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Lensless Imaging with a Controllable Aperture

机译:无透镜成像,可控孔

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摘要

In this paper we propose a novel, highly flexible camera. The camera consists of an image detector and a special aperture, but no lens. The aperture is a set of parallel light attenuating layers whose transmittances are controllable in space and time. By applying different transmittance patterns to this aperture, it is possible to modulate the incoming light in useful ways and capture images that are impossible to capture with conventional lens-based cameras. For example, the camera can pan and tilt its field of view without the use of any moving parts. It can also capture disjoint regions of interest in the scene without having to capture the regions in between them. In addition, the camera can be used as a computational sensor, where the detector measures the end result of computations performed by the attenuating layers on the scene radiance values. These and other imaging functionalities can be implemented with the same physical camera and the functionalities can be switched from one video frame to the next via software. We have built a prototype camera based on this approach using a bare image detector and a liquid crystal modulator for the aperture. We discuss in detail the merits and limitations of lensless imaging using controllable apertures.
机译:在本文中,我们提出了一种新颖,高度灵活的相机。相机由图像探测器和特殊光圈组成,但没有镜头。孔是一组平行的光衰减层,其透射率在空间和时间中可控。通过将不同的透射率模式应用于该孔径,可以以有用的方式调制进入的光,并捕获不可能与传统的基于镜头的相机捕获的图像。例如,相机可以在不使用任何移动部件的情况下平移并倾斜其视野。它还可以捕获场景中的脱节区域,而无需捕获它们之间的区域。另外,相机可以用作计算传感器,其中检测器测量由衰减层在场景辐射值上执行的计算的最终结果。这些和其他成像功能可以用相同的物理摄像机实现,并且功能可以从一个视频帧切换到下一个通过软件。我们已经使用裸机检测器和孔径的液晶调制器基于这种方法构建了一种原型摄像机。我们详细讨论了使用可控孔的无透镜成像的优点和限制。

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