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A fast and memory-efficient Discrete Focal Stack Transform for plenoptic sensors

机译:用于全光传感器的快速且高效存储的离散焦距堆栈变换

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Plenoptic cameras are a new type of sensors that capture the four-dimensional lightfield of a scene. Processing the recorded lightfield, they extend the capabilities of current commercial cameras. Conventional cameras obtain photographs focusing at a determined depth. This photograph can be described through a projection of the four-dimensional lightfield onto two spatial dimensions. The collection of such images is the focal stack of the scene. The focal stack can be used to select an image refocused at a certain depth, to recover 3D information or to obtain all-in-focus images. There are several approaches to the computation of the focal stack. In this paper we propose a new technique to compute the focal stack by means of its frequency decomposition that can be seen as an extension of the Discrete Focal Stack Transform (DFST). This new approach decreases the computational complexity of the DFST maintaining an efficient memory use. Experimental results are provided to show the validity of the technique and its extension to 3D processing and all-in-focus image computation is also studied. (C) 2014 Elsevier Inc. All rights reserved.
机译:全光相机是一种新型的传感器,可以捕获场景的四维光场。通过处理记录的光场,它们扩展了当前商用相机的功能。常规相机获得聚焦在确定深度的照片。可以通过将二维光场投影到两个空间维上来描述这张照片。这些图像的集合是场景的焦点堆栈。焦点堆栈可用于选择在特定深度重新聚焦的图像,恢复3D信息或获取全焦点图像。有几种方法来计算焦点堆栈。在本文中,我们提出了一种通过其频率分解来计算焦距堆栈的新技术,该技术可以看作是离散焦距堆栈变换(DFST)的扩展。这种新方法降低了DFST的计算复杂性,从而保持了有效的内存使用率。实验结果证明了该技术的有效性,并且研究了该技术在3D处理和全焦点图像计算中的扩展。 (C)2014 Elsevier Inc.保留所有权利。

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