A psychovisual quality metric in free-energy principle

In this paper, we propose a new psychovisual quality metric of images based on recent developments in brain theory and neuroscience, particularly the free-energy principle. The perception and understanding of an image is modeled as an active inference process, in which the brain tries to explain the...

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Main Authors: Lin, Weisi, Zhang, Wenjun., Zhai, Guangtao., Wu, Xiaolin., Yang, Xiaokang.
Other Authors: School of Computer Engineering
Format: Article
Language:English
Published: 2013
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Online Access:https://hdl.handle.net/10356/84501
http://hdl.handle.net/10220/13489
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-845012020-05-28T07:18:34Z A psychovisual quality metric in free-energy principle Lin, Weisi Zhang, Wenjun. Zhai, Guangtao. Wu, Xiaolin. Yang, Xiaokang. School of Computer Engineering DRNTU::Engineering::Computer science and engineering In this paper, we propose a new psychovisual quality metric of images based on recent developments in brain theory and neuroscience, particularly the free-energy principle. The perception and understanding of an image is modeled as an active inference process, in which the brain tries to explain the scene using an internal generative model. The psychovisual quality is thus closely related to how accurately visual sensory data can be explained by the generative model, and the upper bound of the discrepancy between the image signal and its best internal description is given by the free energy of the cognition process. Therefore, the perceptual quality of an image can be quantified using the free energy. Constructively, we develop a reduced-reference free-energy-based distortion metric (FEDM) and a no-reference free-energy-based quality metric (NFEQM). The FEDM and the NFEQM are nearly invariant to many global systematic deviations in geometry and illumination that hardly affect visual quality, for which existing image quality metrics wrongly predict severe quality degradation. Although with very limited or even without information on the reference image, the FEDM and the NFEQM are highly competitive compared with the full-reference SSIM image quality metric on images in the popular LIVE database. Moreover, FEDM and NFEQM can measure correctly the visual quality of some model-based image processing algorithms, for which the competing metrics often contradict with viewers' opinions. 2013-09-16T07:28:00Z 2019-12-06T15:46:11Z 2013-09-16T07:28:00Z 2019-12-06T15:46:11Z 2011 2011 Journal Article Zhai, G., Wu, X., Yang, X., Lin, W., & Zhang, W. (2011). A Psychovisual Quality Metric in Free-Energy Principle. IEEE Transactions on Image Processing, 21(1), 41-52. 1057-7149 https://hdl.handle.net/10356/84501 http://hdl.handle.net/10220/13489 10.1109/TIP.2011.2161092 en IEEE transactions on image processing © 2011 IEEE
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Engineering::Computer science and engineering
spellingShingle DRNTU::Engineering::Computer science and engineering
Lin, Weisi
Zhang, Wenjun.
Zhai, Guangtao.
Wu, Xiaolin.
Yang, Xiaokang.
A psychovisual quality metric in free-energy principle
description In this paper, we propose a new psychovisual quality metric of images based on recent developments in brain theory and neuroscience, particularly the free-energy principle. The perception and understanding of an image is modeled as an active inference process, in which the brain tries to explain the scene using an internal generative model. The psychovisual quality is thus closely related to how accurately visual sensory data can be explained by the generative model, and the upper bound of the discrepancy between the image signal and its best internal description is given by the free energy of the cognition process. Therefore, the perceptual quality of an image can be quantified using the free energy. Constructively, we develop a reduced-reference free-energy-based distortion metric (FEDM) and a no-reference free-energy-based quality metric (NFEQM). The FEDM and the NFEQM are nearly invariant to many global systematic deviations in geometry and illumination that hardly affect visual quality, for which existing image quality metrics wrongly predict severe quality degradation. Although with very limited or even without information on the reference image, the FEDM and the NFEQM are highly competitive compared with the full-reference SSIM image quality metric on images in the popular LIVE database. Moreover, FEDM and NFEQM can measure correctly the visual quality of some model-based image processing algorithms, for which the competing metrics often contradict with viewers' opinions.
author2 School of Computer Engineering
author_facet School of Computer Engineering
Lin, Weisi
Zhang, Wenjun.
Zhai, Guangtao.
Wu, Xiaolin.
Yang, Xiaokang.
format Article
author Lin, Weisi
Zhang, Wenjun.
Zhai, Guangtao.
Wu, Xiaolin.
Yang, Xiaokang.
author_sort Lin, Weisi
title A psychovisual quality metric in free-energy principle
title_short A psychovisual quality metric in free-energy principle
title_full A psychovisual quality metric in free-energy principle
title_fullStr A psychovisual quality metric in free-energy principle
title_full_unstemmed A psychovisual quality metric in free-energy principle
title_sort psychovisual quality metric in free-energy principle
publishDate 2013
url https://hdl.handle.net/10356/84501
http://hdl.handle.net/10220/13489
_version_ 1681057683655884800