DocumentCode
1250171
Title
Perceptually Coded Transmission of Arbitrary 3D Objects over Burst Packet Loss Channels Enhanced with a Generic JND Formulation
Author
Cheng, Irene ; Ying, Lihang ; Basu, Anup
Author_Institution
Dept. of Comput. Sci., Univ. of Alberta, Edmonton, AB, Canada
Volume
30
Issue
7
fYear
2012
fDate
8/1/2012 12:00:00 AM
Firstpage
1184
Lastpage
1192
Abstract
In this work we propose a new approach to account for burst packet loss during transmission of 3D objects represented by texture and mesh over unreliable networks. Our strategy includes applying stripification on the 3D mesh following the valence-driven algorithm and distributing nearby vertices into different packets, combined with an interleaving technique that does not need texture or mesh packets to be re-transmitted. The perceptually-driven technique is able to successfully interpolate lost mesh features even under severe packet loss. The reconstructed mesh is further improved by applying our curvature-driven probabilistic strategy to safeguard visually significant structures on the 3D surface. Experimental results show that smoothness on the object surface is preserved even at 50% packet loss. At 75% packet loss, smoothness on the object surface deteriorates but the overall shape of an object is still preserved. We also define a Quality of Experience (QoE) metric to formulate the Just-Noticeable-Difference (JND) concept, to quantify the qualitative findings obtained from earlier subjective user studies, which provides flexibility to applications for reducing the transmission of visually redundant data.
Keywords
encoding; interpolation; mesh generation; packet radio networks; probability; 3D mesh; 3D object transmission; arbitrary 3D objects; burst packet loss channels; curvature-driven probabilistic strategy; distributing nearby vertices; generic JND formulation; interleaving technique; interpolation; just-noticeable-difference; mesh features; object surface; perceptually coded transmission; quality of experience; reconstructed mesh; valence-driven algorithm; Bandwidth; Encoding; Geometry; Histograms; Measurement; Probabilistic logic; Propagation losses; 3D graphics; Burst packet loss; Just-Noticeable-Difference (JND); Mesh geometry-driven; QoE metric; QoE-aware error control; Unreliable network;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/JSAC.2012.120804
Filename
6248261
Link To Document