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Improved Quality of MODIS Sea Surface Temperature Retrieval and Data Coverage Using Physical Deterministic Methods

机译:使用物理确定性方法提高MODIS海面温度检索和数据覆盖范围的质量

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Sea surface temperature (SST) retrievals from satellite imager measurements are often performed using only two or three channels, and employ a regression methodology. As there are 16 thermal infrared (IR) channels available for MODIS, we demonstrate a new SST retrieval methodology using more channels and a physically deterministic method, the modified total least squares (MTLS), to improve the quality of SST. Since cloud detection is always a part of any parameter estimation from IR satellite measurements, we hereby extend our recently-published novel cloud detection technique, which is based on both functional spectral differences and radiative transfer modeling for GOES-13. We demonstrate that the cloud detection coefficients derived for GOES-13 are working well for MODIS, while further improvements are made possible by the extra channels replacing some of the previous tests. The results are compared with available operational MODIS SST through the Group for High Resolution SST website–the data themselves are originally processed by the NASA Goddard Ocean Biology Processing Group. It is observed the data coverage can be more than doubled compared to the currently-available operational product, and at the same time the quality can be improved significantly. Two other SST retrieval methods, offline-calculated coefficients using the same form of the operational regression equation, and radiative transfer based optimal estimation, are included for comparison purposes.
机译:通常仅使用两个或三个通道从卫星成像仪测量中检索海表温度(SST),并采用回归方法。由于MODIS有16个热红外(IR)通道,我们演示了使用更多通道的新SST检索方法和一种物理确定性方法,即改进的总最小二乘(MTLS),以提高SST的质量。由于云探测始终是红外卫星测量中任何参数估计的一部分,因此我们在此扩展我们最近发布的新颖云探测技术,该技术基于功能光谱差异和GOES-13的辐射传输模型。我们证明,为GODIS-13推导的云探测系数在MODIS上效果很好,同时通过额外的通道替代了之前的测试,进一步改善了可能。通过高分辨率SST组网站将结果与可用的MODIS SST进行了比较-数据本身最初是由NASA戈达德海洋生物学处理组处理的。可以观察到,与当前可用的操作产品相比,数据覆盖范围可以增加一倍以上,同时可以显着提高质量。为了进行比较,还包括其他两种SST检索方法,即使用相同形式的运算回归方程的离线计算系数,以及基于辐射传递的最佳估计。

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