DocumentCode :
3196198
Title :
A Novel Macroblock Layer Rate Control for H.264/AVC
Author :
Yang, Heng ; Wang, Qing
Author_Institution :
Northwestern Polytech. Univ., Xi´´an
fYear :
2007
fDate :
2-5 July 2007
Firstpage :
432
Lastpage :
435
Abstract :
A novel macroblock layer rate control algorithm for H.264/ AVC is proposed in this paper. To solve the issues of rate control model in H.264/AVC, we presented a new coding complexity measure based on integer transform coefficients, so-called mean absolute transform quantized distortion (MATQD). Then, we proposed four effective models respectively to improve our rate control performance, including MATQD prediction model, target bits allocation model, header bits prediction model for a marcoblock and the quadratic R-D model based on MATQD. Experimental results have shown that our method has more precise rate control performance than that of the standard rate control algorithm JVT-G012 in JM8.5 with the average absolute rate error reducing 0.396 bps. Furthermore, the proposed method can produce much smoother bit fluctuation with the average rate deviation reducing 21.74% and obtain much better average image quality with average PSNR improving 0.336 dB (the best gain is up to 0.77 dB).
Keywords :
computational complexity; rate distortion theory; video coding; H.264/AVC; MATQD prediction model; coding complexity; header bits prediction model; integer transform coefficients; macroblock layer rate control algorithm; mean absolute transform quantized distortion; quadratic R-D model; target bits allocation model; video coding; Automatic voltage control; Bit rate; Computer science; Distortion measurement; Error correction; Fluctuations; Image quality; Predictive models; Quantization; Video coding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Multimedia and Expo, 2007 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
1-4244-1016-9
Electronic_ISBN :
1-4244-1017-7
Type :
conf
DOI :
10.1109/ICME.2007.4284679
Filename :
4284679
Link To Document :
بازگشت