首页> 外文会议>International workshop on the analysis of multi-temporal remote sensing images >A MULTI-TEMPORAL, RST-BASED, AMSR-E DATA ANALYSIS FOR RADIO FREQUENCY INTERFERENCE INVESTIGATION: A POSSIBLE IMPACT ON SOIL WETNESS RETRIEVALS
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A MULTI-TEMPORAL, RST-BASED, AMSR-E DATA ANALYSIS FOR RADIO FREQUENCY INTERFERENCE INVESTIGATION: A POSSIBLE IMPACT ON SOIL WETNESS RETRIEVALS

机译:用于射频干扰调查的多时间,RST,AMSR-E数据分析:对土壤湿度检索的可能影响

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摘要

Several satellite microwave radiometers may be used for soil moisture retrieval. Among these, the Advanced Microwave Scanning Radiometer on Earth Observing System (AMSR-E), is the one that, mainly for its spectral characteristics, should have given more reliable results. Unfortunately, after its launch diffuse C-band Radio-Frequency Interferences (RFI) were discovered contaminating AMSR-E radiances over many areas in the world reducing and/or limiting its operating use. In this work, the multi-temporal RST (Robust Satellite Techniques) approach has been implemented using AMSR-E C-band data. The main objective of such an analysis has been to investigate the possible improvement, both in terms of quality and reliability, of AMSR-E soil moisture retrieval that, a differential approach like RST, may produce. Preliminary results obtained applying this approach to the flooding event which affected some European countries during the summer 2002, are presented in this paper. First obtained outcomes seem to confirm, also for comparison with the standard AMSR-E soil moisture products daily provided by NASA (National Aeronautics and Space Administration), the efficiency of the proposed approach in monitoring soil wetness variations in the space-time domain by using AMSR-E C-band data without need auxiliary or ancillary information.
机译:几个卫星微波辐射计可以被用于土壤湿度检索。其中,先进微波扫描辐射仪地球观测系统(AMSR-E),是一个,主要是因为它的光谱特性,应该给更可靠的结果。不幸的是,它的推出弥漫C波段后,射频干扰(RFI)被发现污染AMSR-E辐射率在许多地区在世界上减少和/或限制其使用用途。在这项工作中,多时相RST(稳健卫星技术)方法已经使用AMSR-E的C波段数据来实现。主要目的这样的分析的已调查可能的改进,无论是在质量和可靠性,AMSR-E土壤湿度检索,像RST的差分方法,可能产生的方面。获得应用这种方法从而影响2002年夏天欧洲一些国家的溢流事件的初步结果,在本文中介绍。首先得到的结果似乎证实,也为日常由NASA(美国国家航空和航天局),该方法的使用监测的时空域土壤湿度变化的效率提供的标准AMSR-E土壤水分产品比较AMSR-E C波段数据,而不需要辅助的或辅助信息。

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