Title
A Systematic Comparison of the Effect of Polarization Ratio Models on Sea Surface Wind Retrieval From C-Band Synthetic Aperture Radar
Abstract
Geophysical model functions (GMFs) for deriving sea surface wind from C-band synthetic aperture radar (SAR) are usually developed and well validated for VV-polarized data, e.g., CMOD5. For wind retrievals from HH-polarization data acquired by some SAR satellites, e.g., RADARSAT-1, part of RADARSAT-2 and ENVISAT ASAR, various Polarization Ratio (PR) models are used to convert normalized radar cross sections (NRCS) from HH to VV polarizations before a GMF is applied. In this study, 116 dual-polarization (VV and HH) C-band ENVISAT Advanced SAR (ASAR) Alternating Polarization (AP) mode images are collected to analyze the behavior of different empirical and theoretical PR models in SAR HH wind retrieval. A new PR model is also developed by analyzing ENVISAT ASAR AP data. SAR HH winds from CMOD5+PR models are validated against SAR VV winds from CMOD5 only. Results show that the proposed new PR model in conjunction with the CMOD5 GMF can constitute promising hybrid GMFs for wind speed retrievals with HH-polarized ENVISAT ASAR images.
Year
DOI
Venue
2013
10.1109/JSTARS.2013.2242848
Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of
Keywords
Field
DocType
wind speed retrievals,polarization ratio models,vv polarizations,synthetic aperture radar,sar hh winds,sar satellites,dual-polarization c-band envisat advanced sar,c-band synthetic aperture radar,hh-polarized envisat asar images,polarization ratio,synthetic aperture radar (sar),vv-polarized data,cmod5 gmf,sea surface wind retrieval,sea surface wind,wind,geophysical image processing,radarsat-2,geophysical model functions,normalized radar cross sections,sar vv winds,radarsat-1,wind retrievals,oceanographic techniques,alternating polarization mode images,radar imaging,atmospheric modeling,predictive models,data models,wind speed
Radar,C band,Satellite,Radar imaging,Wind speed,Synthetic aperture radar,Remote sensing,Polarization (waves),Atmospheric model,Geodesy,Mathematics
Journal
Volume
Issue
ISSN
6
3
1939-1404
Citations 
PageRank 
References 
12
1.03
6
Authors
7
Name
Order
Citations
PageRank
Guihong Liu1121.03
Xiaofeng Yang28920.77
Xiaofeng Li333679.94
Biao Zhang49723.66
William G. Pichel5388.22
Ziwei Li67715.99
Xuan Zhou7183.67