DocumentCode
1797040
Title
Image quality assessment with mean squared error in a log based perceptual response domain
Author
Wufeng Xue ; Xuanqin Mou
Author_Institution
Inst. of Image Process. & Pattern Recognition, Xi´an Jiaotong Univ., Xi´an, China
fYear
2014
fDate
9-13 July 2014
Firstpage
315
Lastpage
319
Abstract
Up to now, there existing a lot of models that predict subjective quality of the contents of natural images which have undergone some unknown distortion procedures. These models, no matter fall in to the bottom-up mechanism or belong to the top-down functional modelling, fail to provide an easy-applied and reliable solution. The complex computation procedure prevents them from being widely used in related image processing areas such as image enhancement, image reconstruction and video coding. In the present work, we start from a two stage nonlinear perception model, which transforms the input image into a decorrelated one and then further reduces the redundancy between neighboring pixels by another nonlinear normalization procedure which transforms the previous output into a perceptual response domain. The final quality prediction is computed as the Euclid distance of the reference image and the distorted one in this response domain, this will make the new model be readily applied in other areas.
Keywords
computational geometry; image enhancement; image reconstruction; image resolution; mean square error methods; transforms; video coding; Euclid distance; bottom-up mechanism; complex computation procedure; image enhancement; image processing; image quality assessment; image reconstruction; log based perceptual response domain; mean squared error; neighboring pixels; nonlinear normalization procedure; top-down functional modelling; two stage nonlinear perception model; video coding; Abstracts; Image processing; Indexes; PSNR; Visualization; correlation; image quality; mutual information; response domain;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal and Information Processing (ChinaSIP), 2014 IEEE China Summit & International Conference on
Conference_Location
Xi´an
Print_ISBN
978-1-4799-5401-8
Type
conf
DOI
10.1109/ChinaSIP.2014.6889255
Filename
6889255
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