Title :
Fast PU Skip and Split Termination Algorithm for HEVC Intra Prediction
Author :
Kyungmin Lim ; Jaeho Lee ; Seongwan Kim ; Sangyoun Lee
Author_Institution :
Sch. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
Abstract :
High Efficiency Video Coding (HEVC) is developed for next-generation video coding, which achieves significant improvements in coding efficiency compared with H.264/Advanced Video Coding by adopting various tools including a quadtree-based block partitioning structure. However, this causes high encoding complexity for exhaustive rate-distortion (RD) cost computation of the extended prediction unit (PU) searching. In this paper, a fast PU skip and split termination algorithm is proposed. The proposed method consists of three algorithms: 1) early skip; 2) PU skip; and 3) PU split termination. The early skip algorithm allows immediate skipping of the RD cost computation for large PUs according to the neighboring PUs. Based on Bayes´s rule, the PU skip algorithm allows skipping of the full RD cost computation, and the split termination algorithm terminates further PU splitting using the RD cost of rough mode decision (RMD). The decision parameter for the PU skip and the split termination is presented as the ratio of the RMD RD costs between the current PU and the spatially adjacent or upper depth PU. The simulation results show that the proposed algorithm achieves a saving of 53.52% encoding time while maintaining almost the same RD performances as the HEVC reference software.
Keywords :
Bayes methods; decision theory; rate distortion theory; search problems; video coding; Bayes´s rule; HEVC intra prediction; HEVC reference software; PU skip algorithm; PU split termination algorithm; RMD RD costs; coding efficiency improvement; early skip algorithm; exhaustive rate-distortion cost computation; extended prediction unit searching; fast PU skip algorithm; full RD cost computation; high efficiency video coding; high encoding complexity; next-generation video coding; quadtree-based block partitioning structure; rough mode decision; split termination algorithm; Algorithm design and analysis; Bit rate; Complexity theory; Encoding; Partitioning algorithms; Prediction algorithms; Video coding; Fast intra prediction; HEVC; High Efficiency Video Coding (HEVC); PU skip; PU split termination; prediction unit (PU) skip;
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
DOI :
10.1109/TCSVT.2014.2380194