首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Reciprocal 360-deg 3D light-field image acquisition and display system
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Reciprocal 360-deg 3D light-field image acquisition and display system

机译:互惠360-DEG 3D光场图像采集和显示系统

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摘要

A reciprocal 360-deg three-dimensional light-field image acquisition and display system was designed using a common catadioptric optical configuration and a lens array. Proof-of-concept experimental setups were constructed with a full capturing part and a truncated display section to demonstrate that the proposed design works without loss of generality. Unlike conventional setups, which record and display rectangular volumes, the proposed configuration records 3D images from its surrounding spherical volume in the capture mode and projects 3D images to the same spherical volume in the display mode. This is particularly advantageous in comparison to other 360-deg multi-camera and multiple projector display systems that require extensive image and physical calibration. We analyzed the system and showed quality measures such as angular resolution and space bandwidth product based on design parameters. The issue due to pixel size difference between the available imaging sensor and the display was also addressed. A diffractive microlens array matching the sensor size was used in the acquisition part, whereas a vacuum cast lens array matching the display size was used in the display part with scaled optics. The experimental results demonstrate the proposed system design works well and is in good agreement with the simulation results. (c) 2019 Optical Society of America.
机译:使用普通的CataDioptric光学配置和透镜阵列设计了倒数360-Deg三维光场图像采集和显示系统。概念验证实验设置用完整的捕获部分和截断的显示部分构建,以证明所提出的设计在没有普遍的情况下工作。与传统的设置不同,该设置和显示矩形卷,所提出的配置在捕获模式中从其周围的球面体积记录3D图像,并将3D图像投影到显示模式中的相同球体体积。与其他360°多相机和多个需要广泛的图像和物理校准的多个投影仪显示系统相比,这是特别有利的。我们分析了该系统,并显示了基于设计参数的角度分辨率和空间带宽产品等质量措施。还解决了由于可用的成像传感器和显示器之间的像素尺寸差异的问题。在采集部分中使用匹配传感器尺寸的衍射微透镜阵列,而匹配显示尺寸的真空铸造透镜阵列用于具有缩放光学器件的显示部件。实验结果展示了所提出的系统设计良好,与模拟结果吻合良好。 (c)2019年光学学会。

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