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3D Stereo Imaging Technology From 2D Image Sequence

机译:从2D图像序列的3D立体化成像技术

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摘要

In this paper, we will analyze the depth factor in general monocular video sequence. We can distinguish foreground from background without additional information and then create the binocular image by shifting fore ground pixels. By applying CID method, we will get the strength of the sharpness and contrast from image by evaluating the fairness of the region based on property of region color, and then a depth map of the image can be generated. An optical flow method is also applied to search and compare the block motion status between previous and current frame. The motion vector of block can be estimated by calculating the similarity of blocks based on least square error, and then the farness of block can be estimated by the amount of block motion. Finally, the static and motion depth information are integrated to estimate more accurate depth map. By shifting foreground pixel by depth amount, a binocular image pair can be created. We will perceive 3D stereo feeling without putting glasses on by means of a parallax barrier stereoscopic display.
机译:在本文中,我们将分析一般单目视频序列中的深度因子。我们可以在没有附加信息的情况下将前景区分开,然后通过移位前面像素来创建双目图像。通过应用CID方法,通过基于区域颜色的性质评估区域的公平性,我们将获得锐度的强度和与图像的对比度,然后可以生成图像的深度图。还应用光学流量方法来搜索和比较先前和当前帧之间的块运动状态。可以通过基于最小方误差计算块的相似性来估计块的运动矢量,然后可以通过块运动的量来估计块的信心。最后,静态和运动深度信息被集成以估计更准确的深度图。通过深度量的前景像素转换前景像素,可以创建双目图像对。我们将通过视差屏障立体显示屏感知3D立体声感觉,而不会戴上眼镜。

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