Reduced-reference metric design for objective perceptual quality assessment in wireless imaging

Author:

Engelke Ulrich,Kusuma Maulana,Zepernick Hans-Jürgen,Caldera Manora

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Computer Vision and Pattern Recognition,Signal Processing,Software

Reference45 articles.

1. A.C. Brooks, T.N. Pappas, Structural similarity quality metrics in a coding context: exploring the space of realistic distortions, in: IS&T/SPIE Human Vision and Electronic Imaging XI, vol. 6057, January 2006, pp. 60570U-1–12.

2. Objective quality assessment of color images based on a generic perceptual reduced reference;Carnec;Image Commun.,2008

3. D.M. Chandler, K.H. Lim, S.S. Hemami, Effects of spatial correlations and global precedence on the visual fidelity of distorted images, in: IS&T/SPIE Human Vision and Electronic Imaging XI, vol. 6057, January 2006, pp. 131–145.

4. VSNR: a wavelet-based visual signal-to-noise ratio for natural images;Chandler;IEEE Trans. Image Process.,2007

5. K. Chono, Y.-C. Lin, D. Varodayan, Y. Miyamoto, B. Girod, Reduced-reference image quality assessment using distributed source coding, in: IEEE International Conference on Multimedia and Expo, June 2008, pp. 609–612

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