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Generating stereoscopic 3D from holoscopic 3D

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Generating stereoscopic 3D from holoscopic 3D. / Fatah, O. Abdul; Aggoun, A.; Swash, M. R. et al.
3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013. Piscataway, N.J.: IEEE, 2013. p. 1-3.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Fatah, OA, Aggoun, A, Swash, MR, Alazawi, E, Li, B, Fernandez, JC, Chen, D & Tsekleves, E 2013, Generating stereoscopic 3D from holoscopic 3D. in 3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013. IEEE, Piscataway, N.J., pp. 1-3, 2013 3DTV Vision Beyond Depth (3DTV-CON), Aberdeen, United Kingdom, United Kingdom, 7/10/13. https://doi.org/10.1109/3DTV.2013.6676638

APA

Fatah, O. A., Aggoun, A., Swash, M. R., Alazawi, E., Li, B., Fernandez, J. C., Chen, D., & Tsekleves, E. (2013). Generating stereoscopic 3D from holoscopic 3D. In 3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013 (pp. 1-3). IEEE. https://doi.org/10.1109/3DTV.2013.6676638

Vancouver

Fatah OA, Aggoun A, Swash MR, Alazawi E, Li B, Fernandez JC et al. Generating stereoscopic 3D from holoscopic 3D. In 3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013. Piscataway, N.J.: IEEE. 2013. p. 1-3 doi: 10.1109/3DTV.2013.6676638

Author

Fatah, O. Abdul ; Aggoun, A. ; Swash, M. R. et al. / Generating stereoscopic 3D from holoscopic 3D. 3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013. Piscataway, N.J. : IEEE, 2013. pp. 1-3

Bibtex

@inproceedings{dadfc27acb804f77a55f2e23bd7ee8aa,
title = "Generating stereoscopic 3D from holoscopic 3D",
abstract = "In this paper a single aperture motion picture camera based on holoscopic imaging used to generate high-resolution stereoscopic image. The idea of single aperture camera reduces the very cumbersome and expensive of dual cameras in stereoscopic production. The camera is known as light field camera, which was first proposed in 1908 by lippmann [1]. The rendering method relied on upsampling, shift and integrating of different views to extract stereo images. This is the first experiment attempted to generate stereo form holoscopic content on motion capturing, where researchers so far have been experimenting on still images. In this paper presents motion picture image rendering on holoscopic content to generate content for stereoscopic systems. We have carried out experiments with focused ploneptic camera on a single stage omnidirectional integral camera arrangement with capturing both horizontal and vertical parallax, using a low cost lens array and relay lens. Our results show an improvement in the resolution of images with artifact free and also the rendered stereo content are played back on polarized stereoscopic system and anaglyph system to perceive the 3D depth using filter glasses in our experimental section.",
author = "Fatah, {O. Abdul} and A. Aggoun and Swash, {M. R.} and E. Alazawi and B. Li and Fernandez, {J. C.} and D. Chen and E. Tsekleves",
year = "2013",
month = oct,
day = "1",
doi = "10.1109/3DTV.2013.6676638",
language = "English",
pages = "1--3",
booktitle = "3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013",
publisher = "IEEE",
note = "2013 3DTV Vision Beyond Depth (3DTV-CON) ; Conference date: 07-10-2013 Through 08-10-2013",

}

RIS

TY - GEN

T1 - Generating stereoscopic 3D from holoscopic 3D

AU - Fatah, O. Abdul

AU - Aggoun, A.

AU - Swash, M. R.

AU - Alazawi, E.

AU - Li, B.

AU - Fernandez, J. C.

AU - Chen, D.

AU - Tsekleves, E.

PY - 2013/10/1

Y1 - 2013/10/1

N2 - In this paper a single aperture motion picture camera based on holoscopic imaging used to generate high-resolution stereoscopic image. The idea of single aperture camera reduces the very cumbersome and expensive of dual cameras in stereoscopic production. The camera is known as light field camera, which was first proposed in 1908 by lippmann [1]. The rendering method relied on upsampling, shift and integrating of different views to extract stereo images. This is the first experiment attempted to generate stereo form holoscopic content on motion capturing, where researchers so far have been experimenting on still images. In this paper presents motion picture image rendering on holoscopic content to generate content for stereoscopic systems. We have carried out experiments with focused ploneptic camera on a single stage omnidirectional integral camera arrangement with capturing both horizontal and vertical parallax, using a low cost lens array and relay lens. Our results show an improvement in the resolution of images with artifact free and also the rendered stereo content are played back on polarized stereoscopic system and anaglyph system to perceive the 3D depth using filter glasses in our experimental section.

AB - In this paper a single aperture motion picture camera based on holoscopic imaging used to generate high-resolution stereoscopic image. The idea of single aperture camera reduces the very cumbersome and expensive of dual cameras in stereoscopic production. The camera is known as light field camera, which was first proposed in 1908 by lippmann [1]. The rendering method relied on upsampling, shift and integrating of different views to extract stereo images. This is the first experiment attempted to generate stereo form holoscopic content on motion capturing, where researchers so far have been experimenting on still images. In this paper presents motion picture image rendering on holoscopic content to generate content for stereoscopic systems. We have carried out experiments with focused ploneptic camera on a single stage omnidirectional integral camera arrangement with capturing both horizontal and vertical parallax, using a low cost lens array and relay lens. Our results show an improvement in the resolution of images with artifact free and also the rendered stereo content are played back on polarized stereoscopic system and anaglyph system to perceive the 3D depth using filter glasses in our experimental section.

U2 - 10.1109/3DTV.2013.6676638

DO - 10.1109/3DTV.2013.6676638

M3 - Conference contribution/Paper

SP - 1

EP - 3

BT - 3DTV-Conference: The True Vision-Capture, Transmission and Dispaly of 3D Video (3DTV-CON), 2013

PB - IEEE

CY - Piscataway, N.J.

T2 - 2013 3DTV Vision Beyond Depth (3DTV-CON)

Y2 - 7 October 2013 through 8 October 2013

ER -