Title :
Image interpolation based on non-local geometric similarities
Author :
Shuyuan Zhu ; Bing Zeng ; Guanghui Liu ; Liaoyuan Zeng ; Lu Fang ; Gabbouj, Moncef
Author_Institution :
Inst. of Image Process., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
fDate :
June 29 2015-July 3 2015
Abstract :
Image interpolation refers to constructing a high-resolution (HR) image from a low-resolution (LR) image. Traditionally, an HR image can be produced from an observed LR image via the polynomial-based interpolation (bi-linear or bi-cubic interpolations, involving a small number of neighbors around each interpolated position). The advanced interpolation makes use of the so-called “geometric similarity” to design a set of optimal interpolation weighting coefficients. However, better geometric similarities can perhaps be found from a non-local area within the LR source image or even from other but similar images (possibly with higher resolutions). Based on this fact, we propose in this paper a non-local geometric similarity based interpolation scheme to construct HR images. In our proposed method, optimal weighting coefficients are determined by solving a regularized least squares problem which is built upon a number of dual reference patches drawn from the observed LR image and regularized by the variation of directional gradients of the image patch. Experimental results demonstrate that our proposed method offers a remarkable quality improvement, both objectively and subjectively.
Keywords :
image resolution; interpolation; least squares approximations; polynomials; HR image; LR image; bicubic interpolation; bilinear interpolation; directional gradients; dual reference patches; high-resolution image; image interpolation; low-resolution image; nonlocal geometric similarities; nonlocal geometric similarity; optimal interpolation weighting coefficients; optimal weighting coefficients; polynomial-based interpolation; regularized least squares problem; Euclidean distance; Image edge detection; Image resolution; Interpolation; Linear regression; Mathematical model; Image interpolation; geometric similarity; regularization; weighting coefficients;
Conference_Titel :
Multimedia and Expo (ICME), 2015 IEEE International Conference on
Conference_Location :
Turin
DOI :
10.1109/ICME.2015.7177417