A VLSI-oriented algorithm and its implementation for AVS chroma interpolation

作者:

Highlights:

摘要

AVS (audio video coding standard) is the latest multimedia coding standard of China. Similar to H.264/AVC, AVS adopted the technology of fractional-pel-accurate motion compensation, which enhanced the compression efficiency. To obtain fractional pels, 4-tap FIR filters and bilinear filters are used for luma and chroma interpolation respectively. Unlike the VLSI-optimized FIR filters which could be implemented by adders and shifters, the bilinear filter for chroma is not so convenient for direct VLSI implementation due to its multiplications. In this paper, we propose a VLSI-oriented algorithm named SHAM (x–y-separated halved-approaching method) to accomplish the bilinear filtering. The proposed SHAM algorithm adopts a halved-approaching method which is an addition-and-shift-only method and with simpler data path. VLSI structures are also provide to implement the SHAM algorithm in this paper. Experiments based on UMC 0.18μm process show that the SHAM algorithm could be implemented with about 48% less silicon area or at doubled frequency compared with the direct implementation of the bilinear filter.

论文关键词:AVS,Bilinear filtering,Chroma,Interpolation,VLSI

论文评审过程:Received 28 May 2008, Revised 3 November 2008, Accepted 3 July 2009, Available online 14 July 2009.

论文官网地址:https://doi.org/10.1016/j.image.2009.07.001