박사

회절효과 고려된 시차장벽 타입 고밀도 다시점 3D 디스플레이의 설계 및 특성 연구 : The Optical Characteristics of Parallax Barrier Based High-Density Multi-View (HDMV) 3D Display in Consideration of Diffraction Effects

윤기혁 2016년
논문상세정보
' 회절효과 고려된 시차장벽 타입 고밀도 다시점 3D 디스플레이의 설계 및 특성 연구 : The Optical Characteristics of Parallax Barrier Based High-Density Multi-View (HDMV) 3D Display in Consideration of Diffraction Effects' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Autostereoscopic 3D display
  • Brightness of a viewing zone
  • Diffraction effects
  • Fresnel number
  • High-density multi-view 3D display
  • Parallax barrier
  • Super multi-view 3D display
  • cross-talk
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' 회절효과 고려된 시차장벽 타입 고밀도 다시점 3D 디스플레이의 설계 및 특성 연구 : The Optical Characteristics of Parallax Barrier Based High-Density Multi-View (HDMV) 3D Display in Consideration of Diffraction Effects' 의 참고문헌

  • Y.-H Tao, Q.-H. Wang, J. Gu, W.-X Zhao, and D.-H. Li, “Autostereoscopic Three-Dimensional Projector Based on Two Parallax Barriers,” Opt. Letters, 34(20), 3220-3222 (2009)
  • Y. Takaki, “Thin-Type Natural Three-Dimensional Display with 72 Directional Images,” Proc. SPIE 5664, 56-63 (2005).
  • Y. Takaki, and N. Nago, “Multi-Projection of Lenticular Displays to Construct a 256-View Super Multi-View Display,” Opt. Express 18(9), 8824-8835 (2010).
  • Y. Takaki, Y. Urano, and H. Nishio, “Motion-Parallax Smoothness of Short-, Sedium-, and Long-Distance 3D Image Presentation Using Multi-View Displays”, Opt. Express 20(24), 27180-27197 (2012).
  • Y. Takaki, Y. Urano, S. Kashiwada, H. Ando, and K. Nakamura, “Super Multi-View Windshield Display for Long-Distance Image Information Presentation,” Opt. Express 19(2), 705-716 (2011).
  • Y. Takaki, M. Tokoro, and K. Hirabayashi, “Tiled Large-Screen Three-Dimensional Display Consisting of Frameless Multi-View Display Modules,” Opt. Express 22(6), 6210-6221 (2014)
  • Y. Takaki, K. Tanaka, and J. Kakamura, “Super Multi-View Display with a Lower Resolution Flat-Panel Display,” Opt. Express 19(5), 4129-4139 (2011).
  • Y. Kim, K. Hong, J. Yeom, J. Hong, J.-H. Jung, Y. W. Lee, J.-H. Park, and B. Lee, “A Frontal Projection-Type Three-Dimensional Display,” Opt. Express 20(18), 20130–20138 (2012).
  • Y. Kajiki, H. Yoshikawa, and T. Honda, “Hologram-Like Video Images by 45-View Stereoscopic Display,” Proc. SPIE 3012, 154-166 (1997).
  • T. Peterka, R. L. Kooima, D. J. Sandin, A. Johnson, J. Leigh, and T. A. DeFanti, “Advances in the Dynallax Solid-State Dynamic Parallax Barrier Autostereoscopic Visualization Display System,” IEEE Trans. Vis. Comput. Graphics, 14, 487–499 (2008).
  • T. Kanebako and Y. Takaki, “Time-Multiplexing Display Module for High Density Directional Display,” Proc. SPIE 6803, 68030P (2008).
  • T. Balogh, “Method and Apparatus for Displaying Three-Dimensional Images,” U.S. patent 6,201,565 (Issued Mar. 13, 2001)
  • S.-M. Jung, J.-U. Park, S.-C. Lee, W.-S. Kim, M.-S. Yang, I.-B. Kang, and I.-J. Chung, “A Novel Polarizer-Glasses Type 3D Display with an Active Retarder,” SID Symposium Digest of Technical Papers 40, 348-351 (2009).
  • S.-K. Kim, K.-H. Yoon, S. Yoon, and H. Ju, “Parallax Barrier Engineering for Image Quality Improvement in an Autostereoscopic 3D Display,” Opt. Express 23(10), 13230-13244 (2015).
  • S. Yano, S. Ide, T. Mitsuhashi, and, H. Thwaites, “A Study of Visual Fatigue and Visual Comfort for 3D HDTV/HDTV Images,” Displays 23, 191-201 (2002)
  • S. Kim, B. Yoo, H. Choi, B. Berkeley, D. Kim, and N. Kim, “World’s First 240Hz TFT-LCD Technology for Full-HD LCD-TV and Its Application to 3D Display,” SID Symposium Digest of Technical Papers 40, 424-427 (2009).
  • Q.-H. Wang, W.-X Zhao, Y.-H. Tao, D.-H Li, and R.-L. Zhao, “Stereo Viewing Zone in parallax-Barrier-Based Autostereoscopic Display”, Optik 121, 2008-2011 (2010).
  • O. Willemsen, S. Zwart, M. Hiddink, D. Boer, and M. Krijn, “Multi-View 3D Displays,” SID Symposium Digest of Technical Papers 38, 1154-1157 (2007).
  • N. Holliman, N. Dodgson, G. Favalora, and Lachlan Pockett, “Three-Dimensional Display: A Review and Applications Analysis,” IEEE Trans Broadcast. 57, 362-371 (2011).
  • N. Dodgson, “Autostereoscopic 3D displays,” Computer 38(8), 31-36 (2005).
  • M. Lasher, P. Soltan, W. Dahlke, and N. Acantilado, “Laser Projected 3D Volumetric Displays,” Proc. SPIE 2650, 285 (1996).
  • L. Sadovnik and A. Rizkin, “3D Volume Visualization Display,” U.S. patent 5,764,317 (Issued Jun. 9, 1998).
  • K.-H. Yoon, H. Ju, I. Park, and S.-K. Kim, “Determination of the Optimum Viewing Distance for a Multi-View Autostereoscopic 3D Display,” Opt. Express 22(19), 22616-22631 (2014).
  • K.-H. Lee, Y. Park, H. Lee, S. Yoon, and S.-K. Kim, “Crosstalk Reduction in Autostereoscopic Projection 3D Display System,” Opt. Express 20(18), 19757-19768 (2012).
  • K.-C. Huang, Y.-H. Chou, L.-C. Lin, H. Lin, F.-H Chen, C.-C Liao, Y.-H. Chen, K. Lee, and W.-H. Hsu, “A Study of Optimal Viewing Distance in a Parallax Barrier 3D Display,” J. SID 21(6), 263-270 (2013).
  • J.W. Goodman, Introduction to Fourier Optics, 3rd ed. (Roberts & Company, 2005)
  • J.-Y. Son, B. Javidi, and K.-D. Kwack, “Methods for Displaying Three-Dimensional Images,” Proc. IEEE 94, 502-523 (2006).
  • J. Nakamura, K. Tanaka, and Y. Takaki, “Increase in Depth of Feld of Eyes Using Reduced-View Super Multi-View Displays,” Appl. Phys Express 6, 022501 (2013).
  • J. Hong, Y. Kim, H.-J. Choi, J. Hahn, J.-H. Park, H. Kim, S.-W. Min, N. Chen, and B. Lee, “Three-Dimensional Display Technologies of Recent Interest: Principles, Status, and Issues [Invited],” Appl. Opt. 50, H87-H115 (2011).
  • J. Gibson, The Perception of the Visual World (Houghton Mifflin, 1950).
  • J. Geng, “ Three-Dimensional Display Technologies,” Adv. Opt. Photonics 5, 456-535 (2013).
  • H.-J. Im, B.-J. Lee, H.-K. Hong, and H.-H. Shin, “Autostereoscopic 60 view 3D Using Slanted Lenticular Lens Arrays,” J. Inf. Display, 8(4), 23–26 (2007).
  • H. Nakanuma, H. Kamei, and Y. Takaki, “Natural 3D Display with 128 Directional Images Used for Human-Engineering Evaluation,” Proc. SPIE 5664, 28-35 (2005).
  • H. Kimura, T. Uchiyama, and H. Yoshikawa, “Laser Produced 3D Display in the Air,” in ACM SIGGRAPH ,p 20 (2006).
  • H. Kang, S.-D. Roh, I.-S. Baik, H.-J. Jung, W.-N. Jeong, J.-K. Shin, and I.-J. Chung, “A Novel Polarizer Glasses-type 3D Display with a Patterned Retarder,” SID Symposium Digest of Technical Papers 41, 1–4 (2010).
  • G. R. Fowles, Introduction to Modern Optics, 2nd edition (Holt, Rinehart and Winston, Inc., 1975).
  • G. Lazzaro, D. Swift, G. Hamlin, and S. Faris, “Stereoscopic 3-D Viewing System and Glasses Having Electrooptical Shutters Controlled by Control Signals Produced Using Horizontal Pulse Detection Within the Vertical Synchronization Pulse Period of Computer Generated Video Signals,” U.S. Patent 5,821,989 (issued Oct. 11, 1998).
  • G. Favalora, “Volumetric 3D Displays and Application Infrastructure,” Computer 38(8), 37-44 (2005).
  • F. Garcia, Jr. and R. D. Williams, “Real Time Three Dimensional Display with Angled Rotating Screen and Method,” U.S. patent 5,042,909 (Issued Aug. 27, 1991).
  • E. Lueder, 3D DIsplays (Wiley, 2012).
  • E. J. Korevaar and B. Spiver, “Three Dimensional Display Apparatus,” U.S. patent 4,881,068 (Issued Nov. 14, 1989).
  • D. Voelz, Computational Fourier Optics (SPIE Press, 2011)
  • D. M. Hoffman, A. R. Girshick, K. Akeley, and M. S. Banks, “Vergence–Accommodation Conflicts Hinder Visual Performance and Cause Visual Fatigue,” J. Vis. 8(3):33, 1–30 (2008).
  • D. Gabor, “Holography 1948-1971,” Science 177(4046), 299-313 (1972).
  • C. Wheatstone, “Contributions to the Physiology of Vision. Part the First. On Some Remarkable, and Hitherto Unobserved, Phenomena of Binocular Vision,” Phil. Trans. R. Soc. Lond 128, 371-394 (1838).
  • B. Lee, “Three-Dimensional Displays, Past and Present,” Phys. Today 66(4), 36-41 (2013).
  • B. Javidi and F. Okano, Three Dimensional Television, Video, and Display Technologies (Springer, 2011).
  • A. Sullivan, “Multi-Planar Volumetric Display System and Method of Operation Using Multi-Planar Interlacing,” U.S. patent 6,806,849 (Issued Oct. 19, 2004).