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Dynamic programming framework for automatic video object segmentation and vision-assisted video pre-processing

机译:用于自动视频对象分割和视觉辅助视频预处理的动态编程框架

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A generic definition of video objects, which is a group of pixels with temporal motion coherence, is considered. The generic video object (GVO) is the superset of the conventional video objects considered in the object segmentation literature. Because of its motion coherence, the GVO can be easily recognised by the human visual system. However, due to its arbitrary spatial distribution, the GVO cannot be easily detected by the existing algorithms which often assume the spatial homogeneousness of the video objects. The concept of extended optical flow is introduced and a dynamic programming framework for the GVO detection and segmentation is developed, whose solution is given by the Viterbi algorithm. Using this dynamic programming formulation, the proposed object detection algorithm is able to discover the motion path of the GVO automatically and refine its spatial region of support progressively. In addition to object segmentation, the proposed algorithm can also be applied to video pre-processing, removing the so-called 'video mask' noise in digital videos. Experimental results show that this type of vision-assisted video pre-processing significantly improves the compression efficiency.
机译:考虑视频对象的一般定义,该视频对象是具有时间运动相干性的一组像素。通用视频对象(GVO)是对象分割文献中考虑的常规视频对象的超集。由于其运动连贯性,GVO可以很容易地被人类视觉系统识别。然而,由于其任意的空间分布,GVO无法通过通常假定视频对象的空间均匀性的现有算法轻松检测到。介绍了扩展光流的概念,并开发了用于GVO检测和分割的动态编程框架,其解决方案由Viterbi算法给出。使用这种动态编程公式,所提出的对象检测算法能够自动发现GVO的运动路径,并逐步完善其支持的空间区域。除了对象分割之外,所提出的算法还可以应用于视频预处理,从而消除了数字视频中的所谓“视频蒙版”噪声。实验结果表明,这种视觉辅助视频预处理可以显着提高压缩效率。

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