,
remote sensing by radar,
snow,
Finland,
SnowScat instrument,
Sodankyla town,
Xand Ku-band,
active microwave remote sensing method,
differential interferogram time series,
differential radar interferometry,
dry snow measurement,
frequency 10 GHz,
frequency 16 GHz,
frequency 20 GHz,
passive microwave remote sensing method,
phase wrapping error,
reference instrument,
signal delay,
snow density,
snow pack spatial inhomogeneity,
snow volume,
snow water equivalent mapping,
stratigraphy,
temporal decorrelation,
time 30 day,
Backscatter,
Ice,
Instruments,
Interferometry,
Snow,
Synthetic aperture radar,
Coherence loss,
SnowScat,
dielectric constant of snow,
differential interferometry (D-InSAR),
dry snow,
microwave penetration of snow,
real aperture radar,
snow water equivalent (SWE),
synthetic aperture radar (SAR).
[Abstract]
[bibtex-entry]
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Hermann Bähr and Ramon F. Hanssen.
Reliable estimation of orbit errors in spaceborne SAR interferometry.
Journal of Geodesy,
86(12):1147-1164,
2012.
Keyword(s): SAR Processing,
Interferometry,
Baseline Errors,
orbital errors,
SAR Interferometry,
Spaceborne SAR.
[Abstract]
[bibtex-entry]
-
Hengxing Lan,
Langping Li,
Hongjiang Liu,
and Zhihua Yang.
Complex Urban Infrastructure Deformation Monitoring Using High Resolution PSI.
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,
5(2):643-651,
April 2012.
Keyword(s): SAR Processing,
Persistent Scatterer Interferometry,
PSI,
China,
building infrastructures,
complex urban infrastructure deformation monitoring,
economic center,
engineering geological settings,
engineering structures,
geometries,
ground surface subsidence,
high resolution PSI,
intensive infrastructure development,
persistent scatterer interferometry technology,
spotlight mode TerraSAR-X images,
thermal dilation,
transportation infrastructures,
urban vulnerability,
building,
computerised monitoring,
deformation,
geophysical image processing,
remote sensing;.
[Abstract]
[bibtex-entry]
Conference articles
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Kaiyu Liu,
Robert Wang,
Heng Zhang,
Dacheng Liu,
Naiming Ou,
Yafeng Chen,
Haixia Yue,
Weidong Yu,
Yunkai Deng,
Da Liang,
Yuanbo Jiao,
Jili Wanga,
and Wei Yu.
LuTan-1: An Innovative L-band Spaceborne SAR Mission.
In Proc. of EUSAR 2022 - 14th European Conference on Synthetic Aperture Radar,
pages 614-618,
2022.
VDE.
Keyword(s): SAR Mission,
LuTan-1,
LT-1,
L-band,
Tandem,
formation flying,
bistatic,
bistatic SAR,
spaceborne SAR,
synchronization link.
[Abstract]
[bibtex-entry]
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G. Krieger,
I. Hajnsek,
Konstantinos P. Papathanassiou,
M. Eineder,
M. Younis,
F. De Zan,
P. Prats,
S. Huber,
M. Werner,
H. Fiedler,
A. Freeman,
P. Rosen,
S. Hensley,
W. Johnson,
L. Veilleux,
B. Grafmueller,
R. Werninghaus,
R. Bamler,
and A. Moreira.
The Tandem-L mission proposal: Monitoring Earth's dynamics with high resolution SAR interferometry.
In Proc. IEEE Radar Conf.,
pages 1-6,
May 2009.
Keyword(s): Earth's Dynamics Monitoring,
Tandem-L mission,
advanced digital beamforming techniques,
biomass inventories,
glacier movement observations,
global forest height,
high data acquisition,
high resolution SAR interferometry,
innovative interferometric radar mission,
millimetric displacements measurements,
polarimetric radar mission,
synthetic aperture radar,
tectonic shifts,
data acquisition,
glaciology,
radar interferometry,
radar polarimetry,
remote sensing by radar,
synthetic aperture radar,
tectonics,
vegetation.
[Abstract]
[bibtex-entry]
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Disclaimer:
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
adhere to the terms and constraints invoked by each author's copyright.
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 14:23:54 2023
Author: Othmar Frey, Earth Observation and Remote Sensing, Institute of Environmental Engineering, Swiss Federal Institute of Technology - ETH Zurich .
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