DocumentCode
1470586
Title
A coding technique for the contours in smoothly perfect eight-connectivity based on two-stage motion compensation
Author
Cho, Sung Ho ; Kim, Rin Chul ; Oh, Seung Seok ; Lee, Sang Uk
Author_Institution
Signal Process. Lab., Seoul Nat. Univ., South Korea
Volume
9
Issue
1
fYear
1999
fDate
2/1/1999 12:00:00 AM
Firstpage
59
Lastpage
69
Abstract
In this paper, a new contour-coding technique for object-oriented video coding is proposed, In our approach, the two-stage motion compensation technique is considered, in order to cope with the rather complex motion of the object. While the object-based motion compensation is performed in the first stage, the second-stage motion compensation is carried out to search the best match of the contours, which are not motion compensated in the first stage. Also by introducing the notion of the error band, the current contours can be properly fitted to the motion compensated contours using the interframe relationship of the contours. In addition, an efficient technique for encoding the contours, simplified by the majority filter, is also proposed. From the simulation result, it is shown that the proposed technique provides better performance than the content-based arithmetic encoding, especially when lossy encoding is allowed. Moreover, by varying the width N of the error band, it is shown that the bit amount for the shape information can be adjusted according to the channel condition
Keywords
motion compensation; object-oriented methods; video coding; channel condition; contour-coding technique; error band; interframe relationship; lossy encoding; majority filter; object-based motion compensation; object-oriented video coding; performance; smoothly perfect eight-connectivity; two-stage motion compensation; Arithmetic; Associate members; Bit rate; Filters; Helium; Motion compensation; Object oriented modeling; Performance loss; Shape; Video coding;
fLanguage
English
Journal_Title
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher
ieee
ISSN
1051-8215
Type
jour
DOI
10.1109/76.744275
Filename
744275
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