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Publications about 'boreal forest'
Thesis
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Albert Monteith.
Temporal Characteristics of Boreal Forest Radar Measurements.
PhD thesis,
Chalmers University of Technology,
2020.
Keyword(s): SAR Tomography,
BorealScat.
[Abstract]
[bibtex-entry]
Articles in journal or book chapters
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Juha Lemmetyinen,
Juval Cohen,
Anna Kontu,
Juho Vehvil�inen,
Henna-Reetta Hannula,
Ioanna Merkouriadi,
Stefan Scheiblauer,
Helmut Rott,
Thomas Nagler,
Elisabeth Ripper,
Kelly Elder,
Hans-Peter Marshall,
Reinhard Fromm,
Marc Adams,
Chris Derksen,
Joshua King,
Adriano Meta,
Alex Coccia,
Nick Rutter,
Melody Sandells,
Giovanni Macelloni,
Emanuele Santi,
Marion Leduc-Leballeur,
Richard Essery,
Cecile Menard,
and Michael Kern.
Airborne SnowSAR data at X and Ku bands over boreal forest, alpine and tundra snow cover.
Earth System Science Data,
14(9):3915-3945,
September 2022.
[bibtex-entry]
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Emanuele Santi,
Marco Brogioni,
Marion Leduc-Leballeur,
Giovanni Macelloni,
Francesco Montomoli,
Paolo Pampaloni,
Juha Lemmetyinen,
Juval Cohen,
Helmut Rott,
Thomas Nagler,
Chris Derksen,
Joshua King,
Nick Rutter,
Richard Essery,
Cecile Menard,
Melody Sandells,
and Michael Kern.
Exploiting the ANN Potential in Estimating Snow Depth and Snow Water Equivalent From the Airborne SnowSAR Data at X- and Ku-Bands.
IEEE Transactions on Geoscience and Remote Sensing,
pp 1-16,
2021.
Keyword(s): SAR Processing,
Artificial neural networks (ANNs),
dense medium radiative transfer (DMRT),
quasi Mie scattering (QMS) model,
snow depth (SD),
snow water equivalent (SWE),
SnowSAR,
synthetic aperture radar,
SAR.
[Abstract]
[bibtex-entry]
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Jorge Jorge Ruiz,
Risto Vehmas,
Juha Lemmetyinen,
Josu Uusitalo,
Janne Lahtinen,
Kari Lehtinen,
Anna Kontu,
Kimmo Rautiainen,
Riku Tarvainen,
Jouni Pulliainen,
and Jaan Praks.
SodSAR: A Tower-Based 1-10 GHz SAR System for Snow, Soil and Vegetation Studies.
Sensors,
20(22),
2020.
[Abstract]
[bibtex-entry]
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Albert R. Monteith and Lars M. H. Ulander.
Temporal Survey of P- and L-Band Polarimetric Backscatter in Boreal Forests.
IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing,
11(10):3564-3577,
October 2018.
Keyword(s): SAR Tomography,
backscatter,
radar imaging,
radar polarimetry,
remote sensing by radar,
spaceborne radar,
synthetic aperture radar,
vegetation mapping,
temporal survey,
L-band polarimetric backscatter,
boreal forests,
environmental conditions,
seasonal variations,
backscattered radar signal,
biomass retrieval scheme,
synthetic aperture radar data,
electromagnetic scattering mechanisms,
biomass estimation algorithms,
L-band SAR missions,
temporal changes,
HV-polarized P,
L-band radar backscatter,
boreal forest site,
environmental parameters,
mature Norway spruce,
above-ground biomass,
approximately 250 tons/ha,
BorealScat tower-based scatterometer,
L-band backscatter,
HH/VV backscatter ratio,
average backscatter,
double-bounce scattering,
severe temporal decorrelation,
P-band temporal coherence,
mass 250.0 ton,
time 5.0 min,
noise figure 4.0 dB to 10.0 dB,
Synthetic aperture radar,
L-band,
Backscatter,
Biomass,
Antenna arrays,
Coherence,
Backscatter,
boreal forest,
L-band,
P-band,
synthetic aperture radar (SAR),
temporal coherence,
time series.
[Abstract]
[bibtex-entry]
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Maciej J. Soja,
H.J. Persson,
and Lars M.H. Ulander.
Estimation of Forest Biomass From Two-Level Model Inversion of Single-Pass InSAR Data.
IEEE Trans. Geosci. Remote Sens.,
53(9):5083-5099,
September 2015.
Keyword(s): data acquisition,
digital elevation models,
forestry,
radar interferometry,
remote sensing by radar,
synthetic aperture radar,
vegetation,
AD 2008,
AD 2010,
AD 2011,
AD 2012,
AD 2013,
InSAR processing,
Krycklan feature,
Remningstorp feature,
Swedish test site,
VV-polarized TanDEM-X acquisition,
aboveground biomass estimation,
biomass predictor,
canopy density,
digital terrain model,
forest biomass estimation,
forest height,
hemiboreal forest,
northern Sweden,
single-pass InSAR data,
single-pass interferometric synthetic aperture radar data,
southern Sweden,
two-level model inversion,
Biological system modeling,
Biomass,
Computational modeling,
Correlation,
Decorrelation,
Estimation,
Synthetic aperture radar,
Aboveground biomass (AGB),
TanDEM-X (TDM),
canopy density,
forest height,
interferometric model,
interferometric syntheticaperture radar (InSAR),
two-level model (TLM).
[Abstract]
[bibtex-entry]
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R. Magagi,
A. A. Berg,
K. Goita,
S. Belair,
T. J. Jackson,
B. Toth,
A. Walker,
H. McNairn,
P. E. O'Neill,
Mahta Moghaddam,
I. Gherboudj,
A. Colliander,
M. H. Cosh,
Mariko S. Burgin,
J. B. Fisher,
S. B. Kim,
I. Mladenova,
N. Djamai,
L. P. B. Rousseau,
J. Belanger,
J. Shang,
and A. Merzouki.
Canadian Experiment for Soil Moisture in 2010 (CanEx-SM10): Overview and Preliminary Results.
IEEE Transactions on Geoscience and Remote Sensing,
51(1):347-363,
January 2013.
Keyword(s): land surface temperature,
remote sensing,
soil,
vegetation,
AD 2010,
AD 2010 05 31 to 2010 06,
AMSR-E soil moisture,
CanEx-SM10,
Canada,
Canadian experiment,
National Snow and Ice Data Center,
SMOS data,
SMOS mission,
SMOS soil moisture product,
Saskatchewan,
active microwave measurement,
agricultural area,
airborne L-band brightness temperatures,
airborne L-band radiometer data,
airborne platform,
boreal forested area,
ocean salinity,
passive microwave measurement,
radio frequency,
reflected soil moisture measurements,
satellite platform,
soil condition,
soil ground-based measurements,
soil moisture,
soil temperature profiles,
vegetation characteristics,
vegetation condition,
Moisture measurement,
Satellites,
Soil measurements,
Soil moisture,
Temperature measurement,
Vegetation mapping,
Agricultural and boreal forested areas,
Soil Moisture and Ocean Salinity (SMOS),
brightness temperature,
soil moisture,
validation.
[Abstract]
[bibtex-entry]
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Alireza Tabatabaeenejad,
Mariko S. Burgin,
and Mahta Moghaddam.
Potential of L-Band Radar for Retrieval of Canopy and Subcanopy Parameters of Boreal Forests.
IEEE Transactions on Geoscience and Remote Sensing,
50(6):2150-2160,
June 2012.
Keyword(s): calibration,
data analysis,
forestry,
remote sensing by radar,
simulated annealing,
soil,
vegetation mapping,
AD 2010 06,
Jet Propulsion Laboratory,
L-band radar,
National Aeronautics and Space Administration,
SMAP mission,
Uninhabited Aerial Vehicle Synthetic Aperture Radar,
absolute retrieval error analysis,
calibration method,
canopy parameter retrieval,
central Canada boreal forests,
discrete scatterer radar model,
forest structure,
forward scattering model,
global optimization scheme,
inversion method,
old black spruce site,
old jack pine forests,
optimization algorithm,
optimization problem,
relative retrieval error,
scattering mechanisms,
simulated annealing,
soil moisture information,
subcanopy parameter retrieval,
surface soil moisture retrieval,
synthetic data,
vegetation parameters,
young jack pine forests,
Backscatter,
Dielectric constant,
L-band,
Radar,
Scattering,
Soil moisture,
Vegetation mapping,
Allometric relationships,
Canadian Experiment for Soil Moisture in 2010 (CanEx-SM10),
L-band radar,
Soil Moisture Active and Passive (SMAP),
boreal forest,
canopy,
inverse problem,
microwave scattering.
[Abstract]
[bibtex-entry]
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Stefano Tebaldini and Fabio Rocca.
Multibaseline Polarimetric SAR Tomography of a Boreal Forest at P- and L-Bands.
IEEE Trans. Geosci. Remote Sens.,
50(1):232-246,
January 2012.
Keyword(s): SAR Processing,
SAR Tomography,
Tomography,
ESA campaign BioSAR,
Krycklan River catchment,
L-band analysis,
Northern Sweden,
P-band analysis,
PolInSAR approach,
algebraic synthesis technique,
boreal forest,
direct volume backscattering process,
ground-volume interaction process,
multibaseline polarimetric SAR tomography,
multipolarimetric data acquisition,
polarimetric analysis,
remote sensing,
single-baseline data analysis,
tomographic analysis,
tomographic imaging method,
vegetation layer analysis,
backscatter,
data acquisition,
forestry,
radar interferometry,
radar polarimetry,
remote sensing by radar,
rivers,
synthetic aperture radar,
tomography,
vegetation mapping;.
[Abstract]
[bibtex-entry]
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Ross F. Nelson,
Peter Hyde,
Patrick Johnson,
Bomono Emessiene,
Marc L. Imhoff,
Robert Campbell,
and Wilson Edwards.
Investigating RaDAR-LiDAR synergy in a North Carolina pine forest.
Remote Sensing of Environment,
110(1):98-108,
September 2007.
Keyword(s): SAR Processing,
Biomass,
Forest,
VHFRaDAR,
profiling LiDAR,
biomass,
RaDAR-LiDAR synergy,
VHFSAR DATA,
SMALL-FOOTPRINT LIDAR,
AIRBORNE LASER DATA,
STEM VOLUME,
STAND CHARACTERISTICS,
AERIAL-PHOTOGRAPHY,
VEGETATION BIOMASS,
CONIFEROUS FOREST,
BOREAL FORESTS,
SCANNER DATA.
[Abstract]
[bibtex-entry]
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J.O. Hagberg,
L. M. H. Ulander,
and J. Askne.
Repeat-pass SAR interferometry over forested terrain.
IEEE Trans. Geosci. Remote Sens.,
33(2):331-340,
March 1995.
Keyword(s): SAR Processing,
SAR interferometry,
forest,
forested terrain,
forestry,
general system model,
geophysical method,
interferometry,
land surface topography,
measurement technique,
radar remote sensing,
repeat pass method,
scene scattering,
synthetic aperture radar,
topographic map,
vegetation mapping,
forestry,
geophysical techniques,
radar applications,
radar imaging,
remote sensing,
remote sensing by radar,
synthetic aperture radar,
topography (Earth).
[Abstract]
[bibtex-entry]
Conference articles
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B. Hallberg,
G. Smith,
A. Olofsson,
and Lars M. H. Ulander.
Performance Simulation of Spaceborne P-band SAR for Global Biomass Retrieval.
In IGARSS '04, International Geoscience and Remote Sensing Symposium,
September 2004.
Keyword(s): SAR Processing,
Simulation,
P-Band,
Biomass Retrieval,
Forest.
[Abstract]
[bibtex-entry]
Internal reports
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Shaun Quegan,
Thuy Le Toan,
Jérôme Chave,
Jorgen Dall,
Konstantinos P. Papathanassiou,
Fabio Rocca,
Lars Ulander,
and Mathew Williams.
Report for Mission Selection: Biomass.
Technical report SP-1324/1 (3 volume series),
ESA,
Noordwijk, The Netherlands,
May 2012.
Keyword(s): BIOMASS,
BIOMASS MISSION,
ESA,
European Space Agency,
P-Band,
Spaceborne SAR,
SAR.
[Abstract]
[bibtex-entry]
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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 14:22:49 2023
Author: Othmar Frey, Earth Observation and Remote Sensing, Institute of Environmental Engineering, Swiss Federal Institute of Technology - ETH Zurich .
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