DocumentCode
1383681
Title
Generalized interframe vertex-based shape encoding scheme for video sequences
Author
Kim, Kyeong Joong ; Suh, Jong-Yeul ; Kang, Moon Gi
Author_Institution
Serome Technol. Lab., Seoul, South Korea
Volume
9
Issue
10
fYear
2000
fDate
10/1/2000 12:00:00 AM
Firstpage
1667
Lastpage
1676
Abstract
The efficiency of shape coding is an important problem concerning content-based image manipulations and object-based coding of the video sequences. In order to encode the shape information of an object, the boundary is approximated by a polygon which can be encoded with the smallest number of bits for maximum allowable distortion. The conventional boundary coding schemes, however, does not successfully remove the temporal redundancy of the video sequences. This paper proposes a new boundary encoding scheme by which the temporal redundancy between two successive frames is efficiently removed, resulting in lower bit-rate than the conventional algorithms. The interframe vertex selection problem is solved by finding the path with the minimum cost in the directed acyclic graph (DAG) and its fast version using a simplified graph is introduced to reduce the computational load. The vertices were selected from both the current frame to be encoded and the previous frame already encoded, and thus, the temporal redundancy was effectively removed
Keywords
directed graphs; image sequences; video coding; boundary coding; computational load reduction; content-based image manipulations; directed acyclic graph; generalized interframe vertex-based shape encoding; interframe vertex selection problem; maximum allowable distortion; object-based coding; temporal redundancy removal; video coding; video sequences; Costs; Encoding; Helium; Image coding; Image sequences; MPEG 4 Standard; Moon; Rate-distortion; Shape; Video sequences;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/83.869178
Filename
869178
Link To Document