Linear Volumetric Focus for Light Field Cameras

ACM Trans. Graph. Pub Date : 2015-03-02 DOI:10.1145/2665074
D. Dansereau, O. Pizarro, Stefan B. Williams
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引用次数: 144

Abstract

We demonstrate that the redundant information in light field imagery allows volumetric focus, an improvement of signal quality that maintains focus over a controllable range of depths. To do this, we derive the frequency-domain region of support of the light field, finding it to be the 4D hyperfan at the intersection of a dual fan and a hypercone, and design a filter with correspondingly shaped passband. Drawing examples from the Stanford Light Field Archive and images captured using a commercially available lenslet-based plenoptic camera, we demonstrate that the hyperfan outperforms competing methods including planar focus, fan-shaped antialiasing, and nonlinear image and video denoising techniques. We show the hyperfan preserves depth of field, making it a single-step all-in-focus denoising filter suitable for general-purpose light field rendering. We include results for different noise types and levels, through murky water and particulate matter, in real-world scenarios, and evaluated using a variety of metrics. We show that the hyperfan's performance scales with aperture count, and demonstrate the inclusion of aliased components for high-quality rendering.
光场相机的线性体积对焦
我们证明了光场图像中的冗余信息允许体积聚焦,这是一种信号质量的改进,可以在可控的深度范围内保持聚焦。为此,我们推导出了光场的频域支撑区域,发现它是双扇和超锥相交处的四维超锥,并设计了相应形状通带的滤波器。通过斯坦福光场档案的例子和使用商用透镜全光学相机拍摄的图像,我们证明了hyperperfan优于其他竞争方法,包括平面聚焦、扇形抗混叠、非线性图像和视频去噪技术。我们展示了hyperfan保留景深,使其成为适用于通用光场渲染的单步全焦点去噪滤波器。我们包括了不同噪音类型和水平的结果,通过浑浊的水和颗粒物,在现实世界的场景中,并使用各种指标进行评估。我们展示了hyperfan的性能随光圈数的变化而变化,并展示了高质量渲染所包含的混叠组件。
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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