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首页> 外文期刊>IEEE Transactions on Circuits and Systems for Video Technology >A Bayesian approach to video object segmentation via merging 3-D watershed volumes
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A Bayesian approach to video object segmentation via merging 3-D watershed volumes

机译:通过合并3-D分水岭体积的贝叶斯视频对象分割方法

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In this letter, we propose a Bayesian approach to video object segmentation. Our method consists of two stages. In the first stage, we partition the video data into a set of three-dimensional (3-D) watershed volumes, where each watershed volume is a series of corresponding two-dimensional (2-D) image regions. These 2-D image regions are obtained by applying to each image frame the marker-controlled watershed segmentation, where the markers are extracted by first generating a set of initial markers via temporal tracking and then refining the markers with two shrinking schemes: the iterative adaptive erosion and the verification against a presimplified watershed segmentation. Next, in the second stage, we use a Markov random field to model the spatio-temporal relationship among the 3-D watershed volumes that are obtained from the first stage. Then, the desired video objects can be extracted by merging watershed volumes having similar motion characteristics within a Bayesian framework. A major advantage of this method is that it can take into account the global motion information contained in each watershed volume. Our experiments have shown that the proposed method has potential for extracting moving objects from a video sequence.
机译:在这封信中,我们提出了一种贝叶斯方法进行视频对象分割。我们的方法包括两个阶段。在第一阶段,我们将视频数据划分为一组三维(3-D)分水岭体积,其中每个分水岭体积是一系列相应的二维(2-D)图像区域。这些2-D图像区域是通过将标记控制的分水岭应用于每个图像帧而获得的,其中标记是通过以下方式提取的:首先通过时间跟踪生成一组初始标记,然后使用两种收缩方案完善标记:迭代自适应侵蚀和针对简化流域分割的验证。接下来,在第二阶段,我们使用马尔可夫随机场对从第一阶段获得的3-D分水岭体积之间的时空关系进行建模。然后,可以通过在贝叶斯框架内合并具有相似运动特性的分水岭体积来提取所需的视频对象。该方法的主要优点是它可以考虑每个分水岭体积中包含的全局运动信息。我们的实验表明,该方法具有从视频序列中提取运动物体的潜力。

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