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  4. Time-Division Multiplexing Light Field Display With Learned Coded Aperture
 
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Time-Division Multiplexing Light Field Display With Learned Coded Aperture

Journal
IEEE Transactions on Image Processing
Journal Volume
32
Date Issued
2023-01-01
Author(s)
Chao, Chung Hao
Liu, Chang Le
HOMER H. CHEN  
DOI
10.1109/TIP.2022.3203210
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/633817
URL
https://api.elsevier.com/content/abstract/scopus_id/85144784061
Abstract
Conventional stereoscopic displays suffer from vergence-accommodation conflict and cause visual fatigue. Integral-imaging-based displays resolve the problem by directly projecting the sub-aperture views of a light field into the eyes using a microlens array or a similar structure. However, such displays have an inherent trade-off between angular and spatial resolutions. In this paper, we propose a novel coded time-division multiplexing technique that projects encoded sub-aperture views to the eyes of a viewer with correct cues for vergence-accommodation reflex. Given sparse light field sub-aperture views, our pipeline can provide a perception of high-resolution refocused images with minimal aliasing by jointly optimizing the sub-aperture views for display and the coded aperture pattern. This is achieved via deep learning in an end-to-end fashion by simulating light transport and image formation with Fourier optics. To our knowledge, this work is among the first that optimize the light field display pipeline with deep learning. We verify our idea with objective image quality metrics (PSNR, SSIM, and LPIPS) and perform an extensive study on various customizable design variables in our display pipeline. Experimental results show that light fields displayed using the proposed technique indeed have higher quality than that of baseline display designs.
Subjects
Coded aperture | deep learning | Fourier optics | light field display | vergence-accommodation conflict
SDGs

[SDGs]SDG3

[SDGs]SDG11

Type
journal article

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