采用准像素曝光的CMOS图像传感器进行高速成像

H. Nagahara, Toshiki Sonoda, K. Endo, Y. Sugiyama, R. Taniguchi
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引用次数: 32

摘要

近年来在压缩视频感知方面的一些研究已经利用随机时空采样实现了超越空间分辨率和时间分辨率之间的基本权衡限制的场景捕获。然而,由于目前还没有商用的具有随机曝光或采样功能的图像传感器,这些研究大多显示了通过模拟实验或使用光学模拟随机采样相机产生的高帧率视频的结果。制作了一种具有准像素曝光定时的CMOS图像传感器原型,可实现非均匀时空采样。原型传感器可以按列独立地重置曝光,并为每个8×8像素块按行固定这些曝光量。这种CMOS传感器不能通过像素完全控制,并且具有线相关控制,但与常规CMOS或具有全局或滚动快门的电荷耦合器件传感器相比,它提供了灵活性。本文提出了一种利用CMOS传感器的灵活性实现高速视频采集的伪随机采样方法。我们利用过完备字典从伪随机采样产生的图像中重构高速视频序列。该方法还消除了重构视频中的滚动快门效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-speed imaging using CMOS image sensor with quasi pixel-wise exposure
Several recent studies in compressive video sensing have realized scene capture beyond the fundamental trade-off limit between spatial resolution and temporal resolution using random space-time sampling. However, most of these studies showed results for higher frame rate video that were produced by simulation experiments or using an optically simulated random sampling camera, because there are currently no commercially available image sensors with random exposure or sampling capabilities. We fabricated a prototype complementary metal oxide semiconductor (CMOS) image sensor with quasi pixel-wise exposure timing that can realize nonuniform space-time sampling. The prototype sensor can reset exposures independently by columns and fix these amount of exposure by rows for each 8×8 pixel block. This CMOS sensor is not fully controllable via the pixels, and has line-dependent controls, but it offers flexibility when compared with regular CMOS or charge-coupled device sensors with global or rolling shutters. We propose a method to realize pseudo-random sampling for high-speed video acquisition that uses the flexibility of the CMOS sensor. We reconstruct the high-speed video sequence from the images produced by pseudo-random sampling using an over-complete dictionary. The proposed method also removes the rolling shutter effect from the reconstructed video.
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