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A Theory Of Frequency Domain Invariants: Spherical Harmonic Identities for BRDF/Lighting Transfer and Image Consistency

机译:频域不变性理论:BRDF /照明传输和图像一致性的球谐特性

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This paper develops a theory of frequency domain invariants in computer vision. We derive novel identities using spherical harmonics, which are the angular frequency domain analog to common spatial domain invariants such as reflectance ratios. These invariants are derived from the spherical harmonic convolution framework for reflection from a curved surface. Our identities apply in a number of canonical cases, including single and multiple images of objects under the same and different lighting conditions. One important case we consider is two different glossy objects in two different lighting environments. For this case, we derive a novel identity, independent of the specific lighting configurations or BRDFs, that allows us to directly estimate the fourth image if the other three are available. The identity can also be used as an invariant to detecttampering in the images.While this paper is primarily theoretical, it has the potential to lay the mathematical foundations for two important practical applications. First, we can develop more general algorithms for inverse rendering problems, which can directly relight and change material properties by transferring the BRDF or lighting from another object or illumination. Second, we can check the consistency of an image, to detect tampering or image splicing.
机译:本文提出了计算机视觉中频域不变性的理论。我们使用球谐函数得出新的恒等式,球谐函数是类似于常见空间域不变性(例如反射率)的角频域模拟。这些不变量来自球形谐波卷积框架,用于从曲面反射。我们的身份适用于多种规范情况,包括在相同和不同光照条件下的单个或多个物体图像。我们考虑的一种重要情况是在两个不同的照明环境中的两个不同的光泽对象。对于这种情况,我们得出了一个新颖的身份,与特定的照明配置或BRDF无关,如果其他三个图像可用,则我们可以直接估计第四个图像。同一性也可以用作检测图像中篡改的不变量。虽然本文主要是理论上的,但它有可能为两个重要的实际应用奠定数学基础。首先,我们可以针对逆渲染问题开发更通用的算法,该算法可以通过从另一个对象或照明传递BRDF或照明来直接重新照明并更改材质属性。其次,我们可以检查图像的一致性,以检测篡改或图像拼接。

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