High-quality computational imaging through simple lenses

Felix Heide, Mushfiqur Rouf, M. Hullin, B. Labitzke, W. Heidrich, A. Kolb
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引用次数: 146

Abstract

Modern imaging optics are highly complex systems consisting of up to two dozen individual optical elements. This complexity is required in order to compensate for the geometric and chromatic aberrations of a single lens, including geometric distortion, field curvature, wavelength-dependent blur, and color fringing. In this article, we propose a set of computational photography techniques that remove these artifacts, and thus allow for postcapture correction of images captured through uncompensated, simple optics which are lighter and significantly less expensive. Specifically, we estimate per-channel, spatially varying point spread functions, and perform nonblind deconvolution with a novel cross-channel term that is designed to specifically eliminate color fringing.
通过简单的透镜进行高质量的计算成像
现代成像光学是高度复杂的系统,由多达24个单独的光学元件组成。为了补偿单个透镜的几何和色差,包括几何畸变、场曲率、波长相关的模糊和彩色条纹,这种复杂性是必需的。在本文中,我们提出了一套计算摄影技术,以消除这些伪影,从而允许通过未经补偿的简单光学捕获的图像的捕获后校正,这些光学捕获的图像更轻,更便宜。具体来说,我们估计了每个通道,空间变化的点扩展函数,并使用一种新的跨通道项执行非盲反卷积,该项旨在专门消除彩色条纹。
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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