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通过从多聚焦图像中移动小孔实现所有焦点图像的高效重建,用于密集光场合成和渲染。

Efficient reconstruction of all-in-focus images through shifted pinholes from multi-focus images for dense light field synthesis and rendering.

出版信息

IEEE Trans Image Process. 2013 Nov;22(11):4407-21. doi: 10.1109/TIP.2013.2273668.

Abstract

Scene refocusing beyond extended depth of field for users to observe objects effectively is aimed by researchers in computational photography, microscopic imaging, and so on. Ordinary all-in-focus image reconstruction from a sequence of multi-focus images achieves extended depth of field, where reconstructed images would be captured through a pinhole in the center on the lens. In this paper, we propose a novel method for reconstructing all-in-focus images through shifted pinholes on the lens based on 3D frequency analysis of multi-focus images. Such shifted pinhole images are obtained by a linear combination of multi-focus images with scene-independent 2D filters in the frequency domain. The proposed method enables us to efficiently synthesize dense 4D light field on the lens plane for image-based rendering, especially, robust scene refocusing with arbitrary bokeh. Our novel method using simple linear filters achieves not only reconstruction of all-in-focus images even for shifted pinholes more robustly than the conventional methods depending on scene/focus estimation, but also scene refocusing without suffering from limitation of resolution in comparison with recent approaches using special devices such as lens arrays in computational photography.

摘要

研究人员在计算摄影、微观成像等领域致力于实现超出景深范围的场景重聚焦,以便用户能够有效地观察物体。通过一系列多聚焦图像实现扩展景深的普通全聚焦图像重建,其中重建图像将通过镜头中心的针孔捕获。在本文中,我们提出了一种基于多聚焦图像的三维频域分析,通过镜头上的移位针孔来重建全聚焦图像的新方法。这种移位针孔图像是通过在频域中使用与场景无关的二维滤波器对多聚焦图像进行线性组合获得的。所提出的方法使我们能够有效地在镜头平面上合成密集的 4D 光场,用于基于图像的渲染,特别是具有任意散景的鲁棒场景重聚焦。我们的新方法使用简单的线性滤波器,不仅可以重建全聚焦图像,甚至可以比基于场景/焦点估计的传统方法更稳健地重建移位针孔图像,而且与使用特殊设备(如计算摄影中的透镜阵列)的最近方法相比,它还可以不受分辨率限制进行场景重聚焦。

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