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基于仿真图像评价的光栅立体显示器优化方法

洪逸飞 聂子涵 桑新柱 邢树军

液晶与显示2025,Vol.40Issue(5):716-726,11.
液晶与显示2025,Vol.40Issue(5):716-726,11.DOI:10.37188/CJLCD.2025-0012

基于仿真图像评价的光栅立体显示器优化方法

Optimization method of grating stereoscopic display based on simulation image evaluation

洪逸飞 1聂子涵 1桑新柱 1邢树军1

作者信息

  • 1. 北京邮电大学 电子工程学院,北京 100876
  • 折叠

摘要

Abstract

Grating stereoscopic display is currently one of the most popular naked eye three-dimensional (3D)displays,and optimizing its parameters is a key step in the display design process.This article proposes an optimization method for grating stereoscopic displays based on simulation image evaluation.This method is based on existing grating stereoscopic display simulation platforms and assesses display quality by evaluating simulation images,which is more intuitive and convenient,rather than optical indicators.This research invites reviewers to conduct subjective experiments and selects the most suitable evaluation criteria for 3D display simulation images:learned perceptual image patch similarity(LPIPS).A joint optimization experiment is conducted on the parameters of a cylindrical lens grating stereoscopic display using Bayesian method,and compares with the traditional optical optimization results of Zemax.The diffuse spot radius of the center field of view is 15.567 μm,and the diffuse spot radius of the edge field of view is 89.744 μm,both of which meets the design standards of empirical requirements.The experiment results show that this method can correctly optimize the commonly used parameters of the display and achieve the same effect as traditional optical design software.This method has significant potential in the optimization design of grating stereoscopic displays,further provides a new approach for the design process of naked eye 3D displays.

关键词

光栅立体显示器/可视化仿真/图像质量评估/贝叶斯优化

Key words

raster stereoscopic display/visual simulation/image quality assessment/bayesian optimization

分类

电子信息工程

引用本文复制引用

洪逸飞,聂子涵,桑新柱,邢树军..基于仿真图像评价的光栅立体显示器优化方法[J].液晶与显示,2025,40(5):716-726,11.

基金项目

国家自然科学基金(No.62335002) Supported by National Natural Science Foundation of China(No.62335002) (No.62335002)

液晶与显示

OA北大核心

1007-2780

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