Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction
The need to monitor geophysical properties of first year ice (FYI) in the Arctic is increasing as this type of sea ice becomes more prevalent. One such method of monitoring the Arctic is the use of electromagnetic remote sensing techniques. These methods determine dielectric properties of the illumi...
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ftunivmanitoba:oai:mspace.lib.umanitoba.ca:1993/32238 2023-06-18T03:38:55+02:00 Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction Tiede, Tyler Mojabi, Puyan (Electrical and Computer Engineering) Barber, David (Environment and Geography) Isleifson, Dustin (Electrical and Computer Engineering) Papakyriakou, Tim (Environment and Geography) 2017 application/pdf http://hdl.handle.net/1993/32238 eng eng http://hdl.handle.net/1993/32238 open access Antenna Inversion Geophysics Arctic remote sensing master thesis 2017 ftunivmanitoba 2023-06-04T17:39:42Z The need to monitor geophysical properties of first year ice (FYI) in the Arctic is increasing as this type of sea ice becomes more prevalent. One such method of monitoring the Arctic is the use of electromagnetic remote sensing techniques. These methods determine dielectric properties of the illuminated sea ice by interpreting how the electromagnetic waves interact within the medium. In the literature, there are empirical formulas relating these dielectric properties to the geophysical properties of the sea ice. The contributions of this research are the development and testing of a surface based active microwave remote sensor to monitor sea ice growth in the winter through the reconstruction of the time series complex permittivity profile of FYI. October 2017 Master Thesis Arctic Sea ice MSpace at the University of Manitoba Arctic |
institution |
Open Polar |
collection |
MSpace at the University of Manitoba |
op_collection_id |
ftunivmanitoba |
language |
English |
topic |
Antenna Inversion Geophysics Arctic remote sensing |
spellingShingle |
Antenna Inversion Geophysics Arctic remote sensing Tiede, Tyler Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
topic_facet |
Antenna Inversion Geophysics Arctic remote sensing |
description |
The need to monitor geophysical properties of first year ice (FYI) in the Arctic is increasing as this type of sea ice becomes more prevalent. One such method of monitoring the Arctic is the use of electromagnetic remote sensing techniques. These methods determine dielectric properties of the illuminated sea ice by interpreting how the electromagnetic waves interact within the medium. In the literature, there are empirical formulas relating these dielectric properties to the geophysical properties of the sea ice. The contributions of this research are the development and testing of a surface based active microwave remote sensor to monitor sea ice growth in the winter through the reconstruction of the time series complex permittivity profile of FYI. October 2017 |
author2 |
Mojabi, Puyan (Electrical and Computer Engineering) Barber, David (Environment and Geography) Isleifson, Dustin (Electrical and Computer Engineering) Papakyriakou, Tim (Environment and Geography) |
format |
Master Thesis |
author |
Tiede, Tyler |
author_facet |
Tiede, Tyler |
author_sort |
Tiede, Tyler |
title |
Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
title_short |
Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
title_full |
Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
title_fullStr |
Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
title_full_unstemmed |
Inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
title_sort |
inversion of surface contacting antenna measurements for sea ice complex permittivity reconstruction |
publishDate |
2017 |
url |
http://hdl.handle.net/1993/32238 |
geographic |
Arctic |
geographic_facet |
Arctic |
genre |
Arctic Sea ice |
genre_facet |
Arctic Sea ice |
op_relation |
http://hdl.handle.net/1993/32238 |
op_rights |
open access |
_version_ |
1769003762915999744 |