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ON PHOTOMETRIC ISSUES IN 3D VISUAL RECOGNITION FROM A SINGLE 2D IMAGE

机译:单个2D图像的3D视觉识别中的光度问题

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We describe the problem of recognition under changing illumination conditions and changing viewing positions from a computational and human vision perspective. On the computational side we focus on the mathematical problems of creating an equivalence class for images of the same 3D object undergoing certain groups of transformations-mostly those due to changing illumination, and briefly discuss those due to changing viewing positions. The computational treatment culminates in proposing a simple scheme for recognizing, via alignment, an image of a familiar object taken from a novel viewing position and a novel illumination condition. On the human vision aspect, the paper is motivated by empirical evidence inspired by Mooney images of faces that suggest a relatively high level of visual processing is involved in compensating for photometric sources of variability, and furthermore, that certain limitations on the admissible representations of image information may exist. The psychophysical observations and the computational results that follow agree in several important respects, such as the same (apparent) limitations on image representations. [References: 56]
机译:我们从计算和人类视觉的角度描述了在变化的照明条件和变化的观看位置下的识别问题。在计算方面,我们专注于为同一3D对象的图像创建等价类的数学问题,这些类经历了某些组的转换-大多数是由于光照变化而引起的,并简要讨论了由于改变观看位置而引起的那些。该计算处理最终提出了一种简单的方案,该方案通过对准来识别从新颖的观看位置和新颖的照明条件获取的熟悉对象的图像。在人类视觉方面,本文的灵感来自于人的门尼图像的经验证据,这些经验证据表明较高水平的视觉处理参与了对光度学可变性的补偿,此外,对图像的可容许表示形式的某些限制信息可能存在。随后的心理物理观察和计算结果在几个重要方面都达成了共识,例如对图像表示的相同(明显)限制。 [参考:56]

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