DocumentCode
107600
Title
Perceptual Quality-Regulable Video Coding System With Region-Based Rate Control Scheme
Author
Guan-Lin Wu ; Yu-Jie Fu ; Sheng-Chieh Huang ; Shao-Yi Chien
Author_Institution
Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
Volume
22
Issue
6
fYear
2013
fDate
Jun-13
Firstpage
2247
Lastpage
2258
Abstract
In this paper, we discuss a region-based perceptual quality-regulable H.264 video encoder system that we developed. The ability to adjust the quality of specific regions of a source video to a predefined level of quality is an essential technique for region-based video applications. We use the structural similarity index as the quality metric for distortion-quantization modeling and develop a bit allocation and rate control scheme for enhancing regional perceptual quality. Exploiting the relationship between the reconstructed macroblock and the best predicted macroblock from mode decision, a novel quantization parameter prediction method is built and used to achieve the target video quality of the processed macroblock. Experimental results show that the system model has only 0.013 quality error in average. Moreover, the proposed region-based rate control system can encode video well under a bitrate constraint with a 0.1% bitrate error in average. For the situation of the low bitrate constraint, the proposed system can encode video with a 0.5% bit error rate in average and enhance the quality of the target regions.
Keywords
distortion; error statistics; quantisation (signal); video codecs; video coding; bit allocation; bit error rate; distortion-quantization modeling; perceptual quality-regulable video coding system; processed macroblock; quality error; quantization parameter prediction method; rate control scheme; reconstructed macroblock; region-based perceptual quality-regulable H.264 video encoder system; region-based rate control scheme; region-based rate control system; region-based video applications; regional perceptual quality; source video; H.264; perceptual video coding; structural similarity (SSIM);
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2013.2247409
Filename
6487402
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