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Efficient Viewer-Centric Depth Adjustment Based on Virtual Fronto-Parallel Planar Projection in Stereo 3D Images

机译:立体3D图像中基于虚拟前-平行平面投影的有效查看者中心深度调整

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摘要

This paper presents an efficient method for adjusting the 3D depth of an object including as much as a whole scene in stereo 3D images by utilizing a virtual fronto-parallel planar projection in the 3D space perceived by a viewer. The proposed method just needs to establish object correspondence instead of the accurate estimation of the disparity field or point correspondence. We simulate the depth adjustment of a 3D point perceived by a viewer through a corresponding pair of points on the stereo 3D images by moving the virtual fronto-parallel plane on which the left and right points are projected. We show that the resulting transformation of image coordinates of the points can be simply expressed by three values of a scale factor and two translations that depend on one parameter for the depth adjustment. The experimental results demonstrate the feasibility of the proposed approach that yields less visual fatigue and smaller 3D shape distortion than the conventional parallax adjustment method. The overall procedure can be efficiently applied to each frame of a stereo video without causing any artifact.
机译:本文提出了一种有效的方法,可通过利用观看者感知的3D空间中的虚拟平行平行平面投影来调整立体3D图像中包括整个场景的物体的3D深度。所提出的方法仅需要建立对象对应关系而不是视差场或点对应关系的准确估计。我们通过移动投影左,右点的虚拟正平行平面,来模拟观看者通过立体3D图像上相应的一对点感知到的3D点的深度调整。我们表明,结果的点图像坐标转换可以简单地由比例因子的三个值和两个平移来表达,这两个平移取决于深度调整的一个参数。实验结果证明了该方法的可行性,该方法比传统的视差调整方法产生更少的视觉疲劳和更小的3D形状失真。整个过程可以有效地应用于立体声视频的每一帧而不会引起任何伪像。

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