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Blind restoration for nonuniform aerial images using nonlocal Retinex model and shearlet-based higher-order regularization

机译:使用非局部Retinex模型和基于小波的高阶正则化对非均匀航拍图像进行盲恢复

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Aerial images are often degraded by space-varying motion blurs and simultaneous uneven illumination. To recover a high-quality aerial image from its nonuniform version, we propose a patchwise restoration approach based on a key observation that the degree of blurring is inevitably affected by the illumination conditions. A nonlocal Retinex model is developed to accurately estimate the reflectance component from the degraded aerial image. Thereafter, the uneven illumination is corrected well. Then nonuniform coupled blurring in the enhanced reflectance image is alleviated and transformed toward uniform distribution, which will facilitate the subsequent deblurring. For constructing the multiscale sparsified regularization, the discrete shearlet transform is improved to better represent anisotropic image features in terms of directional sensitivity and selectivity. In addition, a new adaptive variant of total generalized variation is proposed to act as the structure-preserving regularizer. These complementary regularizers are elegantly integrated into an objective function. The final deblurred image with uniform illumination can be obtained by applying a fast alternating direction scheme to solve the derived function. The experimental results demonstrate that our algorithm can not only effectively remove both the space-varying illumination and motion blurs in aerial images, but also recover the abundant details of aerial scenes with top-level objective and subjective quality, and outperforms other state-of-the-art restoration methods. (C) 2017 SPIE and IS&T
机译:时空运动模糊和同时的不均匀照明通常会降低航空图像的质量。为了从其不均匀的版本中恢复高质量的航空图像,我们提出了一个基于关键观察的斑块复原方法,即模糊程度不可避免地受到照明条件的影响。开发了非本地Retinex模型以从退化的航空图像中准确估计反射率分量。此后,良好地校正了不均匀照明。然后,增强的反射率图像中的不均匀耦合模糊得到缓解,并朝着均匀分布方向转变,这将有助于后续的去模糊。为了构造多尺度稀疏正则化,改进了离散小波变换,以在方向灵敏度和选择性方面更好地表示各向异性图像特征。另外,提出了一种新的总广义变化量的自适应变体,作为保留结构的正则化器。这些互补的调节器完美地集成到目标函数中。通过应用快速交替方向方案来求解导出的函数,可以获得具有均匀照明的最终去模糊图像。实验结果表明,该算法不仅可以有效去除航空影像中时空变化的照明和运动模糊,而且可以以顶级的主观质量恢复航空场景的丰富细节,性能优于其他状态。最新的修复方法。 (C)2017 SPIE和IS&T

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