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On plenoptic multiplexing and reconstruction

机译:关于全光复用和重建

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摘要

Photography has been striving to capture an ever increasing amount of visual information in a single image. Digital sensors, however, are limited to recording a small subset of the desired information at each pixel. A common approach to overcoming the limitations of sensing hardware is the optical multiplexing of high-dimensional data into a photograph. While this is a well-studied topic for imaging with color filter arrays, we develop a mathematical framework that generalizes multiplexed imaging to all dimensions of the plenoptic function. This framework unifies a wide variety of existing approaches to analyze and reconstruct multiplexed data in either the spatial or the frequency domain. We demonstrate many practical applications of our framework including high-quality light field reconstruction, the first comparative noise analysis of light field attenuation masks, and an analysis of aliasing in multiplexing applications.
机译:摄影一直致力于在单个图像中捕获越来越多的视觉信息。但是,数字传感器仅限于在每个像素上记录所需信息的一小部分。克服传感硬件局限性的一种常用方法是将高维数据光学复用到照片中。尽管这是使用彩色滤光片阵列成像的一个经过充分研究的主题,但我们开发了一个数学框架,该框架将多路复用成像推广到全光函数的所有维度。该框架统一了多种现有方法,可以在空间或频域中分析和重建复用数据。我们展示了我们框架的许多实际应用,包括高质量的光场重建,光场衰减掩模的首次比较噪声分析以及复用应用中的混叠分析。

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