基于深度平面体素信息融合的光场显示景深增强技术

IF 3.5 2区 工程技术 Q2 OPTICS Optics and Lasers in Engineering Pub Date : 2024-08-30 DOI:10.1016/j.optlaseng.2024.108543
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引用次数: 0

摘要

为了提高三维光场显示设备(LFD)的性能并优化其显示效果,有人提出了一种基于深度面上体素信息融合的光场显示景深(DOF)增强方法。在之前的研究中,开发了一种计算深度面上体素大小的方法。根据这种计算方法,建立了随显示深度变化的体素分布模型。提出了一种基于视觉角度体素分布的 DOF 判定标准,并通过多人参与的主观实验验证了其准确性。通过融合深度平面上的体素,改善了体素重叠现象,从而增强了深度平面上三维图像的清晰度。在三维 LFD 设备的结构和参数确定的条件下,可实现的最大显示深度将显著增加。最后,利用多个三维光场显示设备对该方法的可行性进行了实验验证。
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Depth-of-field enhancement in light field display based on fusion of voxel information on the depth plane

To improve the performance of 3D light field display(LFD) devices and optimize their display effects, a depth-of-field (DOF) enhancement in LFD based on fusion of voxel information on the depth plane is proposed. In previous research, a calculation method was developed to calculate the voxel size on the depth plane. According to this calculation method, a distribution model of voxel varying with display depth is established. A DOF determination criterion based on voxel distribution from visual perspective is proposed, and its accuracy is validated through subjective experiments involving multiple participants. By fusing the voxels on the depth plane, the phenomenon of voxel overlap is improved, resulting in enhanced definition of 3D images on the depth plane. Under the condition that the structure and parameters of the 3D LFD device are determined, the maximum achievable display depth will be increased significantly. Finally, experimental validation of the method's feasibility is conducted using multiple 3D light field devices for display.

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来源期刊
Optics and Lasers in Engineering
Optics and Lasers in Engineering 工程技术-光学
CiteScore
8.90
自引率
8.70%
发文量
384
审稿时长
42 days
期刊介绍: Optics and Lasers in Engineering aims at providing an international forum for the interchange of information on the development of optical techniques and laser technology in engineering. Emphasis is placed on contributions targeted at the practical use of methods and devices, the development and enhancement of solutions and new theoretical concepts for experimental methods. Optics and Lasers in Engineering reflects the main areas in which optical methods are being used and developed for an engineering environment. Manuscripts should offer clear evidence of novelty and significance. Papers focusing on parameter optimization or computational issues are not suitable. Similarly, papers focussed on an application rather than the optical method fall outside the journal''s scope. The scope of the journal is defined to include the following: -Optical Metrology- Optical Methods for 3D visualization and virtual engineering- Optical Techniques for Microsystems- Imaging, Microscopy and Adaptive Optics- Computational Imaging- Laser methods in manufacturing- Integrated optical and photonic sensors- Optics and Photonics in Life Science- Hyperspectral and spectroscopic methods- Infrared and Terahertz techniques
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