Decoupling shading and reflectance from complex scene-images is a long-standing problem in computer vision. We introduce a framework for decomposing an image into the product of an illumination component and a reflectance component. Due to the ill-posed nature of the problem, prior information on shading and reflectance is mandatory. The proposed method adopts the premise that pixels in a region with similar chromaticity values should have the same reflectance. This assumption was used to minimize the l2 norm of the local per-pixel reflectance gradients to extract the shading and reflectance components. To obtain smooth chromatic regions, texture was treated in a new style. Texture was removed in the first step of the algorithm and the smoo...
In real world, a scene is composed by many characteristics. Intrinsic images represent these charact...
The field of computer vision has grown enormously in the last decade, and significant progress has b...
A technique for extracting intrinsic images, including the reflectance and illumination images, from...
International audienceFor many computational photography applications, the lighting and materials in...
The intrinsic image composed of reflectance and shading images plays important roles in various comp...
Figure 1: Our algorithm decomposes an input image into its intrinsic images without user interaction...
[[abstract]]An image is often modeled as a product of two principal components: illumination and ref...
We present a model for intrinsic decomposition of RGB-D images. Our approach analyzes a single RGB-D...
In this paper, we present a novel high-quality intrinsic image recovery approach using optimization ...
Abstract Shading and reflectance images, which are commonly called intrinsic images, are useful in m...
International audienceIntrinsic images are a mid-level representation of an image that decompose the...
We propose a data-driven approach for intrinsic image decomposition, which is the process of inferri...
Identifying sparse salient structures from dense pixels is a longstanding problem in visual computin...
Given the importance of color processing in computer vision and computer graphics, estimating and re...
International audienceIn this paper, a novel method to decompose an image into “intrinsic images” is...
In real world, a scene is composed by many characteristics. Intrinsic images represent these charact...
The field of computer vision has grown enormously in the last decade, and significant progress has b...
A technique for extracting intrinsic images, including the reflectance and illumination images, from...
International audienceFor many computational photography applications, the lighting and materials in...
The intrinsic image composed of reflectance and shading images plays important roles in various comp...
Figure 1: Our algorithm decomposes an input image into its intrinsic images without user interaction...
[[abstract]]An image is often modeled as a product of two principal components: illumination and ref...
We present a model for intrinsic decomposition of RGB-D images. Our approach analyzes a single RGB-D...
In this paper, we present a novel high-quality intrinsic image recovery approach using optimization ...
Abstract Shading and reflectance images, which are commonly called intrinsic images, are useful in m...
International audienceIntrinsic images are a mid-level representation of an image that decompose the...
We propose a data-driven approach for intrinsic image decomposition, which is the process of inferri...
Identifying sparse salient structures from dense pixels is a longstanding problem in visual computin...
Given the importance of color processing in computer vision and computer graphics, estimating and re...
International audienceIn this paper, a novel method to decompose an image into “intrinsic images” is...
In real world, a scene is composed by many characteristics. Intrinsic images represent these charact...
The field of computer vision has grown enormously in the last decade, and significant progress has b...
A technique for extracting intrinsic images, including the reflectance and illumination images, from...