Compressive sensing and differential image-motion estimation

Nathan Jacobs, S. Schuh, Robert Pless
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引用次数: 17

Abstract

Compressive-sensing cameras are an important new class of sensors that have different design constraints than standard cameras. Surprisingly, little work has explored the relationship between compressive-sensing measurements and differential image motion. We show that, given modest constraints on the measurements and image motions, we can omit the computationally expensive compressive-sensing reconstruction step and obtain more accurate motion estimates with significantly less computation time. We also formulate a compressive-sensing reconstruction problem that incorporates known image motion and show that this method outperforms the state-of-the-art in compressive-sensing video reconstruction.
压缩感知与差分图像运动估计
压缩传感摄像机是一类重要的新型传感器,它具有不同于标准摄像机的设计约束。令人惊讶的是,很少有工作探索压缩传感测量和差分图像运动之间的关系。我们表明,给定适度的测量和图像运动约束,我们可以省略计算昂贵的压缩感知重建步骤,并以更少的计算时间获得更准确的运动估计。我们还提出了一个包含已知图像运动的压缩感知重建问题,并表明该方法优于当前最先进的压缩感知视频重建方法。
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