首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Comparison of Statistical and Multifractal Properties of Soil Moisture and Brightness Temperature From ESTAR and PSR During SGP99
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Comparison of Statistical and Multifractal Properties of Soil Moisture and Brightness Temperature From ESTAR and PSR During SGP99

机译:SGP99期间ESTAR和PSR的土壤水分和亮度温度的统计和多重分形特性比较

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摘要

Global soil moisture products are based on passive microwave sensors of brightness temperature at different frequencies, including L- and C-bands. Two airborne sensors used to develop and test retrieval algorithms for soil moisture estimation are the L-band Electronically Scanned Thinned Array Radiometer (ESTAR) and the C-band Polarimetric Scanning Radiometer (PSR). In this letter, we compare the statistical and multifractal properties of soil moisture and brightness temperature from ESTAR and PSR during the Southern Great Plains Experiment in 1999. We show that differences between products are minimized at a support scale close to the satellite resolution. Then, we compare the subfootprint variabilities of each product in eight coarse domains of $25.6 times 25.6 hbox{km}^{2}$. Scale-invariance and multifractal properties were found in all the three available soil moisture products, but multifractality was negligible in brightness temperature fields, implying that the nonlinear transformations in retrieval algorithms introduce the multifractal behavior in soil moisture. Subfootprint variability and the multifractal behavior for diverse wetness conditions are also different for the three products. Since discrepancies between the subfootprint variabilities of PSR and ESTAR brightness temperatures are small, the factors leading to the differences among the soil moisture products are mainly due to the level of detail of the retrieval algorithm and to the spatial variability of forcing data and parameters related to surface roughness and vegetation.
机译:全球土壤水分产品基于无源微波传感器的亮度温度处于不同频率,包括L波段和C波段。用于开发和测试土壤湿度估算的检索算法的两个机载传感器是L波段电子扫描薄阵列辐射计(ESTAR)和C波段极化扫描辐射计(PSR)。在这封信中,我们比较了1999年南部大平原实验期间ESTAR和PSR的土壤水分和亮度温度的统计和多重分形特性。我们表明,在接近卫星分辨率的支持范围内,产品之间的差异最小。然后,我们在$ 25.6乘以25.6 hbox {km} ^ {2} $的八个粗糙域中比较每个产品的子足迹变异。在所有三种可用的土壤水分产品中都发现了尺度不变性和多重分形特性,但是在亮度温度场中多重分形可以忽略不计,这意味着检索算法中的非线性变换引入了土壤水分中的多重分形行为。这三种产品在不同湿度条件下的亚足印变异性和多重分形行为也不同。由于PSR的亚足量变异性与ESTAR亮度温度之间的差异很小,导致土壤水分产物差异的因素主要是由于检索算法的详细程度以及强迫数据和参数相关的空间变异性。表面粗糙度和植被。

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