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Spatiotemporal segmentation and tracking of objects forvisualization of videoconference image sequences

机译:时空分割和跟踪对象以可视化电视会议图像序列

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摘要

A procedure is described for the segmentation, content-based coding, and visualization of videoconference image sequences. First, image sequence analysis is used to estimate the shape and motion parameters of the person facing the camera. A spatiotemporal filter, taking into account the intensity differences between consequent frames, is applied, in order to separate the moving person from the static background. The foreground is segmented in a number of regions in order to identify the face. For this purpose, we propose the novel procedure of K-means with connectivity constraint algorithm as a general segmentation algorithm combining several types of information including intensity, motion and compactness. In this algorithm, the use of spatiotemporal regions is introduced since a number of frames are analyzed simultaneously and as a result, the same region is present in consequent frames. Based on this information, a 3-D ellipsoid is adapted to the person's face using an efficient and robust algorithm. The rigid 3-D motion is estimated next using a least median of squares approach, Finally, a virtual reality modeling language (VRML) file is created containing all the above information; this file may be viewed by using any VRML 2.0 compliant browser
机译:描述了一种用于视频会议图像序列的分割,基于内容的编码和可视化的过程。首先,图像序列分析用于估计面对相机的人的形状和运动参数。应用时空滤波器,考虑到随后帧之间的强度差异,以便将移动的人与静态背景分开。前景被划分为多个区域,以识别人脸。为此,我们提出了一种具有连通性约束算法的K均值新方法,它是一种结合了包括强度,运动和紧缩性在内的多种信息的通用分割算法。在该算法中,由于同时分析了多个帧,因此引入了时空区域的使用,结果,在随后的帧中存在相同的区域。基于此信息,可以使用高效且鲁棒的算法将3-D椭球体适配到人的面部。接下来,使用最小二乘法来估计刚性3-D运动。最后,创建一个虚拟现实建模语言(VRML)文件,其中包含上述所有信息。可以使用任何兼容VRML 2.0的浏览器查看此文件

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