Title :
A fast noise-robust interpolation method based on second-order directional-derivatives
Author :
Seung-Jun Lee ; Jong-Hwan Kim ; Seok-Jae Kang ; Wonhee Choe ; Sung-Jea Ko
Author_Institution :
Sch. of Electr. Eng. Dept., Korea Univ., Seoul, South Korea
Abstract :
It is a challenging work to reproduce the high resolution (HR) image from a noisy low resolution input while preserving its edge structures. In this paper, a fast noise-robust interpolation method is proposed. In the proposed method, the edge information of a pixel to be interpolated is first estimated using a local curvature (LC), which is a second-order directional-derivative obtained from its local neighborhoods. Based on the edge information of the pixel, edge-adaptive interpolation with noise reduction is performed using the proposed LC adaptive filter whose kernel is adaptively determined by comparing the LC values along the two orthogonal directions. A refinement procedure is adopted to further enhance the edge information of the HR image by applying a Laplacian subtraction method using the precomputed LC values. Experimental results show that the proposed method can preserve the edge sharpness while suppressing noise, with low computational complexity.
Keywords :
adaptive filters; computational complexity; edge detection; image denoising; image resolution; interpolation; HR image; LC adaptive filter; LC value; Laplacian subtraction method; computational complexity; edge information; edge sharpness; edge structure; edge-adaptive interpolation; fast noise-robust interpolation method; high resolution image; noise reduction; noise-robust interpolation method; noisy low resolution input; second-order directional-derivatives; Image edge detection; Image reconstruction; Interpolation; Kernel; Noise; Noise measurement; Noise robustness; Edge-preserving interpolation; noise-robust interpolation; second-order directional-derivative;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2015.7298297