Shao Weizeng, Sheng Yexin, Sun Jian
Marine Science and Technology College, Zhejiang Ocean University, Zhoushan 316000, China.
Key Laboratory for Earth Observation of Hainan Province, Hainan 572029, China.
Sensors (Basel). 2017 Jul 25;17(8):1705. doi: 10.3390/s17081705.
The Chinese Gaofen-3 (GF-3) synthetic aperture radar (SAR) launched by the China Academy of Space Technology (CAST) has operated at C-band since September 2016. To date, we have collected 16/42 images in vertical-vertical (VV)/horizontal-horizontal (HH) polarization, covering the National Data Buoy Center (NDBC) buoy measurements of the National Oceanic and Atmospheric Administration (NOAA) around U.S. western coastal waters. Wind speeds from NDBC in situ buoys are up to 15 m/s and buoy-measured significant wave height (SWH) has ranged from 0.5 m to 3 m. In this study, winds were retrieved using the geophysical model function (GMF) together with the polarization ratio (PR) model and waves were retrieved using a new empirical algorithm based on SAR cutoff wavelength in satellite flight direction, herein called CSAR_WAVE. Validation against buoy measurements shows a 1.4/1.9 m/s root mean square error (RMSE) of wind speed and a 24/23% scatter index (SI) of SWH for VV/HH polarization. In addition, wind and wave retrieval results from 166 GF-3 images were compared with the European Centre for Medium-Range Weather Forecasts (ECMWF) re-analysis winds, as well as the SWH from the WaveWatch-III model, respectively. Comparisons show a 2.0 m/s RMSE for wind speed with a 36% SI of SWH for VV-polarization and a 2.2 m/s RMSE for wind speed with a 37% SI of SWH for HH-polarization. Our work gives a preliminary assessment of the wind and wave retrieval results from GF-3 SAR images for the first time and will provide guidance for marine applications of GF-3 SAR.
由中国空间技术研究院(CAST)发射的中国高分三号(GF - 3)合成孔径雷达(SAR)自2016年9月起在C波段运行。迄今为止,我们已收集了垂直 - 垂直(VV)/水平 - 水平(HH)极化的16/42幅图像,覆盖了美国西海岸海域附近美国国家海洋和大气管理局(NOAA)的国家数据浮标中心(NDBC)浮标测量数据。NDBC现场浮标的风速高达15米/秒,浮标测量的有效波高(SWH)范围为0.5米至3米。在本研究中,使用地球物理模型函数(GMF)和极化率(PR)模型反演风场,并使用一种基于卫星飞行方向上SAR截止波长的新经验算法反演海浪,在此称为CSAR_WAVE。与浮标测量值的验证表明,VV/HH极化的风速均方根误差(RMSE)为1.4/1.9米/秒,SWH的散射指数(SI)为24/23%。此外,分别将166幅GF - 3图像的风浪反演结果与欧洲中期天气预报中心(ECMWF)的再分析风场以及WaveWatch - III模型的SWH进行了比较。比较结果表明,VV极化风速的RMSE为2.0米/秒,SWH的SI为36%;HH极化风速的RMSE为2.2米/秒,SWH的SI为37%。我们的工作首次对GF - 3 SAR图像的风浪反演结果进行了初步评估,并将为GF - 3 SAR的海洋应用提供指导。