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Real-time depth controllable integral imaging pickup and reconstruction method with a light field camera

机译:光场相机实时深度可控的整体成像拾取与重建方法

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In this paper, we develop a real-time depth controllable integral imaging system. With a high-frame-rate camera and a focus controllable lens, light fields from various depth ranges can be captured. According to the image plane of the light field camera, the objects in virtual and real space are recorded simultaneously. The captured light field information is converted to the elemental image in real time without pseudoscopic problems. In addition, we derive characteristics and limitations of the light field camera as a 3D broadcasting capturing device with precise geometry optics. With further analysis, the implemented system provides more accurate light fields than existing devices without depth distortion. We adapt an f-number matching method at the capture and display stage to record a more exact light field and solve depth distortion, respectively. The algorithm allows the users to adjust the pixel mapping structure of the reconstructed 3D image in real time. The proposed method presents a possibility of a handheld real-time 3D broadcasting system in a cheaper and more applicable way as compared to the previous methods. (C)2015 Optical Society of America
机译:在本文中,我们开发了实时深度可控的积分成像系统。使用高帧数相机和可控焦点的镜头,可以捕获来自各种深度范围的光场。根据光场摄像机的图像平面,同时记录虚拟和现实空间中的对象。所捕获的光场信息被实时转换为基本图像,而没有伪影问题。此外,我们推导了作为具有精确几何光学特性的3D广播捕获设备的光场相机的特性和局限性。通过进一步分析,所实现的系统比没有深度失真的现有设备提供了更准确的光场。我们在捕获和显示阶段采用f数匹配方法来记录更精确的光场并分别解决深度失真。该算法允许用户实时调整重建的3D图像的像素映射结构。与先前的方法相比,所提出的方法以更便宜和更适用的方式提供了手持实时3D广播系统的可能性。 (C)2015年美国眼镜学会

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