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Microwave vegetation indices derived from satellite microwave radiometers

机译:卫星微波辐射计得出的微波植被指数

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Vegetation indices are valuable in many fields of geosciences. Conventional, visible-near infrared, indices are often limited by the effects of atmosphere, background soil conditions, and saturation at high levels of vegetation. In this study, the theoretical basis for a new type of passive microwave vegetation indices (MVIs) based on data from the Advanced Microwave Scanning Radiometer (AMSR-E) on the Aqua satellite is developed. Numerical simulation results were used to establish relationships of bare soil surface emissivities at different frequencies. Using a radiative transfer model, a linear relationship between the brightness temperatures observed at two adjacent radiometer frequencies can be derived. The intercept and slope of this linear function depend only on the vegetation properties and can be used as vegetation indices. These can be derived from the dual-frequency and dual-polarization satellite measurements under the assumption that there is no significant impact of the polarization dependence on the vegetation signals. To demonstrate the potential of the new microwave vegetation indices, we compared them with the Normalized Difference of Vegetation Index (NDVI) derived using MODIS at continental and global scales. The results indicate that the MVIs provide a complementary dataset for monitoring global short vegetation and seasonal phenology from space.
机译:植被指数在地球科学的许多领域都很有价值。传统的近红外可见光指数通常受大气,背景土壤条件和高植被水平饱和度的影响。在这项研究中,基于来自Aqua卫星上的高级微波扫描辐射仪(AMSR-E)的数据,开发了新型无源微波植被指数(MVI)的理论基础。数值模拟结果用于建立不同频率下裸露的土壤表面发射率的关系。使用辐射传递模型,可以得出在两个相邻辐射计频率处观察到的亮度温度之间的线性关系。该线性函数的截距和斜率仅取决于植被属性,可以用作植被指数。这些可以从双频和双极化卫星测量中推导得出,假设极化依赖性对植被信号没有显着影响。为了证明新的微波植被指数的潜力,我们将它们与使用MODIS在大陆和全球范围内得出的归一化植被指数(NDVI)进行了比较。结果表明,MVI提供了一个补充的数据集,用于监测来自太空的全球短生植被和季节性物候。

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