Title :
Decision based salt-and-pepper noise reduction using adaptive weighted Bézier approximation
Author :
Bhadouria, Vivek Singh ; Ghoshal, Devarshi
Author_Institution :
Dept. of Electron. & Commun. Eng., Nat. Inst. of Technol. Agartala, Agartala, India
Abstract :
The study proposes a novel image denoising algorithm based on Adaptive Weighted Quartic Order Bézier Approximation (AWQBA), for the images corrupted with low density saturated impulse noise, often termed as salt-and-pepper noise. The proposed algorithm first detects the presence of noisy pixel in sliding window of dimension 5×5, followed by smoothing operation on the detected noisy pixels using Bézier surface smoothing approach. To ensure the maximum likelihood between the reconstructed central pixel and its corresponding neighbors, a locally computed weight is multiplied with the reconstructed central pixel thereby restoring the image details, even after the filtering operation. Based on quantitative evaluation criteria of Peak Signal-to-Noise Ratio (PSNR), we have experimentally found that the proposed algorithm outperforms existing state-of-the-art median based filtering methods. High PSNR suggests the practicability of the proposed algorithm for subsequent image processing stages viz. edge detection, contour detection etc. and for low cost, high-quality imaging devices such as digital cameras, visual surveillance and consumer video-recorders etc. as well.
Keywords :
approximation theory; image denoising; impulse noise; maximum likelihood estimation; smoothing methods; AWQBA; Bézier surface smoothing approach; adaptive weighted quartic order Bézier approximation; contour detection; decision based salt-and-pepper noise reduction; edge detection; filtering operation; low density saturated impulse noise; maximum likelihood estimation; median based filtering methods; noisy pixel; novel image denoising algorithm; peak signal-to-noise ratio; quantitative evaluation criteria; reconstructed central pixel; Filtering theory; Noise measurement; PSNR; Smoothing methods; Surface treatment; Adaptive noise reduction; Bézier surface; Bernstein polynomial; salt-and-pepper noise;
Conference_Titel :
Image Information Processing (ICIIP), 2013 IEEE Second International Conference on
Conference_Location :
Shimla
Print_ISBN :
978-1-4673-6099-9
DOI :
10.1109/ICIIP.2013.6707595