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Integrated video shot segmentation algorithm

机译:集成视频镜头分割算法

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摘要

Video segmentation is fundamental to a number of applications related to video retrieval and analysis. Shot change detection is the initial step of video segmentation and indexing. There are two basic types of shot changes. One is the abrupt change or cut, and the other is the gradual shot transition. The smooth variations of the video feature values in a gradual transition produced by the editing effects are often confused with those caused by camera or object motions. To overcome this difficulty, it is reasonable to estimate the motions and suppress the disturbance caused by them. In this thesis, we explore the possibility to exploit motion and illumination estimation in a video sequence to detect both abrupt and gradual shot changes. A generalized optical flow constraint that includes an illumination parameter to model local illumination changes is employed in the motion and illumination estimation. An iterative process is used to refine the generalized optical flow constraints step by step. A robust measure that is the likelihood ratio of the corresponding motion-compensated blocks in the consecutive frames is used for detecting abrupt changes. For the detection of gradual shot transitions, we compute the average monotony of intensity variations on the stable pixels in the images in a twin-comparison framework. We test the proposed algorithm on a number of video sequences in TREC 2001 and compare the detection results with the best results reported in the TREC 2001 benchmark. The comparisons indicate that the proposed shot change detection algorithm is competitive against the best existing algorithms.
机译:视频分割对于许多与视频检索和分析相关的应用程序至关重要。镜头变化检测是视频分割和索引编制的第一步。镜头更改有两种基本类型。一个是突然的更改或剪切,另一个是逐渐的镜头过渡。视频特征值在由编辑效果产生的逐渐过渡中的平滑变化通常会与由摄像机或对象运动引起的平滑特征相混淆。为了克服该困难,合理地估计运动并抑制由它们引起的干扰是合理的。在本文中,我们探索了利用视频序列中的运动和照明估计来检测突然和逐渐的镜头变化的可能性。在运动和照明估计中采用了通用的光流约束条件,该约束条件包括对局部照明变化进行建模的照明参数。使用迭代过程逐步完善广义的光流约束。作为连续帧中相应的运动补偿块的似然比的鲁棒测量被用于检测突变。为了检测渐变镜头过渡,我们在双比较框架中计算图像稳定像素上强度变化的平均单调。我们在TREC 2001的多个视频序列上测试了该算法,并将检测结果与TREC 2001基准报告的最佳结果进行了比较。比较表明,所提出的镜头变化检测算法与现有的最佳算法相比具有竞争力。

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