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The AACES field experiments: SMOS calibration and validation across the Murrumbidgee River catchment

机译:AACES现场实验:整个Murrumbidgee河流域的SMOS校准和验证

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Following the launch of the European Space Agency's Soil Moisture and Ocean Salinity (SMOS) mission on 2 November 2009, SMOS soil moisture products need to be rigorously validated at the satellite's approximately 45 km scale and disaggregation techniques for producing maps with finer resolutions tested. The Australian Airborne Cal/val Experiments for SMOS (AACES) provide the basis for one of the most comprehensive assessments of SMOS data world-wide by covering a range of topographic, climatic and land surface variability within an approximately 500 × 100 km ~2 study area, located in South-East Australia. The AACES calibration and validation activities consisted of two extensive field experiments which were undertaken across the Murrumbidgee River catchment during the Australian summer and winter season of 2010, respectively. The datasets include airborne L-band brightness temperature, thermal infrared and multi-spectral observations at 1 km resolution, as well as extensive ground measurements of near-surface soil moisture and ancillary data, such as soil temperature, soil texture, surface roughness, vegetation water content, dew amount, leaf area index and spectral characteristics of the vegetation. This paper explains the design and data collection strategy of the airborne and ground component of the two AACES campaigns and presents a preliminary analysis of the field measurements including the application and performance of the SMOS core retrieval model on the diverse land surface conditions captured by the experiments. The data described in this paper are publicly available from the website: http://www.moisturemap.monash.edu.au/aaces.
机译:在2009年11月2日发射了欧洲航天局的土壤湿度和海洋盐度(SMOS)任务之后,需要在卫星约45公里的范围内严格验证SMOS的土壤湿度产品,并采用分解技术来制作经过测试的更高分辨率的地图。澳大利亚SMOS机载校准试验(AACES)通过覆盖约500×100 km〜2的研究范围内的地形,气候和地表变化范围,为全球SMOS数据的最全面评估之一提供了基础区,位于澳大利亚东南部。 AACES的校准和验证活动包括两个广泛的野外实验,分别在2010年澳大利亚夏季和冬季在整个Murrumbidgee河流域进行。数据集包括机载L波段亮度温度,1 km分辨率的热红外和多光谱观测结果,以及对近地表土壤湿度和辅助数据(如土壤温度,土壤质地,表面粗糙度,植被)的广泛地面测量水分,露水量,叶面积指数和植被光谱特征。本文解释了两次AACES战役的机载和地面部分的设计和数据收集策略,并对野外测量进行了初步分析,包括在实验捕获的不同地面条件下SMOS核心取回模型的应用和性能。本文描述的数据可从以下网站上公开获得:http://www.moisturemap.monash.edu.au/aaces。

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