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  4. JQF: Optimal JPEG Quantization Table Fusion by Simulated Annealing on Texture Images and Predicting Textures
 
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JQF: Optimal JPEG Quantization Table Fusion by Simulated Annealing on Texture Images and Predicting Textures

Journal
Data Compression Conference Proceedings
Journal Volume
2021-March
Pages
344-
Date Issued
2021
Author(s)
Huang C.-H
JA-LING WU  
DOI
10.1109/DCC50243.2021.00041
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85106007857&doi=10.1109%2fDCC50243.2021.00041&partnerID=40&md5=e6e587cf8d65325e6d0ae2201c968ac0
https://scholars.lib.ntu.edu.tw/handle/123456789/580941
Abstract
JPEG has been a widely used lossy image compression codec for nearly three decades. The JPEG standard allows to use customized quantization table; however, it's still a challenging problem to find an optimal quantization table within acceptable computational cost. This work tries to solve the dilemma of balancing between computational cost and image specific optimality by introducing a new concept of texture mosaic images. Instead of optimizing a single image or a collection of representative images, the simulated annealing technique is applied to texture mosaic images to search for an optimal quantization table for each texture category. We use pre-trained VGG-16 CNN model to learn those texture features and predict the new image's texture distribution, then fuse optimal texture tables to come out with an image specific optimal quantization table. On the Kodak dataset with the quality setting Q=95, our experiment shows a size reduction of 23.5% over the JPEG standard table with a slightly 0.35% FSIM decrease, which is visually unperceivable. The proposed JQF method achieves per image optimality for JPEG encoding with less than one second additional timing cost.
Subjects
Image Compression; JPEG; Quantization Table; Simulated Annealing; Texture Prediction
Type
conference paper

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