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Jitter-Camera: High Resolution Video from a Low Resolution Detector

机译:抖动相机:来自低分辨率检测器的高分辨率视频

摘要

Video cameras must produce images at a reasonable frame-rate and with a reasonable depth of field. These requirements impose fundamental physical limits on the spatial resolution of the image detector. As a result, current cameras produce videos with a very low resolution. The resolution of videos can be computationally enhanced by moving the camera and applying super-resolution reconstruction algorithms. However, a moving camera introduces motion blur, which limits super-resolution quality. We analyze this effect and derive a theoretical result showing that motion blur has a substantial degrading effect on the performance of super resolution. The conclusion is, that in order to achieve the highest resolution, motion blur should be avoided. Motion blur can be minimized by sampling the space-time volume of the video in a specific manner. We have developed a novel camera, called the jitter camera, that achieves this sampling. By applying an adaptive super-resolution algorithm to the video produced by the jitter camera, we show that resolution can be notably enhanced for stationary or slowly moving objects, while it is improved slightly or left unchanged for objects with fast and complex motions. The end result is a video that has a significantly higher resolution than the captured one.
机译:摄像机必须以合理的帧频和合理的景深产生图像。这些要求对图像检测器的空间分辨率施加了基本的物理限制。结果,当前的摄像机产生的分辨率非常低的视频。可以通过移动相机并应用超分辨率重建算法来提高视频的分辨率。但是,移动相机会引入运动模糊,这会限制超分辨率的质量。我们分析了这种影响,并得出了理论结果,表明运动模糊对超分辨率的性能有很大的影响。结论是,为了获得最高分辨率,应避免运动模糊。通过以特定方式对视频的时空量进行采样,可以将运动模糊最小化。我们开发了一种新型相机,称为抖动相机,可以实现这种采样。通过对抖动摄像机产生的视频应用自适应超分辨率算法,我们表明,对于静止或缓慢移动的对象,分辨率可以显着提高,而对于快速复杂运动的对象,分辨率可以略微提高或保持不变。最终结果是视频的分辨率明显高于捕获的视频。

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