DocumentCode
1653311
Title
A VLSI architecture for advanced video coding motion estimation
Author
Yap, Swee Yeow ; McCanny, John V.
Author_Institution
Sch. of Electr. & Electron. Eng., Queen´´s Univ., Belfast, UK
fYear
2003
Firstpage
293
Lastpage
301
Abstract
With the advent of new video standards such as MPEG-4 part-10 and H.264/H.26L, demands for advanced video coding (AVC), particularly in area of variable block searching motion estimation (VBSME), are increasing. This has led to research into suitable flexible hardware architectures to perform the various types of VBSME. We propose a new 1-D VLSI architecture for full search variable block size motion estimation (FSVBSME). The variable block size, sum of absolute differences (SAD) computation is performed by reusing the results of smaller subblock computations. These are permuted and combined by incorporating a shuffling mechanism within each processing element (PE). Whereas a conventional 1-D architecture can process only one motion vector, this architecture can process up to 41 motion vector (MV) subblocks (within a macroblock) in a comparable number of clock cycles.
Keywords
VLSI; computer architecture; motion estimation; video coding; VLSI architecture; clock cycle; full search variable block size motion estimation; variable block searching motion estimation; video coding; Automatic voltage control; Clocks; Computer architecture; Hardware; Laboratories; MPEG 4 Standard; Motion estimation; Very large scale integration; Video coding; Video compression;
fLanguage
English
Publisher
ieee
Conference_Titel
Application-Specific Systems, Architectures, and Processors, 2003. Proceedings. IEEE International Conference on
ISSN
2160-0511
Print_ISBN
0-7695-1992-X
Type
conf
DOI
10.1109/ASAP.2003.1212853
Filename
1212853
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