利用MODIS大气产品对高空间分辨率商业卫星影像产品进行大气校正

M. Pagnutti, K. Holekamp, R. Ryan, R. Vaughan, J. Russell, D. Prados, T. Stanley
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引用次数: 5

摘要

遥感地面反射率是许多传感器间互操作性或变化检测技术的基础。卫星间比较和精确的植被指数,如归一化差异植被指数,用于描述或暗示各种生物物理参数,并根据近红外和红波段反射率定义,需要生成精确的反射率图。这一生成依赖于去除太阳光照、卫星几何形状和大气影响,通常被称为大气校正。然而,遥感影像对地面反射率的大气校正仅在少数系统中得到广泛应用。在这项研究中,我们使用几种方法对商业上可用的高空间分辨率IKONOS和QuickBird图像进行大气校正,以确定所得反射率图的精度。我们使用了为期两年的9个IKONOS和QuickBird场景的大量地面测量数据集来建立反射率图的精度。利用中分辨率成像光谱仪数据生成的大气产品进行校正,得到了良好的反射率图,证明了一种可靠、有效的反射率图生成方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atmospheric correction of high spatial resolution commercial satellite imagery products using MODIS atmospheric products
Remotely sensed ground reflectance is the basis for many inter-sensor interoperability or change detection techniques. Satellite inter-comparisons and accurate vegetation indices such as the Normalized Difference Vegetation Index, which is used to describe or to imply a wide variety of biophysical parameters and is defined in terms of near-infrared and red- band reflectance, require the generation of accurate reflectance maps. This generation relies upon the removal of solar illumination, satellite geometry, and atmospheric effects and is generally referred to as atmospheric correction. Atmospheric correction of remotely sensed imagery to ground reflectance, however, has been widely applied to only a few systems. In this study, we atmospherically corrected commercially available, high spatial resolution IKONOS and QuickBird imagery using several methods to determine the accuracy of the resulting reflectance maps. We used extensive ground measurement datasets for nine IKONOS and QuickBird scenes acquired over a two-year period to establish reflectance map accuracies. A correction approach using atmospheric products derived from Moderate Resolution Imaging Spectrometer data created excellent reflectance maps and demonstrated a reliable, effective method for reflectance map generation.
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