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Depth sensitivity of stereoscopic displays

  • Received : 2011.10.17
  • Accepted : 2011.12.19
  • Published : 2012.03.30

Abstract

Depth sensitivity is considered one of the factors influencing 3D displays the most. In this paper, the perceptual 3D depth was quantitatively measured to compare the depth difference among the display devices. No difference was found in the typical display performance among the devices, but the subjective evaluation of the depth sensitivity where the disparity was varied showed that the organic light emitting diode (OLED) had the highest performance, mainly due to its almost 0% crosstalk, one of the features of OLED. Crosstalk is a form of image superposition that greatly affects the depth sensitivity. The experiment results showed that the quantitative depth sensitivity varies due to geometric factors such as disparity, viewing distance, and subjective sensitivity, depending on the display image characteristics, such as crosstalk and contrast.

Keywords

References

  1. C. Fehn, A 3D-TV Approach Using Depth-Image- Based Rendering (DIBR), Image, Rochester, NY, 2003, pp. 2-3.
  2. J.D. Pfautz, in Human Depth Perception (University of Cambridge, 2002), Chap. 2, pp. 7-15. . Accessed September 2002.
  3. D.F. McAllister, Display Technology: Stereo & 3D Display Technologies (North Carolina State University, 2002), pp. 2-4.
  4. S. Nagata, in Pictorial Communication in Virtual and Real Environments, edited by S. Ellis (Taylor and Francis, London, 1993), pp. 527-545.
  5. L. Li, L. Shi, D. Bryant, and P.J. Bos, SID 11 DIGEST, SID Symposium Digest of Technical Papers, June, Vol. 42, Iss. 1, Los Angeles, USA, pp. 9-12.
  6. M. Poyade, A. Reyes-Lecuona, and R.Viciana-Abad, in New Trends on Human-Computer Interaction (Springer, 2009), Chap. 2, p. 15.
  7. L.B. Stelmach, W.J. Tam, F. Speranza, and R. Renaud, Stereoscopic Displays and Applications XIV, Santa Clara, USA, January 2003.
  8. C. Yuan, H. Pan, and S. Daly, SID 11 DIGEST, SID Symposium Digest of Technical Papers, June, Vol. 42, Iss. 1, Los Angeles, USA, pp. 916-919.
  9. ITU-R Recommendation BT.500-11, Methodology for the subjective assessment of the quality of television pictures, 2002.
  10. Practical Recommendation for 3D Image Safety (Ver. 1.0), 2010, p. 14.
  11. H-C.O. Li and J.-J. Park, IMID, Ilsan, Korea, 2011, pp. 1-46.

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