Full-chain modeling and performance analysis of integral imaging three-dimensional display system
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Published:2020-05-26
Issue:1
Volume:16
Page:
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ISSN:1990-2573
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Container-title:Journal of the European Optical Society-Rapid Publications
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language:en
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Short-container-title:J. Eur. Opt. Soc.-Rapid Publ.
Author:
Yuan Ying,Wang Xiaorui,Yang Yang,Yuan Hang,Zhang Chao,Zhao Zhenshun
Abstract
AbstractThe full-chain system performance characterization is very important for the optimization design of an integral imaging three-dimensional (3D) display system. In this paper, the acquisition and display processes of 3D scene will be treated as a complete light field information transmission process. The full-chain performance characterization model of an integral imaging 3D display system is established, which uses the 3D voxel, the image depth, and the field of view of the reconstructed images as the 3D display quality evaluation indicators. Unlike most of the previous research results using the ideal integral imaging model, the proposed full-chain performance characterization model considering the diffraction effect and optical aberration of the microlens array, the sampling effect of the detector, 3D image data scaling, and the human visual system, can accurately describe the actual 3D light field transmission and convergence characteristics. The relationships between key parameters of an integral imaging 3D display system and the 3D display quality evaluation indicators are analyzed and discussed by the simulation experiment. The results will be helpful for the optimization design of a high-quality integral imaging 3D display system.
Funder
Equipment Advance Research Project of China Natural Science Foundation of Shaanxi Province National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
Atomic and Molecular Physics, and Optics
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