Wenkai Guo
Researcher
Stillingsbeskrivelse
I focus on using satellite Synthetic Aperture Radar (SAR) to understand changes in Arctic sea ice.
Wenkai Guo,
Polona Itkin,
Suman Singha,
Anthony Paul Doulgeris,
Malin Johansson,
Gunnar Spreen
:
Sea ice classification of TerraSAR-X ScanSAR images for the MOSAiC expedition incorporating per-class incidence angle dependency of image texture
Wenkai Guo,
Polona Itkin,
Johannes Lohse,
Malin Johansson,
Anthony Paul Doulgeris
:
Cross-platform classification of level and deformed sea ice considering per-class incident angle dependency of backscatter intensity
Wenkai Guo,
William Gareth Rees
:
Correlation between the dynamics and spatial configuration of the circumarctic latitudinal forest-tundra ecotone
International Journal of Remote Sensing 2020 DOI
Wenkai Guo,
Gareth Rees,
Annika Hofgaard
:
Delineation of the forest-tundra ecotone using texture-based classification of satellite imagery
Wenkai Guo,
William Gareth Rees
:
Altitudinal forest-tundra ecotone categorization using texture-based classification
Remote Sensing of Environment 2019 DOI
Wenkai Guo,
Jack Christopher Landy,
Anthony Paul Doulgeris,
Malin Johansson,
yang zhang,
Polona Itkin
m.fl.:
Multi-decadal time series of sea ice type classification in the Atlantic sector of the Arctic Ocean retrieved from wide-swath Synthetic Aperture Radar data
2023
Wenkai Guo,
Polona Itkin,
Suman Singha,
Anthony Paul Doulgeris,
Malin Johansson,
Gunnar Spreen
:
Sea ice classification of TerraSAR-X ScanSAR images for the MOSAiC expedition incorporating per-class incidence angle dependency of image texture
2022
Wenkai Guo,
Polona Itkin,
Suman Singha,
Anthony Paul Doulgeris,
Malin Johansson,
Gunnar Spreen
:
TerraSAR-X ScanSAR texture-based sea ice classification
2022
Polona Itkin,
Rolf-Ole Rydeng Jenssen,
Dmitry Divine,
Stefan Hendricks,
Melinda Webster,
Robert Ricker
m.fl.:
Distributed sea ice and snow mass balance ground observations and satellite remote sensing products: how can they benefit from each other?
2021
Wenkai Guo,
Polona Itkin,
Johannes Lohse
:
Cross-platform application of a sea ice classification method considering incidence angle dependency of backscatter intensity and its use in detecting ice deformation
2020
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