Depth of field expansion method for integral imaging based on diffractive optical element and CNN

Author:

Zhou Ruyi,Wei ChenxiaoORCID,Ma Haowen,Cao Shuo,Ahmad Munzza,Li Chao,Li Jingnan,Sun Yutong,Wang Yongtian,Liu Juan

Abstract

In lens-based display systems, lens aberrations and depth of field (DoF) limitation often lead to blurring and distortion of reconstructed images; Meanwhile, expanding the display DoF will face a trade-off between horizontal resolution and axial resolution, restricting the achievement of high-resolution and large DoF three-dimensional (3D) displays. To overcome these constraints and enhance the DoF and resolution of reconstructed scenes, we propose a DoF expansion method based on diffractive optical element (DOE) optimization and image pre-correction through a convolutional neural network (CNN). This method applies DOE instead of the conventional lens and optimizes DOE phase distribution using the Adam algorithm, achieving depth-invariant and concentrated point spread function (PSF) distribution throughout the entire DoF range; Simultaneously, we utilize a CNN to pre-correct the original images and compensate for the image quality reduction introduced by the DOE. The proposed method is applied to a practical integral imaging system, we effectively extend the DoF of the DOE to 400 mm, leading to a high-resolution 3D display in multiple depth planes. To validate the effectiveness and practicality of the proposed method, we conduct numerical simulations and optical experiments.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Beijing Municipal Science and Technology Commission, Adminitrative Commission of Zhongguancun Science Park

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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