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Spatio-temporal evaluation of resolution enhancement for passive microwave soil moisture and vegetation optical depth

机译:被动微波土壤水分和植被光学深度分辨率提高的时空评估

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Space-borne passive microwave radiometers are used to derive land surface parameters such as surface soil moisture and vegetation optical depth (VOD). However, the value of such products in regional hydrology is limited by their coarse resolution. In this study, the land parameter retrieval model (LPRM) is used to derive enhanced resolution (similar to 10 km) soil moisture and VOD from advanced microwave scanning radiometer (AMSR-E) brightness temperatures sharpened by a modulation technique based on high-frequency observations. A precipitation mask based on brightness temperatures was applied to remove precipitation artefacts in the sharpened LPRM products. The spatial and temporal patterns in the resulting products are evaluated against field-measured and modeled soil moisture as well as the normalized difference vegetation index (NDVI) over mainland Australia. Results show that resolution enhancement accurately sharpens the boundaries of different vegetation types, lakes and wetlands. Significant changes in temporal agreement between LPRM products and related datasets are limited to specific areas, such as lakes and coastal areas. Spatial correlations, on the other hand, increase over most of Australia. In addition, hydrological signals from irrigation and water bodies that were absent in the low-resolution soil moisture product become clearly visible after resolution enhancement. The increased information detail in the high-resolution LPRM products should benefit hydrological studies at regional scales. (C) 2015 Elsevier B.V. All rights reserved.
机译:星载无源微波辐射计用于得出土地表面参数,例如表面土壤湿度和植被光学深度(VOD)。但是,此类产品在区域水文学中的价值受到其粗略分辨率的限制。在这项研究中,土地参数检索模型(LPRM)用于通过先进的微波扫描辐射计(AMSR-E)通过基于高频的调制技术锐化的亮度温度来获得增强的分辨率(约10 km)的土壤水分和VOD观察。应用基于亮度温度的沉淀掩模,以去除锐化的LPRM产品中的沉淀伪影。针对实地测量和模拟的土壤水分以及澳大利亚大陆上的归一化差异植被指数(NDVI),对所得产品中的时空格局进行了评估。结果表明,分辨率增强可以准确地锐化不同植被类型,湖泊和湿地的边界。 LPRM产品和相关数据集之间的时间一致性的重大变化仅限于特定区域,例如湖泊和沿海地区。另一方面,在澳大利亚大部分地区,空间相关性增加。此外,分辨率提高后,低分辨率土壤水分产物中缺少的灌溉和水体的水文信号变得清晰可见。高分辨率LPRM产品中增加的信息详细信息应有益于区域规模的水文研究。 (C)2015 Elsevier B.V.保留所有权利。

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