Title :
A low cost single-pass fractional motion estimation architecture using bit clipping for H.264 video codec
Author :
Kim, Giwon ; Kim, Jaemoon ; Kyung, Chong-Min
Author_Institution :
Dept. of EECS, KAIST, Daejeon, South Korea
Abstract :
As the video resolution increases, high computational complexity of the fractional motion estimation (FME) introduces difficulty to meet real-time constraints in a video coding. In this paper, we proposed a single-pass FME algorithm and its architecture with low hardware cost and negligible loss of the image quality. The proposed algorithm directly searches only surroundings of both the predicted fractional motion vector and the search center. To reduce the hardware cost of processing units in the proposed FME architecture, bit clipping scheme is applied to processing units reducing the hardware cost by 25%. Experimental results show that the proposed algorithm provides almost the same rate-distortion performance as the full-search algorithm. The result of hardware implementation shows that a quad full high definition video (4096×2160) can be processed in real time (24 frame/sec) using 134k gates when the operating frequency is 250MHz. Compared with the recent work supporting quad full high definition video, the proposed FME architecture has shown 70% reduction of the hardware cost.
Keywords :
computational complexity; image resolution; motion estimation; rate distortion theory; video codecs; video coding; H.264 video codec; bit clipping; computational complexity; frequency 250 MHz; full-search algorithm; rate-distortion performance; single-pass fractional motion estimation architecture; video coding; video resolution; Finite impulse response filter; Hardware; Interpolation; Logic gates; PSNR; Pixel; Prediction algorithms; Fractional Motion Estimation; H.264/AVC; Quad Full High Definition; Video Coding;
Conference_Titel :
Multimedia and Expo (ICME), 2010 IEEE International Conference on
Conference_Location :
Suntec City
Print_ISBN :
978-1-4244-7491-2
DOI :
10.1109/ICME.2010.5583341