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首页> 外文期刊>IEEE transactions on multimedia >Light Field Super-Resolution Using Edge-Preserved Graph-Based Regularization
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Light Field Super-Resolution Using Edge-Preserved Graph-Based Regularization

机译:光场超分辨率使用边缘保留的基于图形的正则化

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摘要

The light field information would be captured through light field cameras and in different directions regarding 3D image view recordings. In this paper, in order to increase the spatio-angular super-resolution quality and to decrease the reconstruction error regarding the light field information, we use a graph-based light field super-resolution strategy. Accordingly, in order to apply the complementary data in the light field views, we use a graph regularizer for the total recovery of the information and an edge-preserving technique that represents an isometry between curves in the 2D manifold and 5D space of the RGB image views. Moreover, the reconstruction of the light field information is based on applying the alternating direction method of multipliers (ADMM) algorithm. Accordingly, a recent enhanced ADMM model has been used in this paper which is denominated as "Plug-and-Play" and permits the user to plug an image reconstruction technique and a denoising methodology as the first and second sub-problems respectively. On that account, we would be able to resolve the light field super-resolution problem considering the graph-based light field structure as the first sub-problem and the edge-preserving technique as the denoising methodology. Consequently, by applying the proposed super-resolution strategy, the super-resolved light field outcome would be more favorable in terms of visual quality and reconstruction errors in comparison with other state-of-the-art methodologies.
机译:光场信息将通过光场摄像机和关于3D图像视图录制的不同方向捕获。在本文中,为了提高时空超分辨率质量并降低关于光场信息的重建误差,我们使用基于图的光场超分辨率策略。因此,为了在光场视图中应用互补数据,我们使用图形规范器来总恢复信息和边缘保留技术,其表示曲线之间的曲线和RGB图像的5D空间之间的等距。意见。此外,光场信息的重建是基于施加乘法器(ADMM)算法的交替方向方法。因此,本文已经使用了最近的增强型ADMM模型,其以“即插即用”计为单位,并且允许用户分别将图像重建技术和去噪方法插入第一和第二子问题。在该帐户上,我们能够考虑基于图形的光场结构作为第一子问题的光场超分辨率问题,以及作为去噪方法的边缘保护技术。因此,通过应用所提出的超分辨率策略,与其他最先进的方法相比,在视觉质量和重建误差方面,超分辨的光场结果将更有利于。

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