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Taking advantage of Sentinel-1 acquisition modes to improve ocean sea state retrieval

Sentinel-1's SAR instrument offers a number of improvements with respect to its predecessor ENVISAT/ASAR such as a much better Wave Mode imagette coverage, improved Doppler estimator allowing higher resolution Doppler grid, more systematic dual-polarizations and a new TOPSAR acquisition mode. I...

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Main Authors: Husson, R., Mouche, A., Chapron, B., Johnsen, H., Collard, F., Vincent, P., Guitton, G., Longepe, N., Hajduch, G., Quilfen, Y., Gaultier, Lucile
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creator Husson, R.
Mouche, A.
Chapron, B.
Johnsen, H.
Collard, F.
Vincent, P.
Guitton, G.
Longepe, N.
Hajduch, G.
Quilfen, Y.
Gaultier, Lucile
description Sentinel-1's SAR instrument offers a number of improvements with respect to its predecessor ENVISAT/ASAR such as a much better Wave Mode imagette coverage, improved Doppler estimator allowing higher resolution Doppler grid, more systematic dual-polarizations and a new TOPSAR acquisition mode. In the context of SEOM program, the Sentinel-1 ocean study offers to take advantage of these new capabilities to improve the retrieval of ocean sea state parameters: surface wind fields, directional wave spectrum, total significant wave height and surface currents. The study also tackles the ability to conduct a synergetic retrieval scheme in which the mutual effects of sea state components are taken into account.
doi_str_mv 10.1109/IGARSS.2016.7730009
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subjects Doppler effect
five
four
Ocean temperature
One
Sea measurements
Sea surface
Surface waves
three
two
Wind
title Taking advantage of Sentinel-1 acquisition modes to improve ocean sea state retrieval
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