Light field camera and integral 3D display: 3D image reconstruction based on lightfield data

Toru Iwane
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引用次数: 7

Abstract

Recently, light field cameras have become popular as cameras with which you can refocus images after having taken pictures. In this paper I report that combination of this light field camera and integral display has useful features for 3D image capture and reconstruction. Refocusing function is based on 3D information contained in light field data and this fact means that a light field camera captures 3D images and encodes them in the 2D sensor plane by micro lens array. This 3D capturing is unique in two points; one is that a light field camera acquires not real 3D object images but 3D image plane compressed in axial direction by the object lens in proportion to ratio of longitudinal and lateral magnification. So when captured 3D image plane is shown on the integral display, the actual 3D image is reconstructed near display screen like an embossed carving. The other point is that the reconstructed image is of higher resolution than density of micro lens. Light filed data by the light field camera basically contain full resolution information not limited by density of micro lens. This implicit resolution in encoded data comes out, when the light field data is decoded by the integral display thorough optical convolutional process.
光场相机与整体三维显示:基于光场数据的三维图像重建
最近,光场相机作为可以在拍摄完照片后重新对焦的相机而流行起来。在本文中,我报道了这种光场相机与集成显示器的结合对三维图像的捕获和重建具有有用的特性。重聚焦功能是基于光场数据中包含的三维信息,这意味着光场相机捕获三维图像并通过微透镜阵列将其编码到二维传感器平面上。这种3D捕捉在两点上是独一无二的;一是光场相机获得的不是真实的三维物体图像,而是物镜按纵向和横向放大倍率的比例在轴向上压缩的三维图像平面。因此,当捕获的三维图像平面显示在集成显示器上时,实际的三维图像就像浮雕一样在显示屏附近重建。另一点是重建图像的分辨率高于微透镜的密度。光场相机的光场数据基本包含不受微透镜密度限制的全分辨率信息。当光场数据经过积分显示的光卷积处理后,编码数据中的这种隐式分辨率就显现出来了。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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