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An Approach of Retrieval of Land Surface Temperature and Emissivity from Satellite Observation

机译:卫星观察陆地温度和发射率的检索方法

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The land surface temperature (LST) and land surface emissivity (LSE) affect the satellite observed radiances or brightness temperature a lot. Therefore, accurate LST and LSE could benefit the retrieval of atmospheric sounding and certain application on LST like urban heat island effect. In this study, we try to use multi-spectral observation of MODIS for developing a retrieval algorithm of LST and LSE simultaneously. The brightness temperatures at MODIS infrared channels are calculated from Pressure-Layer Fast Algorithm for Atmospheric Transmittance (PFAAST) radiative transfer model at several combination of LSTs and LSEs. By selecting two sets of channels to conduct an optimal retrieval of both LST and LSE at the same time. The preliminary results show a good LST and LSE agreement with MODIS science team products, however, our algorithm reveals a quick and straightforward algorithm for a near real-time retrieval process, which will benefit routine operation in the future.
机译:土地表面温度(LST)和陆地发射率(LSE)影响卫星观察到的阳光或亮度温度。因此,准确的LST和LSE可以使Restival的热门声音和城市热岛效应等LST的某些应用受益。在这项研究中,我们尝试使用MODIS的多光谱观察同时发育LST和LSE的检索算法。 MODIS红外通道的亮度温度由用于大气透射率(PFAAST)辐射转移模型的压力层快速算法计算,其几个LST和LSE组合。通过选择两组通道,同时对LST和LSE进行最佳检索。初步结果显示了与Modis Science Team产品的良好LST和LSE协议,然而,我们的算法揭示了近实时检索过程的快速和直接的算法,这将将来有利于常规操作。

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