DocumentCode :
91921
Title :
A Joint Rate Control Scheme in a Hybrid Stereoscopic Video Codec System for 3DTV Broadcasting
Author :
Yongjun Chang ; Munchurl Kim
Author_Institution :
Hyundai Asan Hosp., Seoul, South Korea
Volume :
59
Issue :
2
fYear :
2013
fDate :
Jun-13
Firstpage :
265
Lastpage :
280
Abstract :
In this paper, a frame-level joint rate control scheme for both intra- and inter-predictive coding is first introduced for a hybrid video codec system that independently encodes the two-view sequences of a stereoscopic video. The proposed rate control scheme jointly works on the left view encoder of MPEG-2 Video and the right view encoder of an H.264/AVC for stereoscopic video input, and is formulated as optimization problems that allow control of the output bit rates of both encoders in the sense that: 1) the sum of the two decoded video qualities is maximized, and 2) the quality difference is maintained around a desired level for a given target bit budget at the same time. In order to verify the effectiveness of the proposed joint rate scheme, it is compared with an independent rate control scheme. The experimental results show that the joint rate control scheme effectively regulates the output bitstreams of the hybrid encoders based on MPEG-2 Video and H.264/AVC. The joint rate control scheme achieves average 0.71 dB gain in PSNR and 67.07% reduction in the MSE of PSNR difference for I-frame only, average 0.54dB gain and 91.08% reduction for IPPP coding, and average 0.32dB gain and 79.01% reduction for IBBP coding.
Keywords :
digital video broadcasting; image sequences; optimisation; telecommunication control; three-dimensional television; video codecs; video coding; 3DTV broadcasting; H.264-AVC; I-frame; IBBP coding; IPPP coding; MPEG-2 video; MSE; PSNR; bit budget; bit rates; frame-level joint rate control scheme; gain 0.32 dB; gain 0.54 dB; gain 0.71 dB; hybrid encoders; hybrid stereoscopic video codec system; independent rate control scheme; interpredictive coding; intrapredictive coding; left view encoder; optimization problems; quality difference; right view encoder; two-view sequences; video qualities; Encoding; Joints; Optimization; Stereo image processing; Transform coding; Video codecs; Video coding; Distortion-quantization model; hybrid codec; joint rate control; optimization; rate-quantization model; target bit allocation;
fLanguage :
English
Journal_Title :
Broadcasting, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9316
Type :
jour
DOI :
10.1109/TBC.2013.2240731
Filename :
6479246
Link To Document :
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