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Kalman filter physical retrieval of geophysical parameters from high temporal resolution geostationary infrared radiances: the case of surface emissivity and temperature

机译:卡尔曼滤波从高时间分辨率地球静止红外辐射中物理检索地球物理参数:表面发射率和温度的情况

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摘要

The high temporal resolution of the data acquisition by geostationary satellites and their capability to resolve the diurnal cycle are a precious source of information which could be suitably used to retrieve geophysical parameters. Currently this information is for the most part considered as uncorrelated, both in space and time: each pixel is treated independently from its neighbors and the present events are not linked to past or future ones. In this paper we develop a Kalman filter approach to apply spatial and temporal constraints to estimate the geophysical parameters from radiance measurements made from geostationary platforms. We apply the new strategy to a particular case study, i.e. the retrieval of emissivity and surface temperature from SEVIRI (Spinning Enhanced Visible and InfraRed Imager) observations over a target area encompassing the Iberian Peninsula and Northwestern Africa. The retrievals are then compared with in situ data, and other similar satellite products.
机译:对地静止卫星数据采集的高时间分辨率及其解决昼夜周期的能力是宝贵的信息来源,可适当地用于检索地球物理参数。当前,在空间和时间上,大多数情况下此信息被认为是不相关的:每个像素都独立于其相邻像素进行处理,并且当前事件与过去或将来的事件无关。在本文中,我们开发了一种卡尔曼滤波方法,以应用空间和时间约束来从对地静止平台进行的辐射测量中估算地球物理参数。我们将新策略应用于特定案例研究,即从涵盖伊比利亚半岛和西北非洲的目标区域的SEVIRI(旋转增强型可见光和红外成像仪)观测值中检索发射率和表面温度。然后将检索结果与原位数据和其他类似的卫星产品进行比较。

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