Tropical Cyclone Wind Direction Retrieval from C-Band Dual-Polarization Synthetic Aperture Radar

Shengren Fan, Biao Zhang, A. Mouche
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Abstract

Derivation of sea surface wind directions is an important step of sea surface wind fields retrieval from spaceborne Synthetic Aperture Radar (SAR) data. The local gradient (LG) method is used in this paper to retrieve the wind directions of C-band dual-polarization $(VV+VH)$ synthetic aperture radar (SAR) images under tropical cyclone (TC) sea states. We compare wind directions derived from 10 dual-polarization SAR images with collocated wind directions from buoys, scatterometer, radiometer, and Hurricane Research Division (HRD) Realtime Hurricane Wind Analysis System (H*Wind) products. Results show that the wind direction root-mean-square (RMS) error and bias are 19.85° and 0.07° for $VH$ polarization, and 24.89° and −1.26° for $VV$ polarization, suggesting $VH$ is more suitable to exact tropical cyclone wind directions than $VV$.
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c波段双偏振合成孔径雷达反演热带气旋风向
海面风向的推导是星载合成孔径雷达(SAR)海面风场反演的重要环节。本文利用局地梯度(LG)方法反演了热带气旋海况下c波段双极化(VV+VH)$合成孔径雷达(SAR)图像的风向。我们将10张双偏振SAR图像的风向与浮标、散射计、辐射计和飓风研究部门(HRD)实时飓风风分析系统(H* wind)产品的风向进行了比较。结果表明,$VH$极化的RMS误差和偏差分别为19.85°和0.07°,$VV$极化的RMS误差和偏差分别为24.89°和- 1.26°,表明$VH$比$VV$更适合于热带气旋风向的精确测量。
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