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Three-dimensional wavelets-based denoising of hyperspectral imagery

机译:基于三维小波的高光谱图像去噪

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We propose a three-dimensional (3-D) denoising approach and coding scheme. The suggested denoising algorithm is taking full advantage of the supplied volumetric data by decomposing the original hyperspectral imagery into individual subspaces, applying an orthogonal isotropic 3-D divergence-free wavelet transformation. The delineated capability of hierarchically structured wavelet coefficients improves the efficiency of the suggested denoising algorithm and effectively preserves the finest details and the relevant image features by emphasizing a nonlocal similarity and spectral-spatial structure of hyperspectral imagery into sparse representation. The proposed method is evaluated using spectral angle distance for a ground-truth spectral dataset and by classification accuracies using water quality indices, which are particularly sensitive to the presence of noise. The reported results are based on a real dataset, presenting three different airborne hyperspectral systems: AHS, CASI-1500i, and AisaEAGLE. Several qualitative and quantitative evaluation measures are applied to validate the ability of the suggested method for noise reduction and image quality enhancement. Experimental results demonstrate that the proposed denoising algorithm achieves better performance when applied on the suggested wavelet transformation compared with other examined noise reduction and hyperspectral image restoration techniques. (C) 2015 SPIE and IS&T
机译:我们提出了一种三维(3-D)去噪方法和编码方案。建议的降噪算法通过将原始高光谱图像分解为单个子空间,并应用正交各向同性的3D无散度小波变换,从而充分利用了所提供的体积数据。通过将高光谱图像的非局部相似性和光谱空间结构强调为稀疏表示,分层结构的小波系数的描述能力提高了建议的降噪算法的效率,并有效保留了最佳细节和相关图像特征。所建议的方法是使用地面真实频谱数据集的频谱角度距离和使用水质指数进行分类的准确性进行评估的,水质指数对噪声的存在特别敏感。报告的结果基于真实的数据集,显示了三个不同的机载高光谱系统:AHS,CASI-1500i和AisaEAGLE。应用了几种定性和定量评估措施,以验证所提出方法的降噪和图像质量增强的能力。实验结果表明,与其他经过研究的降噪和高光谱图像恢复技术相比,该算法在应用于建议的小波变换时具有更好的性能。 (C)2015 SPIE和IS&T

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