首页> 外文会议>European Conference on Computer Vision(ECCV 2004) pt.4; 20040511-20040514; Prague; CZ >Separating Transparent Layers through Layer Information Exchange
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Separating Transparent Layers through Layer Information Exchange

机译:通过层信息交换分离透明层

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In this paper we present an approach for separating two transparent layers in images and video sequences. Given two initial unknown physical mixtures, I_1 and I_2, of real scene layers, L_1 and L_2, we seek a layer separation which minimizes the structural correlations across the two layers, at every image point. Such a separation is achieved by transferring local grayscale structure from one image to the other wherever it is highly correlated with the underlying local grayscale structure in the other image, and vice versa. This bi-directional transfer operation, which we call the "layer information exchange", is performed on diminishing window sizes, from global image windows (i.e., the entire image), down to local image windows, thus detecting similar grayscale structures at varying scales across pixels. We show the applicability of this approach to various real-world scenarios, including image and video transparency separation. In particular, we show that this approach can be used for separating transparent layers in images obtained under different polarizations, as well as for separating complex non-rigid transparent motions in video sequences. These can be done without prior knowledge of the layer mixing model (simple additive, alpha-mated composition with an unknown alpha-map, or other), and under unknown complex temporal changes (e.g., unknown varying lighting conditions).
机译:在本文中,我们提出了一种在图像和视频序列中分离两个透明层的方法。给定真实场景层L_1和L_2的两个初始未知物理混合I_1和I_2,我们寻求在每个图像点上使两个层之间的结构相关性最小的层分离。这种分离是通过将局部灰度结构从一个图像转移到另一图像而实现的,无论该位置与另一图像中的基础局部灰度结构高度相关,反之亦然。这种双向传输操作,我们称为“层信息交换”,是在缩小的窗口大小上执行的,从全局图像窗口(即整个图像)到局部图像窗口,从而以不同的比例检测相似的灰度结构跨像素。我们展示了这种方法在各种实际场景中的适用性,包括图像和视频透明度的分离。特别地,我们表明该方法可用于分离在不同偏振下获得的图像中的透明层,以及用于分离视频序列中复杂的非刚性透明运动。这些可以在没有层混合模型的先验知识(简单的添加剂,具有未知的阿尔法图的阿尔法配合的合成物,或其他)的情况下,并且在未知的复杂时间变化(例如,未知的变化的照明条件)下完成。

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