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Performance evaluation of single and multichannel microwave radiometers for soil moisture retrieval

机译:单通道和多通道微波辐射计在土壤水分回收中的性能评估

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摘要

The performance of single-channel, two-channel, and six-channel microwave radiometers is evaluated for the retrieval of soil moisture using parameterized numerical simulations. Commonly used frequencies of 1.4 GHz, 2.7 GHz, and 6.6 GHz at vertical and/or horizontal linear polarizations are considered. The best single-channel retrieval uses 1.4 GHz at vertical polarization (1.4 V). This channel is least sensitive to variable surface roughness and vegetation canopy, but all single-channel sensors, including 1.4 V, are degraded without some level of a priori information about these masking variables. The sensitivity to surface roughness is reduced significantly at 2.7 GHz and 6.6 GHz by increasing the angle of incidence beyond 25 degrees. The best two-channel case uses 1.4 V and 2.7 H to simultaneously retrieve both soil moisture and surface roughness. This improves the soil moisture retrieval and eliminates the need for a priori information about surface roughness. The sensitivity to variations in vegetation canopy is also acceptably small. Simultaneous use of all six channels to retrieve soil moisture, surface roughness, and vegetation canopy provides only marginal improvement over the best two-channel performance. The small amount of additional information contained in the other four channels is largely masked by typical levels of measurement noise. (C) Elsevier Science Inc., 2001. [References: 27]
机译:使用参数化数值模拟评估了单通道,两通道和六通道微波辐射计的性能,以检索土壤水分。考虑了在垂直和/或水平线性极化时常用的1.4 GHz,2.7 GHz和6.6 GHz频率。最佳的单通道检索在垂直极化(1.4 V)下使用1.4 GHz。该通道对可变的表面粗糙度和植被冠层最不敏感,但是所有的单通道传感器(包括1.4 V)在没有有关这些掩盖变量的某种先验信息的情况下都会退化。通过将入射角增加到25度以上,在2.7 GHz和6.6 GHz时对表面粗糙度的敏感性大大降低。最佳的两通道情况是使用1.4 V和2.7 H同时获取土壤水分和表面粗糙度。这改善了土壤水分的获取,并消除了有关表面粗糙度的先验信息的需求。对植被冠层变化的敏感性也可以接受地很小。同时使用所有六个通道来获取土壤湿度,表面粗糙度和植被冠层,仅比最佳的两个通道性能略有改善。其他四个通道中包含的少量附加信息在很大程度上被典型的测量噪声水平所掩盖。 (C)Elsevier Science Inc.,2001年。[参考:27]

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