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Video from Stills: Lensless Imaging with Rolling Shutter

机译:来自剧照的视频:带快门的无镜头成像

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Because image sensor chips have a finite bandwidth with which to read out pixels, recording video typically requires a trade-off between frame rate and pixel count. Compressed sensing techniques can circumvent this trade-off by assuming that the image is compressible. Here, we propose using multiplexing optics to spatially compress the scene, enabling information about the whole scene to be sampled from a row of sensor pixels, which can be read off quickly via a rolling shutter CMOS sensor. Conveniently, such multiplexing can be achieved with a simple lensless, diffuser-based imaging system. Using sparse recovery methods, we are able to recover 140 video frames at over 4,500 frames per second, all from a single captured image with a rolling shutter sensor. Our proof-of-concept system uses easily-fabricated diffusers paired with an off-the-shelf sensor. The resulting prototype enables compressive encoding of high frame rate video into a single rolling shutter exposure, and exceeds the sampling-limited performance of an equivalent global shutter system for sufficiently sparse objects.
机译:由于图像传感器芯片具有用于读取像素的有限带宽,因此录制视频通常需要在帧频和像素数之间进行权衡。压缩的传感技术可以通过假设图像可压缩来避免这种折衷。在这里,我们建议使用多路复用光学器件对场景进行空间压缩,从而可以从一行传感器像素中采样有关整个场景的信息,这些信息可以通过卷帘CMOS传感器快速读取。方便地,可以用简单的无透镜,基于漫射器的成像系统实现这种多路复用。使用稀疏恢复方法,我们能够以每秒超过4,500帧的速度恢复140个视频帧,所有这些都可以通过滚动快门传感器从单个捕获的图像中恢复。我们的概念验证系统使用易于制造的扩散器和现成的传感器配对。最终的原型能够将高帧频视频压缩编码为单次滚动快门曝光,并且超过了等效的全局快门系统对足够稀疏物体的采样限制性能。

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