*********************************
There is now a CONTENT FREEZE for Mercury while we switch to a new platform. It began on Friday, March 10 at 6pm and will end on Wednesday, March 15 at noon. No new content can be created during this time, but all material in the system as of the beginning of the freeze will be migrated to the new platform, including users and groups. Functionally the new site is identical to the old one. webteam@gatech.edu
*********************************
Title: Understanding Perceived Quality through Visual Representations
Committee:
Dr. Ghassan AlRegib, ECE, Chair , Advisor
Dr. James McClellan, ECE
Dr. David Anderson, ECE
Dr. Anthony Yezzi, ECE
Dr. Nagi Gebraeel, ISyE
Abstract:
The formatting of images can be considered as an optimization problem whose cost function is a quality assessment algorithm. There is a trade-off between bit budget per pixel and quality. To maximize the quality and minimize the bit budget, we need to measure the perceived quality. In this thesis, we focus on understanding perceived quality through visual representations that are based on visual system characteristics and color perception mechanisms. Specifically, we use the contrast sensitivity mechanisms in retinal ganglion cells and the suppression mechanisms in cortical neurons. We utilize color difference equations and color name distances to mimic pixel-wise color perception and a bio-inspired model to formulate center surround effects. We combine our findings from visual system and color perception with data-driven methods to generate visual representations and measure their quality. The majority of existing data-driven methods require subjective scores or degraded images. In contrast, we introduce an unsupervised approach that utilizes solely generic images. In addition to introducing quality estimators, we analyze the role of spatial pooling and boosting in image quality assessment.