Title :
Low-complexity video noise reduction in wavelet domain
Author :
Gupta, Nikhil ; Swamy, M.N.S. ; Plotkin, Eugene I.
Author_Institution :
Dept. of Electr. & Comput. Eng., Concordia Univ., Montreal, Que., Canada
fDate :
29 Sept.-1 Oct. 2004
Abstract :
This paper proposes a novel spatio-temporal filter for video denoising that operates entirely in the wavelet domain and is based on temporal decorrelation. For effective noise reduction, the spatial and the temporal redundancies, which exist in the wavelet domain representation of a video signal, are exploited. Using simple and closed form expressions, the temporal information in the wavelet domain is first decorrelated in order to minimize the redundancy. The decorrelated noise-free coefficients are then modeled using a generalized Gaussian prior. For spatial filtering of the noisy wavelet coefficients, a new, low-complexity wavelet shrinkage method, which utilizes the correlation that exists between subsequent resolution levels, is proposed. Experimental results show that the proposed scheme outperforms state-of-the-art spatio-temporal filters in time and wavelet domains, both in terms of PSNR and visual quality.
Keywords :
Gaussian processes; computational complexity; decorrelation; discrete Fourier transforms; filtering theory; image denoising; image representation; image resolution; spatial filters; video signal processing; wavelet transforms; Gaussian process; discrete Fourier transform; image resolution; low-complexity video noise reduction; spatial filtering; spatio-temporal filter; temporal decorrelation; video denoising; wavelet domain representation; wavelet shrinkage method; Decorrelation; Filtering; Filters; Gaussian noise; Noise level; Noise reduction; PSNR; Spatial resolution; Wavelet coefficients; Wavelet domain;
Conference_Titel :
Multimedia Signal Processing, 2004 IEEE 6th Workshop on
Print_ISBN :
0-7803-8578-0
DOI :
10.1109/MMSP.2004.1436537