DocumentCode
1418913
Title
Efficient cost measures for motion estimation at low bit rates
Author
Hoang, Dzung T. ; Long, Philip M. ; Vitte, Jeffrey Scott
Author_Institution
Consumer A/V/D Bus. Unit, Sony Semicond. Co. of America, San Jose, CA, USA
Volume
8
Issue
4
fYear
1998
fDate
8/1/1998 12:00:00 AM
Firstpage
488
Lastpage
500
Abstract
We present and compare methods for choosing motion vectors for block-based motion-compensated video coding. The primary focus is on videophone and videoconferencing applications, where low bit rates are necessary, where motion is usually limited, and where the amount of computation is also limited. In a typical block-based motion-compensated video coding system, motion vectors are transmitted along with a lossy encoding of the residuals. As the bit rate decreases, the proportion required to transmit the motion vectors increases. We provide experimental evidence that choosing motion vectors explicitly to minimize rate (including motion vector coding), subject to implicit constraints on distortion, yields better rate-distortion tradeoffs than minimizing some measure of prediction error. Minimizing a combination of rate and distortion yields further improvements. Although these explicit-minimization schemes are computationally intensive, they provide invaluable insight which we use to develop practical algorithms. We show that minimizing a simple heuristic function of the prediction error and the motion vector code length results in rate-distortion performance comparable to explicit-minimization schemes while being computationally feasible. Experimental results are provided for coders that operate within the H.261 standard
Keywords
code standards; minimisation; motion compensation; motion estimation; prediction theory; rate distortion theory; telecommunication standards; teleconferencing; video coding; videotelephony; H.261 standard; block-based motion-compensated video coding; code length; cost measures; distortion constraints; experimental results; explicit-minimization; heuristic function; lossy encoding; low bit rates; motion estimation; motion vector coding; practical algorithms; prediction error; rate-distortion performance; residuals; videoconferencing; videophone; Bit rate; Costs; Distortion measurement; Encoding; Motion estimation; Motion measurement; Propagation losses; Rate-distortion; Teleconferencing; Video coding;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.709413
Filename
709413
Link To Document