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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Observations and statistical analysis of combined active-passive microwave space-borne data and snow depth at large spatial scales
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Observations and statistical analysis of combined active-passive microwave space-borne data and snow depth at large spatial scales

机译:大空间尺度上主动-被动微波星载数据和积雪深度的观测和统计分析

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摘要

Remote sensing based on active and passive microwave data represents a useful tool for studying the state of the cryosphere at high temporal resolution and large spatial scale. In particular, retrieving snow parameters from space-borne data can benefit hydrological, meteorological, and climatological applications. In this paper, we analyze the trend of Ku band backscatter coefficients measured by the NASA's Quick Scatterometer (QuikSCAT) and K and Ka band brightness temperatures measured by the Special Sensor Microwave Imager (SSM/I) with respect to snow depth values at different locations in the Northern hemisphere during the period 1999-2004. We also quantify, for the first time, the dynamic range of space-borne Ku band scatterometer data over snow covered areas at very large spatial scale in comparison to the range in passive microwave brightness temperatures. Also for the first time, we quantify the improvement on the snow depth retrieval related to the combined use of active and passive data and compare the results with those obtained using either only active or passive data. Finally, we report first results regarding an analysis involving X-band brightness temperatures, collected by the Advanced Microwave Scanning Radiometer for EOS (AMSR-E), aiming at understanding whether the improvements derived from using a combination of active and passive data are related to the use of a low frequency or to the different techniques used (e.g., active or passive).
机译:基于主动和被动微波数据的遥感代表了一种有用的工具,可用于以高时间分辨率和大空间尺度研究冰冻圈的状态。特别是,从星载数据中检索降雪参数可以使水文,气象和气候学应用受益。在本文中,我们分析了NASA快速散射仪(QuikSCAT)测得的Ku波段背向散射系数和特殊传感器微波成像仪(SSM / I)测得的K和Ka波段亮度温度相对于不同位置的积雪深度的趋势。 1999-2004年期间在北半球。与被动微波亮度温度范围相比,我们还首次量化了在很大的空间尺度上积雪覆盖区域上的星载Ku波段散射仪数据的动态范围。同样是第一次,我们量化了与主动和被动数据组合使用相关的降雪深度检索的改进,并将结果与​​仅使用主动或被动数据获得的结果进行了比较。最后,我们报告了有关EOS的高级微波扫描辐射仪(AMSR-E)收集的涉及X波段亮度温度的分析的第一个结果,旨在了解是否将主动和被动数据组合使用所带来的改进与使用低频或使用不同的技术(例如,有源或无源)。

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