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A Conceptual Model of Surface Reflectance Estimation for Satellite Remote Sensing Images Using in situ Reference Data

机译:利用原位参考数据估算卫星遥感图像表面反射率的概念模型

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For satellite remote sensing, radiances received at the sensor are not only affected by the atmosphere but also by the topographic properties of the terrain surface. As a result, atmospheric correction alone does not yield output images that truly reflect terrain surface properties, namely surface reflectance (bidirectional reflectance factor, BRF) of objects on the earth surface. Following the concept of the radiometric control area (RCA)-based path radiance estimation method, we herein propose a statistical approach for surface reflectance estimation utilizing DEM data and surface reflectance of selected radiometric control areas. An algorithm for identification of shaded samples and a shape factor model were also developed in this study. The proposed RCA-based surface reflectance estimation method is capable of achieving good reflectance estimates in a region where elevation varies from 0 to approximately 600 m above the mean sea level. However, further study is recommended in order to extend the application of the proposed method to areas with substantial terrain variation.
机译:对于卫星遥感,传感器接收的辐射不仅受大气影响,还受地形表面的地形特性影响。结果,仅靠大气校正并不能产生真正反映地形表面特性的输出图像,即地面上物体的表面反射率(双向反射率,BRF)。遵循基于辐射控制区域(RCA)的路径辐射率估计方法的概念,我们在这里提出一种统计方法,用于利用DEM数据和所选辐射控制区域的表面反射率进行表面反射率估计。在这项研究中,还开发了用于识别阴影样本的算法和形状因子模型。所提出的基于RCA的表面反射率估计方法能够在海拔从平均海平面变化0到大约600m的区域中实现良好的反射率估计。但是,建议进一步研究,以将所提出的方法的应用范围扩展到地形变化较大的区域。

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