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Superresolution reconstruction of a video captured by a vibrated time delay and integration camera

机译:振动延时和集成摄像机捕获的视频的超分辨率重建

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摘要

Various applications such as industrial product inspection or low signal-to-noise situations (as in thermal imaging) employ a time delay and integration (TDI) scanning imaging technique. Due to common vibration sources such as the camera platform motion or the thermal detector's cooling system, the acquired image may be degraded by severe shift-variant geometric distortions and motion blur. We use these vibrations in terms of superresolution to create an improved high-resolution video sequence from the degraded lower resolution sequence, in two main stages: subpixel motion estimation with respect to translations and rotations, used for point spread function (PSF) estimation, followed by an efficient implementation of the projection onto convex sets (POCS) method. We generalize and considerably improve a previous technique for restoration of a single image captured by a translational vibrated staggered-TDI camera (Hochman et al., 2004). The proposed method is implemented with both simulated videos and real degraded thermal videos. A comparative analysis shows an advantage of the proposed method over others in restoring the vibrated videos.
机译:诸如工业产品检查或低信噪比情况(如在热成像中)的各种应用都采用了时间延迟和积分(TDI)扫描成像技术。由于常见的振动源(例如摄像机平台运动或热探测器的冷却系统),所获取的图像可能会因严重的变化变量几何失真和运动模糊而退化。我们以超分辨率的方式使用这些振动,以从降级的低分辨率序列创建改进的高分辨率视频序列,主要分为两个阶段:相对于平移和旋转的子像素运动估计,用于点扩展函数(PSF)估计,其次通过有效实现凸集投影(POCS)方法。我们归纳并大大改善了先前的技术,该技术可用于恢复平移振动交错式TDI相机捕获的单个图像(Hochman等,2004)。所提出的方法是通过模拟视频和实际降级的热视频实现的。比较分析表明,在还原振动视频时,该方法相对于其他方法具有优势。

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