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Generalized Assorted Pixel Camera: Postcapture Control of Resolution, Dynamic Range, and Spectrum

机译:通用分类像素相机:分辨率,动态范围和光谱的后期捕获控制

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We propose the concept of a generalized assorted pixel (GAP) camera, which enables the user to capture a single image of a scene and, after the fact, control the tradeoff between spatial resolution, dynamic range and spectral detail. The GAP camera uses a complex array (or mosaic) of color filters. A major problem with using such an array is that the captured image is severely under-sampled for at least some of the filter types. This leads to reconstructed images with strong aliasing. We make four contributions in this paper: 1) we present a comprehensive optimization method to arrive at the spatial and spectral layout of the color filter array of a GAP camera. 2) We develop a novel algorithm for reconstructing the under-sampled channels of the image while minimizing aliasing artifacts. 3) We demonstrate how the user can capture a single image and then control the tradeoff of spatial resolution to generate a variety of images, including monochrome, high dynamic range (HDR) monochrome, RGB, HDR RGB, and multispectral images. 4) Finally, the performance of our GAP camera has been verified using extensive simulations that use multispectral images of real world scenes. A large database of these multispectral images has been made available at http://www1.cs.columbia.edu/CAVE/projects/gap_camera/ for use by the research community.
机译:我们提出了一种通用分类像素(GAP)摄像机的概念,该摄像机使用户能够捕获场景的单个图像,并在此之后控制空间分辨率,动态范围和光谱细节之间的权衡。 GAP相机使用复杂的彩色滤光片阵列(或马赛克)。使用这种阵列的主要问题是,对于至少某些滤波器类型,捕获的图像严重欠采样。这导致具有强混叠的重建图像。在本文中,我们做出了四点贡献:1)我们提出了一种综合的优化方法,以得出GAP相机滤色镜阵列的空间和光谱布局。 2)我们开发了一种新颖的算法,可在最小化混叠伪影的同时重建图像的欠采样通道。 3)我们演示了用户如何捕获单个图像,然后控制空间分辨率的权衡以生成各种图像,包括单色,高动态范围(HDR)单色,RGB,HDR RGB和多光谱图像。 4)最后,我们的GAP相机的性能已通过使用真实世界场景的多光谱图像的广泛模拟进行了验证。这些多光谱图像的大型数据库已在http://www1.cs.columbia.edu/CAVE/projects/gap_camera/上提供,供研究团体使用。

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