DocumentCode :
1506300
Title :
Error-resilient coding of 3-D graphic models via adaptive mesh segmentation
Author :
Yan, Zhidong ; Kumar, Sunil ; Kuo, C. C Jay
Author_Institution :
Tornado Dev. Inc., Los Angeles, CA, USA
Volume :
11
Issue :
7
fYear :
2001
fDate :
7/1/2001 12:00:00 AM
Firstpage :
860
Lastpage :
873
Abstract :
Current coding techniques for 3-D graphic models mainly focus on coding efficiency, which makes them extremely sensitive to channel errors due to the irregular mesh structure. We introduce a new approach for error-resilient coding of arbitrary 3-D graphic models by extending the error-free constructive traversal compression scheme proposed by Li and Kuo (see MPEG-4 Tokyo Meeting, 1998, Contribution Doc. M3324, and Proc. IEEE, vol.86, p.1052-63, 1998). A 3-D mesh of an arbitrary structure is partitioned into pieces of a smaller uniform size with joint boundaries. The size of a piece is determined adaptively based on the channel error rate. The topology and geometry information of each joint boundary and each piece of a connected component is coded independently. The coded topology and first several important bit-planes of the joint-boundary data are protected against channel errors by using the Bose-Chaudhuri-Hocquenghem error-correcting code. At the decoder, each piece is decoded and checked for channel errors. The decoded joint-boundary information is used to perform data recovery and error concealment on the corrupted piece data. All decoded pieces are combined together according to their configuration to reconstruct all connected components of the complete 3-D model. Our experiments demonstrate that the proposed approach has excellent error resiliency at a reasonable bit-rate overhead. The techniques is also capable of incrementally rendering one connected component of the 3-D model at a time
Keywords :
BCH codes; adaptive signal processing; computer graphics; data compression; decoding; image coding; image reconstruction; image segmentation; 3D graphic models; BCH error-correcting code; Bose-Chaudhuri-Hocquenghem error-correcting code; adaptive mesh segmentation; bit-planes; bit-rate overhead; channel error rate; coded topology; coding efficiency; data recovery; decoded joint-boundary information; decoder; error concealment; error-free constructive traversal compression; error-resilient coding; geometry information; joint-boundary data; mesh reconstruction; topology information; Application software; Computer graphics; Decoding; Error analysis; Error correction codes; Information geometry; Protection; Quantization; Topology; Tree graphs;
fLanguage :
English
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8215
Type :
jour
DOI :
10.1109/76.931112
Filename :
931112
Link To Document :
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