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A Fast Smoothing Algorithm for Post-Processing of Surface Reflectance Spectra Retrieved from Airborne Imaging Spectrometer Data

机译:从机载成像光谱仪数据中检索表面反射光谱的后处理的快速平滑算法

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摘要

Surface reflectance spectra retrieved from remotely sensed hyperspectral imaging data using radiative transfer models often contain residual atmospheric absorption and scattering effects. The reflectance spectra may also contain minor artifacts due to errors in radiometric and spectral calibrations. We have developed a fast smoothing technique for post-processing of retrieved surface reflectance spectra. In the present spectral smoothing technique, model-derived reflectance spectra are first fit using moving filters derived with a cubic spline smoothing algorithm. A common gain curve, which contains minor artifacts in the model-derived reflectance spectra, is then derived. This gain curve is finally applied to all of the reflectance spectra in a scene to obtain the spectrally smoothed surface reflectance spectra. Results from analysis of hyperspectral imaging data collected with the Airborne Visible/Infrared Imaging Spectrometer (AVIRIS) data are given. Comparisons between the smoothed spectra and those derived with the empirical line method are also presented.
机译:使用辐射转移模型从遥感高光谱成像数据中获取的表面反射光谱通常包含残留的大气吸收和散射效应。由于辐射和光谱校准中的误差,反射光谱也可能包含较小的伪影。我们已经开发了一种快速平滑技术,用于对检索到的表面反射光谱进行后处理。在当前的光谱平滑技术中,首先使用通过三次样条平滑算法导出的移动滤波器来拟合模型得出的反射光谱。然后得出一条公共增益曲线,该曲线在模型得出的反射光谱中包含较小的伪影。最终将该增益曲线应用于场景中的所有反射光谱,以获得光谱平滑的表面反射光谱。给出了用机载可见/红外成像光谱仪(AVIRIS)数据收集的高光谱成像数据的分析结果。还介绍了平滑光谱与使用经验线法得出的光谱之间的比较。

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