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Coded rolling shutter photography: Flexible space-time sampling

机译:编码卷帘摄影:灵活的时空采样

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We propose a novel readout architecture called coded rolling shutter for complementary metal-oxide semiconductor (CMOS) image sensors. Rolling shutter has traditionally been considered as a disadvantage to image quality since it often introduces skew artifact. In this paper, we show that by controlling the readout timing and the exposure length for each row, the row-wise exposure discrepancy in rolling shutter can be exploited to flexibly sample the 3D space-time volume of scene appearance, and can thus be advantageous for computational photography. The required controls can be readily implemented in standard CMOS sensors by altering the logic of the control unit. We propose several coding schemes and applications: (1) coded readout allows us to better sample time dimension for high-speed photography and optical flow based applications; and (2) row-wise control enables capturing motion-blur free high dynamic range images from a single shot. While a prototype chip is currently in development, we demonstrate the benefits of coded rolling shutter via simulation using images of real scenes.
机译:我们提出了一种用于互补金属氧化物半导体(CMOS)图像传感器的编码滚动快门的新型读数架构。滚动快门传统上被认为是对图像质量的缺点,因为它经常引入歪曲伪影。在本文中,我们示出了通过控制每行的读出时序和曝光长度,可以利用滚动快门中的行明智曝光差异来灵活地采样场景外观的3D时空量,因此可以是有利的用于计算摄影。通过改变控制单元的逻辑,可以在标准CMOS传感器中容易地实现所需的控制。我们提出了几种编码方案和应用程序:(1)编码读数允许我们更好地采样时间尺寸,用于高速摄影和基于光流的应用; (2)行明智控制使得能够从单次拍摄捕获运动模糊的高动态范围图像。虽然当前正在开发原型芯片时,我们通过使用真实场景的图像来展示编码滚动快门的优势。

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