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Image Inpainting on the Basis of Spectral Structure From 2-D Nonharmonic Analysis

机译:基于二维非谐波分析的光谱结构图像修复

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The restoration of images by digital inpainting is an active field of research and such algorithms are, in fact, now widely used. Conventional methods generally apply textures that are most similar to the areas around the missing region or use a large image database. However, this produces discontinuous textures and thus unsatisfactory results. Here, we propose a new technique to overcome this limitation by using signal prediction based on the nonharmonic analysis (NHA) technique proposed by the authors. NHA can be used to extract accurate spectra, irrespective of the window function, and its frequency resolution is less than that of the discrete Fourier transform. The proposed method sequentially generates new textures on the basis of the spectrum obtained by NHA. Missing regions from the spectrum are repaired using an improved cost function for 2D NHA. The proposed method is evaluated using the standard images Lena, Barbara, Airplane, Pepper, and Mandrill. The results show an improvement in MSE of about 10–20 compared with the examplar-based method and good subjective quality.
机译:通过数字修复来恢复图像是研究的活跃领域,并且事实上,这种算法现在已被广泛使用。常规方法通常应用与缺失区域周围的区域最相似的纹理,或者使用大型图像数据库。但是,这会产生不连续的纹理,因此效果不理想。在这里,我们提出了一种新技术,通过基于作者提出的非谐波分析(NHA)技术的信号预测来克服此限制。无论窗口函数如何,NHA均可用于提取准确的频谱,其频率分辨率小于离散傅立叶变换的频率分辨率。所提出的方法基于由NHA获得的光谱顺序生成新纹理。使用改进的2D NHA成本函数,可以修复频谱中的缺失区域。使用标准图像Lena,Barbara,Airplane,Pepper和Mandrill对所提出的方法进行评估。结果表明,与基于示例的方法相比,MSE的改善约为10–20,并且主观质量良好。

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