Title :
New reduced-reference objective stereo image quality assessment model based on human visual system
Author :
Kaihui Zheng ; Mei Yu ; Xin Jin ; Gangyi Jiang ; Zongju Peng ; Fen Shao
Author_Institution :
Fac. of Inf. Sci. & Eng., Ningbo Univ., Ningbo, China
Abstract :
With rapid development in three dimensional video technologies, quality assessment plays an important role in the field of stereo image processing. In this paper, a new reduced-reference stereo image quality assessment model based on binocular human visual system is proposed. The stereos images are divided into binocular fusion portion and binocular rivalry portion with the guide of internal generative mechanism. Then the binocular fusion portion is fused to cyclopean view. By extracting reduced singular value decomposition feature of cyclopean view and reduced generalized Gaussian distribution feature in binocular rivalry portion, the quality indicators of binocular fusion portion and binocular rivalry portion can be obtained. Experimental result shows that the proposed model outperforms some other models, and its correlation coefficients of assessment versus the subjective perception are satisfactory over five types of distortion, including JPEG, JPEG2000, Gaussian blur, white Gaussian noise and Fast-fading.
Keywords :
Gaussian distribution; Gaussian noise; feature extraction; image fusion; medical image processing; singular value decomposition; stereo image processing; visual perception; white noise; Fast-fading distortion; Gaussian blur distortion; JPEG distortion; JPEG2000 distortion; binocular fusion portion; binocular human visual system; binocular rivalry portion; correlation coefficients; cyclopean view; feature extraction; generalized Gaussian distribution feature; internal generative mechanism; reduced-reference objective stereo image quality assessment model; singular value decomposition; stereo image processing; subjective perception; three-dimensional video technologies; white Gaussian noise distortion; Discrete wavelet transforms; Feature extraction; Image quality; Quality assessment; Three-dimensional displays; Transform coding; Visualization; Binocular vision; Cyclopean view; Reduced-reference; Stereoscopic image quality assessment;
Conference_Titel :
3DTV-Conference: The True Vision - Capture, Transmission and Display of 3D Video (3DTV-CON), 2014
Conference_Location :
Budapest
DOI :
10.1109/3DTV.2014.6874771