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Consistent ice and open water classification combining historical synthetic aperture radar satellite images from ERS-1/2, Envisat ASAR, RADARSAT-2 and Sentinel-1A/B
by
Gerland, Sebastian
, Divine, Dmitry V.
, Doulgeris, Anthony P.
, Pavlova, Olga
, Lauknes, Tom Rune
, Cristea, Anca
, Johansson, A. Malin
, Malnes, Eirik
in
Algorithms
/ Arctic sea ice
/ Backscatter
/ Backscattering
/ Classification
/ ERS-1 (ESA satellite)
/ ERS-2 (ESA satellite)
/ Fjords
/ Glaciers
/ Ice conditions
/ Ice cover
/ Image classification
/ Image processing
/ Image segmentation
/ Incidence angle
/ Radar
/ Radar imaging
/ Radar satellites
/ Radarsat
/ Records
/ remote sensing
/ SAR (radar)
/ Satellite imagery
/ Satellites
/ Sea ice
/ Sea ice conditions
/ sea-ice growth and decay
/ Seasons
/ Sensors
/ Spaceborne remote sensing
/ Synthetic aperture radar
/ Water area
/ Water temperature
/ Weather
2020
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Consistent ice and open water classification combining historical synthetic aperture radar satellite images from ERS-1/2, Envisat ASAR, RADARSAT-2 and Sentinel-1A/B
by
Gerland, Sebastian
, Divine, Dmitry V.
, Doulgeris, Anthony P.
, Pavlova, Olga
, Lauknes, Tom Rune
, Cristea, Anca
, Johansson, A. Malin
, Malnes, Eirik
in
Algorithms
/ Arctic sea ice
/ Backscatter
/ Backscattering
/ Classification
/ ERS-1 (ESA satellite)
/ ERS-2 (ESA satellite)
/ Fjords
/ Glaciers
/ Ice conditions
/ Ice cover
/ Image classification
/ Image processing
/ Image segmentation
/ Incidence angle
/ Radar
/ Radar imaging
/ Radar satellites
/ Radarsat
/ Records
/ remote sensing
/ SAR (radar)
/ Satellite imagery
/ Satellites
/ Sea ice
/ Sea ice conditions
/ sea-ice growth and decay
/ Seasons
/ Sensors
/ Spaceborne remote sensing
/ Synthetic aperture radar
/ Water area
/ Water temperature
/ Weather
2020
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Consistent ice and open water classification combining historical synthetic aperture radar satellite images from ERS-1/2, Envisat ASAR, RADARSAT-2 and Sentinel-1A/B
by
Gerland, Sebastian
, Divine, Dmitry V.
, Doulgeris, Anthony P.
, Pavlova, Olga
, Lauknes, Tom Rune
, Cristea, Anca
, Johansson, A. Malin
, Malnes, Eirik
in
Algorithms
/ Arctic sea ice
/ Backscatter
/ Backscattering
/ Classification
/ ERS-1 (ESA satellite)
/ ERS-2 (ESA satellite)
/ Fjords
/ Glaciers
/ Ice conditions
/ Ice cover
/ Image classification
/ Image processing
/ Image segmentation
/ Incidence angle
/ Radar
/ Radar imaging
/ Radar satellites
/ Radarsat
/ Records
/ remote sensing
/ SAR (radar)
/ Satellite imagery
/ Satellites
/ Sea ice
/ Sea ice conditions
/ sea-ice growth and decay
/ Seasons
/ Sensors
/ Spaceborne remote sensing
/ Synthetic aperture radar
/ Water area
/ Water temperature
/ Weather
2020
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Consistent ice and open water classification combining historical synthetic aperture radar satellite images from ERS-1/2, Envisat ASAR, RADARSAT-2 and Sentinel-1A/B
Journal Article
Consistent ice and open water classification combining historical synthetic aperture radar satellite images from ERS-1/2, Envisat ASAR, RADARSAT-2 and Sentinel-1A/B
2020
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Overview
Synthetic Aperture Radar (SAR) satellite images are used to monitor Arctic sea ice, with systematic data records dating back to 1991. We propose a semi-supervised classification method that separates open water from sea ice and can utilise ERS-1/2, Envisat ASAR, RADARSAT-2 and Sentinel-1 SAR images. The classification combines automatic segmentation with a manual segment selection stage. The segmentation algorithm requires only the backscatter intensities and incidence angle values as input, therefore can be used to establish a consistent decadal sea ice record. In this study we investigate the sea ice conditions in two Svalbard fjords, Kongsfjorden and Rijpfjorden. Both fjords have a seasonal ice cover, though Rijpfjorden has a longer sea ice season. The satellite image dataset has weekly to daily records from 2002 until now, and less frequent records between 1991 and 2002. Time overlap between different sensors is investigated to ensure consistency in the reported sea ice cover. The classification results have been compared to high-resolution SAR data as well as in-situ measurements and sea ice maps from Ny-Ålesund. For both fjords the length of the sea ice season has shortened since 2002 and for Kongsfjorden the maximum sea ice coverage is significantly lower after 2006.
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