从 FY-3D 气象卫星的红外和微波测量中融合 SST

Miao Zhang, Na Xu, Lin Chen
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摘要

:海面温度(SST)是全球海洋和气候研究的重要参数之一,可通过卫星红外和被动微波遥感仪器获取。卫星红外海面温度具有较高的空间分辨率,但受到云层的限制。另一方面,被动微波 SST 可提供全天候观测,但空间分辨率较低,且易受降雨、海岸效应和高风速等环境因素的影响。为了获得高精度、全面和高分辨率的 SST 数据,必须将红外和微波 SST 测量融合起来。本研究融合了风云-3D(FY-3D)中分辨率光谱成像仪 II(MERSI-II)海温数据和微波成像仪(MWRI)海温数据。首先,对 MERSI-II SST 和 MWRI SST 的精度进行验证,并对后者进行双线性插值,使其与 MERSI SST 的 5km 分辨率网格相匹配。在对 MERSI SST 和 MWRI SST 进行预处理和质量控制后,采用片断回归法修正 MWRI SST 的偏差。随后,根据空间分辨率和分析日期 3 天窗口内的精度选择 SST 数据。最后,采用最优插值法将 FY-3D MERSI-II SST 和 MWRI SST 融合在一起。结果表明,与 MERSI-II SST 和 MWRI SST 相比,FY-3D SST 的空间覆盖率有了显著提高。此外,融合后的 SST 保留了真实的空间分布细节,与 OSTIA SST 相比,精度为 -0.12±0.74°C。该研究提高了中国 FY 卫星融合 SST 产品的精度。
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Fusion SST from Infrared and Microwave Measurement of FY-3D Meteorological Satellite
: Sea surface temperature (SST) is one of the important parameters of global ocean and climate research, which can be retrieved by satellite infrared and passive microwave remote sensing instruments. While satellite infrared SST offers high spatial resolution, it is limited by cloud cover. On the other hand, passive microwave SST provides all-weather observation but suffers from poor spatial resolution and susceptibility to environmental factors such as rainfall, coastal effects, and high wind speeds. To achieve high-precision, comprehensive, and high-resolution SST data, it is essential to fuse infrared and microwave SST measurements. In this study, data from the Fengyun-3D (FY-3D) medium resolution spectral imager II (MERSI-II) SST and microwave imager (MWRI) SST were fused. Firstly, the accuracy of both MERSI-II SST and MWRI SST was verified, and the latter was bilinearly interpolated to match the 5km resolution grid of MERSI SST. After pretreatment and quality control of MERSI SST and MWRI SST, a Piece-Wise Regression method was employed to correct biases in MWRI SST. Subsequently, SST data were selected based on spatial resolution and accuracy within a 3-day window of the analysis date. Finally, an optimal interpolation method was applied to fuse the FY-3D MERSI-II SST and MWRI SST. The results demonstrated a significant improvement in spatial coverage compared to MERSI-II SST and MWRI SST. Furthermore, the fusion SST retained true spatial distribution details and exhibited an accuracy of –0.12±0.74°C compared to OSTIA SST. This study has improved the accuracy of FY satellite fusion SST products in China.
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