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The Information Available to a Moving Observer on Shape with Unknown, Isotropic BRDFs

机译:具有未知的各向同性BRDF的形状上运动的观察者可获得的信息

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摘要

Psychophysical studies show motion cues inform about shape even with unknown reflectance. Recent works in computer vision have considered shape recovery for an object of unknown BRDF using light source or object motions. This paper proposes a theory that addresses the remaining problem of determining shape from the (small or differential) motion of the camera, for unknown isotropic BRDFs. Our theory derives a differential stereo relation that relates camera motion to surface depth, which generalizes traditional Lambertian assumptions. Under orthographic projection, we show differential stereo may not determine shape for general BRDFs, but suffices to yield an invariant for several restricted (still unknown) BRDFs exhibited by common materials. For the perspective case, we show that differential stereo yields the surface depth for unknown isotropic BRDF and unknown directional lighting, while additional constraints are obtained with restrictions on the BRDF or lighting. The limits imposed by our theory are intrinsic to the shape recovery problem and independent of choice of reconstruction method. We also illustrate trends shared by theories on shape from differential motion of light source, object or camera, to relate the hardness of surface reconstruction to the complexity of imaging setup.
机译:心理物理学研究表明,即使反射率未知,运动线索也可以告知形状。计算机视觉的最新工作已经考虑了使用光源或物体运动对未知BRDF的物体进行形状恢复。本文提出了一种理论,该理论解决了对于未知的各向同性BRDF,根据相机的(小的或微分的)运动确定形状的剩余问题。我们的理论推导了将相机运动与表面深度相关联的微分立体关系,从而概括了传统的朗伯假设。在正交投影下,我们显示出差分立体可能无法确定一般BRDF的形状,但足以产生几种常见材料所显示的受限(仍未知)BRDF的不变性。对于透视情况,我们表明差分立体产生未知的各向同性BRDF和未知的定向照明的表面深度,而在BRDF或照明的限制下获得了其他约束。我们的理论所施加的限制是形状恢复问题所固有的,并且与重建方法的选择无关。我们还说明了光源,物体或相机的差动引起的形状理论共享的趋势,以将表面重建的硬度与成像设置的复杂性联系起来。

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