Recovering Transparent Shape from Time-of-Flight Distortion

Kenichiro Tanaka, Y. Mukaigawa, Hiroyuki Kubo, Y. Matsushita, Y. Yagi
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引用次数: 36

Abstract

This paper presents a method for recovering shape and normal of a transparent object from a single viewpoint using a Time-of-Flight (ToF) camera. Our method is built upon the fact that the speed of light varies with the refractive index of the medium and therefore the depth measurement of a transparent object with a ToF camera may be distorted. We show that, from this ToF distortion, the refractive light path can be uniquely determined by estimating a single parameter. We estimate this parameter by introducing a surface normal consistency between the one determined by a light path candidate and the other computed from the corresponding shape. The proposed method is evaluated by both simulation and real-world experiments and shows faithful transparent shape recovery.
从飞行时间失真中恢复透明形状
本文提出了一种利用ToF (Time-of-Flight)相机从单视点恢复透明物体形状和法线的方法。我们的方法是建立在这样一个事实,即光速随介质的折射率而变化,因此用ToF相机测量透明物体的深度可能会失真。我们证明,从这种ToF畸变中,可以通过估计单个参数来唯一地确定折射光路。我们通过引入由光路候选者确定的表面法线一致性和由相应形状计算的表面法线一致性来估计该参数。通过仿真和实际实验对该方法进行了验证,结果表明该方法具有较好的透明形状恢复效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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