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Analysis of Surface Reflectance Retrieval Over Four Typical Surfaces Via Gaofen-1 Satellite WFV4 Imagery

机译:高芬-1卫星WFv4图像对四个典型表面的表面反射率检索分析

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摘要

As a basis for the quantitative application of satellite remote sensing, surface reflectance can be retrieved through atmospheric correction methods. Currently, most studies have focused on developing or comparing atmospheric correction methods. However, few studies have quantitatively analyzed the effects of input parameters in an atmospheric correction method on retrieved surface reflectance. In this study, we evaluated the effects of the calibration coefficient, aerosol optical depth (AOD), aerosol type, and satellite zenith angle over four typical surfaces using wide field-of-view sensor four data of the Gao Fen-1 satellite. The results showed that (1) the relative errors of shrub, corn, grass, and soil reflectance increased as the calibration coefficient error increased; (2) the calibration coefficient, AOD, aerosol type, and satellite zenith angle affected corn reflectance retrieval the most, whereas they had the smallest effect on soil reflectance retrieval; and (3) the accuracy of the satellite zenith angle on the retrieved surface reflectance was the least pronounced, whereas the accuracy of aerosol type was the most pronounced.
机译:作为卫星遥感定量应用的基础,可以通过大气校正方法检索表面反射率。目前,大多数研究专注于开发或比较大气校正方法。然而,很少有研究在检索的表面反射率上定量分析了在大气校正方法中输入参数的影响。在这项研究中,我们使用宽阔的视场传感器四个数据评估了四个典型表面的校准系数,气溶胶光学深度(AOD),气溶胶类型和卫星天顶角的影响。结果表明,随着校准系数误差增加,(1)灌木,玉米,草和土壤反射率的相对误差; (2)校准系数,AOD,气溶胶型和卫星天顶角影响玉米反射率最多,而它们对土壤反射率的影响最小; (3)卫星天顶角度在检索到的表面反射率上的准确性最为明显,而气溶胶类型的准确性是最明显的。

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