Title :
Efficient Motion Estimation Using a Sorting-Based Early Termination Algorithm in H.264 Video Coding
Author :
Wang, ChouChen ; Kao, JungYang ; Lin, Yu-Kai
Author_Institution :
Dept. of Electron. Eng., I-Shou Univ., Kaohsiung
Abstract :
The H.264/AVC video coding standard uses 7 variable block sizes ranging from 16times16 to 4times4 in interframe coding. The motion estimation with 7 modes needs very high computational complexity. To reduce the complexity of ME module in H.264, we propose a new and fast motion-estimation algorithm based on partial block distortion for sorted significant features including bit-plane and absolute difference of means (ADM). The partial distortion searching (PDS) algorithm, from top-to-bottom line matching scan, is a popular method for fast full search (FSS) in H.264. When the proposed algorithm is combined with the sub-block PDS (proposed-PDS), it can find the same motion vectors as FSS. Furthermore, when the proposed algorithm is combined with the normalized PDS (proposed-NPDS), it can obtain relatively accurate motion vectors with a large reduced computational load. Simulation results show that the proposed-PDS method requires about 90% of the computation needed by the FSS in H.264 without any loss of R-D performance, and the proposed-NPDS requires only about 68% of the computation needed by the FSS with the R-D performance very close to FFS
Keywords :
code standards; computational complexity; motion estimation; search problems; video coding; ADM; FSS; H.264-AVC; PDS; absolute difference of means; advanced video coding standard; computational complexity; fast full search; interframe coding; motion estimation; partial distortion searching algorithm; sorting-based early termination algorithm; Automatic voltage control; Codecs; Computational complexity; Computer industry; Degradation; Frequency selective surfaces; Industrial electronics; Motion estimation; Performance loss; Video coding;
Conference_Titel :
Multimedia, 2006. ISM'06. Eighth IEEE International Symposium on
Conference_Location :
San Diego, CA
Print_ISBN :
0-7695-2746-9
DOI :
10.1109/ISM.2006.65