Abstract. In this paper, we address the problem of photometric invariance in multispectral imaging making use of an optimisation approach based upon the dichromatic model. In this manner, we can cast the problem of recovering the spectra of the illuminant, the surface reflectance and the shading and specular factors in a structural optimisation setting. Making use of the additional informa-tion provided by multispectral imaging and the structure of image patches, we recover the dichromatic parameters of the scene. Thus, we formulate a target cost function combining the dichromatic error and the smoothness priors for surfaces with uniform reflectance. The dichromatic parameters are recovered through min-imising this cost function in a coordi...
This paper presents a novel approach for estimating the light direction, shape, and reflectance para...
This work investigates a core problem in computer vision: obtaining, from a single view, the geometr...
This paper presents a novel approach for estimating the light direction, shape, and reflectance para...
This thesis addresses the issues of spectrum representation, photometric invariants and shape recove...
International audienceThis work introduces a method to estimate reflectance, shading, and specularit...
International audienceThis work introduces a method to estimate reflectance, shading, and specularit...
This paper presents a method for recovering the reflectance and shape of a surface from a single hyp...
Abstract—In this paper, we address the problem of efficiently recovering the reflectance parameters ...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
Abstract—In this paper, we address the problem of efficiently recovering the reflectance parameters ...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In multispectral imaging system, one of the most important tasks is to accurately reconstruct the sp...
This paper presents a novel approach for estimating the light direction, shape, and reflectance para...
This work investigates a core problem in computer vision: obtaining, from a single view, the geometr...
This paper presents a novel approach for estimating the light direction, shape, and reflectance para...
This thesis addresses the issues of spectrum representation, photometric invariants and shape recove...
International audienceThis work introduces a method to estimate reflectance, shading, and specularit...
International audienceThis work introduces a method to estimate reflectance, shading, and specularit...
This paper presents a method for recovering the reflectance and shape of a surface from a single hyp...
Abstract—In this paper, we address the problem of efficiently recovering the reflectance parameters ...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
Abstract—In this paper, we address the problem of efficiently recovering the reflectance parameters ...
In this paper, we propose an approach for the recovery of the dichromatic model from two hyperspectr...
In multispectral imaging system, one of the most important tasks is to accurately reconstruct the sp...
This paper presents a novel approach for estimating the light direction, shape, and reflectance para...
This work investigates a core problem in computer vision: obtaining, from a single view, the geometr...
This paper presents a novel approach for estimating the light direction, shape, and reflectance para...