Title :
Multiscale Semilocal Interpolation With Antialiasing
Author :
Guo, Kai ; Yang, Xiaokang ; Zha, Hongyuan ; Lin, Weiyao ; Yu, Songyu
Author_Institution :
Shanghai Key Lab. of Digital Media Process. & Transm., Shanghai Jiao Tong Univ., Shanghai, China
Abstract :
Aliasing is a common artifact in low-resolution (LR) images generated by a downsampling process. Recovering the original high-resolution image from its LR counterpart while at the same time removing the aliasing artifacts is a challenging image interpolation problem. Since a natural image normally contains redundant similar patches, the values of missing pixels can be available at texture-relevant LR pixels. Based on this, we propose an iterative multiscale semilocal interpolation method that can effectively address the aliasing problem. The proposed method estimates each missing pixel from a set of texture-relevant semilocal LR pixels with the texture similarity iteratively measured from a sequence of patches of varying sizes. Specifically, in each iteration, top texture-relevant LR pixels are used to construct a data fidelity term in a maximum a posteriori estimation, and a bilateral total variation is used as the regularization term. Experimental results compared with existing interpolation methods demonstrate that our method can not only substantially alleviate the aliasing problem but also produce better results across a wide range of scenes both in terms of quantitative evaluation and subjective visual quality.
Keywords :
image resolution; image texture; interpolation; iterative methods; maximum likelihood estimation; antialiasing; bilateral total variation; data fidelity term; downsampling process; image interpolation problem; iterative multiscale semilocal interpolation method; low-resolution images; maximum a posteriori estimation; missing pixel estimation; quantitative evaluation; regularization term; subjective visual quality; texture-relevant LR pixels; Estimation; Image edge detection; Interpolation; Iterative methods; Materials; Noise reduction; Size measurement; Antialiasing; image interpolation; iterative multiscale; semilocal;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2011.2165290