Immersive 3D Holoscopic Video System

We demonstrated a 3D holoscopic video system for 3DTV application. We showed that using a field lens and a square aperture significantly reduces the vignetting problem associated with a relay system and achieves over 95 percent fill factor. The main problem for such a relay system is the nonlinear d...

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Veröffentlicht in:IEEE multimedia 2013-01, Vol.20 (1), p.28-37
Hauptverfasser: Aggoun, A., Tsekleves, E., Swash, M. R., Zarpalas, D., Dimou, A., Daras, P., Nunes, P., Soares, L.D.
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container_end_page 37
container_issue 1
container_start_page 28
container_title IEEE multimedia
container_volume 20
creator Aggoun, A.
Tsekleves, E.
Swash, M. R.
Zarpalas, D.
Dimou, A.
Daras, P.
Nunes, P.
Soares, L.D.
description We demonstrated a 3D holoscopic video system for 3DTV application. We showed that using a field lens and a square aperture significantly reduces the vignetting problem associated with a relay system and achieves over 95 percent fill factor. The main problem for such a relay system is the nonlinear distortion during the 3D image capturing, which can seriously affect the reconstruction process for a 3D display. The nonlinear distortion mainly includes lens radial distortion (intrinsic) and microlens array perspective distortion (extrinsic). This is the task of future work. Our results also show that the SS coding approach performs better than the standard HEVC scheme. Furthermore, we show that search and retrieval performance relies on the depth map's quality and that the multimodal fusion boosts the retrieval performance.
doi_str_mv 10.1109/MMUL.2012.42
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subjects 3D imaging
3D video
Cameras
glassless 3D video
holoscopic video
Image color analysis
Image processing
Imaging
Motion pictures
Multimedia
Parallax
Three dimensional
Three dimensional displays
Video communication
Viewing
title Immersive 3D Holoscopic Video System
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