DocumentCode :
398399
Title :
Spline-based boundary loss concealment
Author :
Schuster, Guido M. ; Li, Xiaohuan ; Katsaggelos, Aggelos K.
Author_Institution :
Abt. Elektrotechnik, Rapperswil, Switzerland
Volume :
2
fYear :
2003
fDate :
14-17 Sept. 2003
Abstract :
Object-based video coding requires the transmission of the object shape. This shape is sent as a binary α-plane. In lossy packet-based networks, such as the Internet, this information has a nonnegligible probability of not arriving at the receiver, and hence its loss needs to be concealed. In this paper we propose a shape concealment technique utilizing Hermite splines. The algorithm has the following steps: (I) the received boundary is detected and the lost boundary parts are grouped using the packet loss pattern. (II) for each of these lost boundary parts, the received boundary points that border the area of the lost boundary parts are collected. These boundary points are then modelled by a second order Hermite spline. This model is subsequently used to match the velocity along the received boundary with the velocity of the concealing cubic Hermite spline. (Ill) since in most cases there are more than one concealing splines we draw every spline combination that does not result in an intersection and keep all possible results until the end. (IV) if there are more than one possible solutions we select the one that results in one overall closed nonintersecting boundary and fill the interior of the boundary to get the concealed α-plane. Experimental results which demonstrate and compare the performance of the proposed concealment method are given at the end of the paper.
Keywords :
Hermitian matrices; Internet; receivers; splines (mathematics); video coding; visual communication; Internet; binary α-plane; concealed α-plane; concealing cubic Hermite spline velocity; object shape transmission; object-based video coding; packet loss pattern; packet-based network; receiver; second order Hermite spline; shape concealment technique; spline-based boundary loss concealment; Computer aided software engineering; IP networks; Iterative methods; Joining processes; Probability; Propagation losses; Robustness; Shape; Spline; Video coding;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image Processing, 2003. ICIP 2003. Proceedings. 2003 International Conference on
ISSN :
1522-4880
Print_ISBN :
0-7803-7750-8
Type :
conf
DOI :
10.1109/ICIP.2003.1246769
Filename :
1246769
Link To Document :
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