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Correcting geometric distortions in stereoscopic 3D imaging

机译:校正立体3D成像中的几何变形

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摘要

Motion in a distorted virtual 3D space may cause visually induced motion sickness. Geometric distortions in stereoscopic 3D can result from mismatches among image capture, display, and viewing parameters. Three pairs of potential mismatches are considered, including 1) camera separation vs. eye separation, 2) camera field of view (FOV) vs. screen FOV, and 3) camera convergence distance (i.e., distance from the cameras to the point where the convergence axes intersect) vs. screen distance from the observer. The effect of the viewer’s head positions (i.e., head lateral offset from the screen center) is also considered. The geometric model is expressed as a function of camera convergence distance, the ratios of the three parameter-pairs, and the offset of the head position. We analyze the impacts of these five variables separately and their interactions on geometric distortions. This model facilitates insights into the various distortions and leads to methods whereby the user can minimize geometric distortions caused by some parameter-pair mismatches through adjusting of other parameter pairs. For example, in postproduction, viewers can correct for a mismatch between camera separation and eye separation by adjusting their distance from the real screen and changing the effective camera convergence distance.
机译:变形的虚拟3D空间中的运动可能会导致视觉诱发的晕动病。立体3D中的几何变形可能是由图像捕获,显示和查看参数之间的不匹配导致的。考虑了三对潜在的失配,包括1)摄像机间距与眼睛间距,2)摄像机视野(FOV)与屏幕FOV,以及3)摄像机会聚距离(即,从摄像机到目标点的距离)会聚轴相交)与屏幕与观察者的距离。还应考虑观看者的头部位置(即,头部与屏幕中心的横向偏移)的影响。几何模型表示为相机会聚距离,三个参数对的比率以及磁头位置偏移的函数。我们分别分析了这五个变量的影响及其对几何变形的相互作用。该模型有助于深入了解各种失真,并提供了一些方法,使用户可以通过调整其他参数对来使由某些参数对不匹配引起的几何失真最小化。例如,在后期制作中,观众可以通过调整他们与真实屏幕的距离并更改有效的摄像机会聚距离,来纠正摄像机分离和眼睛分离之间的不匹配。

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