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Projection-based visualization of tangential deformation of nonrigid surface by deformation estimation using infrared texture

机译:基于投影的非刚性表面切向变形可视化,通过红外纹理变形估算

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摘要

In this paper, we propose a projection-based mixed reality system that visualizes the tangential deformation of a nonrigid surface by superimposing graphics directly onto the surface by projected imagery. The superimposed graphics are deformed according to the surface deformation. To achieve this goal, we develop a computer vision technique that estimates the tangential deformation by measuring the frame-by-frame movement of an infrared (IR) texture on the surface. IR ink, which can be captured by an IR camera under IR light, but is invisible to the human eye, is used to provide the surface texture. Consequently, the texture does not degrade the image quality of the augmented graphics. The proposed technique measures individually the surface motion between two successive frames. Therefore, it does not suffer from occlusions caused by interactions and allows touching, pushing, pulling, and pinching, etc. The moving least squares technique interpolates the measured result to estimate denser surface deformation. The proposed method relies only on the apparent motion measurement; thus, it is not limited to a specific deformation characteristic, but is flexible for multiple deformable materials, such as viscoelastic and elastic materials. Experiments confirm that, with the proposed method, we can visualize the surface deformation of various materials by projected illumination, even when the user's hand occludes the surface from the camera.
机译:在本文中,我们提出了一种基于投影的混合现实系统,该系统通过将图形直接通过投影图像叠加到非刚性表面的切向变形来可视化。叠加的图形根据表面变形而变形。为实现此目标,我们开发了一种计算机视觉技术,该技术通过测量表面上的红外(IR)纹理的逐帧移动来估计切向变形。 IR墨水可用于提供表面纹理,IR墨水可由IR相机在IR光下捕获,但肉眼不可见。因此,纹理不会降低增强图形的图像质量。所提出的技术分别测量两个连续帧之间的表面运动。因此,它不会因交互作用而闭塞,并且可以进行触摸,推动,拉动和捏合等操作。移动最小二乘法可对测量结果进行插值,以估计更密集的表面变形。所提出的方法仅依赖于视在运动测量。因此,它不限于特定的变形特性,而是对于多种可变形材料如粘弹性和弹性材料具有柔性。实验证实,通过所提出的方法,即使用户的手遮挡了相机的表面,我们也可以通过投射照明来可视化各种材料的表面变形。

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