Automated ice-sheet snowmelt detection using microwave radiometer measurements

Monitoring ice-sheet snowmelt is fundamental to understanding global climate change. A simple and automated snowmelt detection process is critical to the establishment of an ice-sheet snowmelt monitoring system. However, different ice-sheet snowmelt detection methods are based on a variety of thresh...

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Published in:Polar Research
Main Authors: Liang, Lei, Guo, Huadong, Li, Xinwu, Cheng, Xiao
Format: Article in Journal/Newspaper
Language:English
Published: Norwegian Polar Institute 2013
Subjects:
Online Access:https://polarresearch.net/index.php/polar/article/view/3081
https://doi.org/10.3402/polar.v32i0.19746
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spelling ftjpolarres:oai:journals.openacademia.net:article/3081 2024-06-23T07:46:50+00:00 Automated ice-sheet snowmelt detection using microwave radiometer measurements Liang, Lei Guo, Huadong Li, Xinwu Cheng, Xiao 2013-12-27 application/pdf text/html application/epub+zip text/plain https://polarresearch.net/index.php/polar/article/view/3081 https://doi.org/10.3402/polar.v32i0.19746 eng eng Norwegian Polar Institute https://polarresearch.net/index.php/polar/article/view/3081/pdf_1 https://polarresearch.net/index.php/polar/article/view/3081/html https://polarresearch.net/index.php/polar/article/view/3081/epub https://polarresearch.net/index.php/polar/article/view/3081/xml https://polarresearch.net/index.php/polar/article/view/3081/7035 https://polarresearch.net/index.php/polar/article/view/3081 doi:10.3402/polar.v32i0.19746 Polar Research; Vol 32 (2013) 1751-8369 Ice sheet snowmelt detection radiometer cross-gradient polarization ratio wavelet transformation generalized Gaussian model info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2013 ftjpolarres https://doi.org/10.3402/polar.v32i0.19746 2024-06-13T23:33:00Z Monitoring ice-sheet snowmelt is fundamental to understanding global climate change. A simple and automated snowmelt detection process is critical to the establishment of an ice-sheet snowmelt monitoring system. However, different ice-sheet snowmelt detection methods are based on a variety of thresholding schemes using different melt signals for dry and wet snow; these complicate the regular operation of an ice-sheet snowmelt monitoring. We propose an automated melt signal detection method developed using melt signals derived from the cross-gradient polarization ratio snowmelt detection method over Greenland and the wavelet transformation-based snowmelt detection method over Antarctica. Initial results indicate that the proposed method not only increases computational efficiency, practicability and operability but is also more accurate.Keywords: Ice sheet; snowmelt detection; radiometer; cross-gradient polarization ratio; wavelet transformation; generalized Gaussian model.(Published: 27 December 2013)To access the supplementary material for this article, please see Supplementary files in the column to the right (under Article Tools)Citation: Polar Research 2013, 32, 19746, http://dx.doi.org/10.3402/polar.v32i0.19746 Article in Journal/Newspaper Antarc* Antarctica Greenland Ice Sheet Polar Research Polar Research Greenland Polar Research 32 1 19746
institution Open Polar
collection Polar Research
op_collection_id ftjpolarres
language English
topic Ice sheet
snowmelt detection
radiometer
cross-gradient polarization ratio
wavelet transformation
generalized Gaussian model
spellingShingle Ice sheet
snowmelt detection
radiometer
cross-gradient polarization ratio
wavelet transformation
generalized Gaussian model
Liang, Lei
Guo, Huadong
Li, Xinwu
Cheng, Xiao
Automated ice-sheet snowmelt detection using microwave radiometer measurements
topic_facet Ice sheet
snowmelt detection
radiometer
cross-gradient polarization ratio
wavelet transformation
generalized Gaussian model
description Monitoring ice-sheet snowmelt is fundamental to understanding global climate change. A simple and automated snowmelt detection process is critical to the establishment of an ice-sheet snowmelt monitoring system. However, different ice-sheet snowmelt detection methods are based on a variety of thresholding schemes using different melt signals for dry and wet snow; these complicate the regular operation of an ice-sheet snowmelt monitoring. We propose an automated melt signal detection method developed using melt signals derived from the cross-gradient polarization ratio snowmelt detection method over Greenland and the wavelet transformation-based snowmelt detection method over Antarctica. Initial results indicate that the proposed method not only increases computational efficiency, practicability and operability but is also more accurate.Keywords: Ice sheet; snowmelt detection; radiometer; cross-gradient polarization ratio; wavelet transformation; generalized Gaussian model.(Published: 27 December 2013)To access the supplementary material for this article, please see Supplementary files in the column to the right (under Article Tools)Citation: Polar Research 2013, 32, 19746, http://dx.doi.org/10.3402/polar.v32i0.19746
format Article in Journal/Newspaper
author Liang, Lei
Guo, Huadong
Li, Xinwu
Cheng, Xiao
author_facet Liang, Lei
Guo, Huadong
Li, Xinwu
Cheng, Xiao
author_sort Liang, Lei
title Automated ice-sheet snowmelt detection using microwave radiometer measurements
title_short Automated ice-sheet snowmelt detection using microwave radiometer measurements
title_full Automated ice-sheet snowmelt detection using microwave radiometer measurements
title_fullStr Automated ice-sheet snowmelt detection using microwave radiometer measurements
title_full_unstemmed Automated ice-sheet snowmelt detection using microwave radiometer measurements
title_sort automated ice-sheet snowmelt detection using microwave radiometer measurements
publisher Norwegian Polar Institute
publishDate 2013
url https://polarresearch.net/index.php/polar/article/view/3081
https://doi.org/10.3402/polar.v32i0.19746
geographic Greenland
geographic_facet Greenland
genre Antarc*
Antarctica
Greenland
Ice Sheet
Polar Research
genre_facet Antarc*
Antarctica
Greenland
Ice Sheet
Polar Research
op_source Polar Research; Vol 32 (2013)
1751-8369
op_relation https://polarresearch.net/index.php/polar/article/view/3081/pdf_1
https://polarresearch.net/index.php/polar/article/view/3081/html
https://polarresearch.net/index.php/polar/article/view/3081/epub
https://polarresearch.net/index.php/polar/article/view/3081/xml
https://polarresearch.net/index.php/polar/article/view/3081/7035
https://polarresearch.net/index.php/polar/article/view/3081
doi:10.3402/polar.v32i0.19746
op_doi https://doi.org/10.3402/polar.v32i0.19746
container_title Polar Research
container_volume 32
container_issue 1
container_start_page 19746
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