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Stereoscopic 3D geometric distortions analyzed from the viewer’s point of view

机译:从观众的角度分析立体三维几何扭曲

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Stereoscopic 3D (S3D) geometric distortions can be introduced by mismatches among image capture, display, and viewing configurations. In previous work of S3D geometric models, geometric distortions have been analyzed from a third-person perspective based on the binocular depth cue (i.e., binocular disparity). A third-person perspective is different from what the viewer sees since monocular depth cues (e.g., linear perspective, occlusion, and shadows) from different perspectives are different. However, depth perception in a 3D space involves both monocular and binocular depth cues. Geometric distortions that are solely predicted by the binocular depth cue cannot describe what a viewer really perceives. In this paper, we combine geometric models and retinal disparity models to analyze geometric distortions from the viewer’s perspective where both monocular and binocular depth cues are considered. Results show that binocular and monocular depth-cue conflicts in a geometrically distorted S3D space. Moreover, user-initiated head translations averting from the optimal viewing position in conventional S3D displays can also introduce geometric distortions, which are inconsistent with our natural 3D viewing condition. The inconsistency of depth cues in a dynamic scene may be a source of visually induced motions sickness.
机译:立体3D(S3D)几何失真可以通过图像捕获,显示和观看配置中的不匹配引入。在先前的S3D几何模型的工作中,基于双目深度提示(即双目视差)从第三人角透视分析几何失真。第三人称的观点与来自不同观点的单眼深度提示(例如,线性透视,遮挡和阴影)不同的观察者不同。然而,3D空间中的深度感知涉及单眼和双目深度线索。单眼深度提示单独预测的几何扭曲无法描述观众真正感知的内容。在本文中,我们将几何模型和视网膜差异模型组合以分析来自观察者的观点的几何失真,其中考虑单眼和双目深度线索。结果表明,几何扭曲的S3D空间中双目和单眼深度冲突。此外,从传统S3D显示器中的最佳观看位置vertity的用户发起的头部翻译也可以引入几何失真,这与我们的自然3D观看条件不一致。动态场景中深度线索的不一致可能是视觉引起的运动疾病的源泉。

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