Computational photography: coding in space and time

B. Masiá
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引用次数: 1

Abstract

Computational photography emerged as a multidisciplinary field at the intersection of optics, computer vision, and computer graphics, with the objective of acquiring richer representations of a scene than those that conventional cameras can capture. The basic idea is to somehow code the information before it reaches the sensor, so that a posterior decoding will yield the final image (or video, light field, focal stack, etc). We describe here two examples of computational photography. One deals with coded apertures for the problem of defocus deblurring, and is a classical example of this coding-decoding scheme. The other is an ultrafast imaging system, the first to be able to capture light propagation in macroscopic high resolution scenes at 0.5 trillion frames per second.
计算摄影:空间和时间的编码
计算摄影作为光学、计算机视觉和计算机图形学交叉的多学科领域出现,其目标是获得比传统相机所能捕获的更丰富的场景表现。基本思想是在信息到达传感器之前以某种方式对其进行编码,以便后验解码将产生最终的图像(或视频,光场,焦点堆栈等)。我们在这里描述两个计算摄影的例子。一种是处理离焦去模糊问题的编码孔径,是这种编码解码方案的经典例子。另一个是超快成像系统,这是第一个能够以每秒0.5万亿帧的速度捕捉宏观高分辨率场景中的光传播的系统。
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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