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Light field upsampling by joint bilateral filtering on epipolar plane images

机译:通过联合双侧滤波对截面平面图像上的光场上采样

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Due to the trade-off between spatial and angular resolution, the effective spatial resolution of a light field image is usually less than one percent of the number of pixels on the photo sensor. In this paper, we propose a prototype algorithm to upsample a light field image. Because the boundary edges of 3D objects would result in lines on epipolar plane images (EPIs), the main idea of our method is to preserve these line structures while upsampling so that the image enlargement can still have sharp boundary edges. The kernel of the proposed algorithm is an iterative joint-bilateral filtering process. Experiments show that the upsampled image derived by our method is still refocusable and has better visual quality than those derived by other methods. Finally, the main contribution of this method is that it decomposes a 4D light field space L(u, v, s, t) upsampling problem into a series of 1D, parameter-free upsampling subproblems that can be solved fast in u-s and v-t EPI domains.
机译:由于空间和角度分辨率之间的折衷,光场图像的有效空间分辨率通常小于照片传感器上的像素数的百分比。在本文中,我们提出了一种原型算法来越过光场图像。因为3D对象的边界边缘将导致ePipolar平面图像(EPIS)线,所以我们的方法的主要思想是在上采样时保留这些线结构,使得图像放大仍然具有尖锐的边界边缘。所提出的算法的内核是一种迭代关节双侧过滤过程。实验表明,我们的方法导出的上采样的图像仍然可重新折焦,并且具有比其他方法所衍生的视觉质量更好。最后,这种方法的主要贡献是它将4D光场空间L(U,V,S,T)上采样问题分解为一系列1D,无参数上采样子问题,可以在US和VT EPI中快速解决域名。

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