3D object recognition is performed using a scale and orientation invariant feature extraction method and a scale and orientation invariant topological representation. 3D surfaces are represented by sparse, repeatable, informative and semantically meaningful 3D surface structures, which are called multiscale features. These features are extracted with their scale (metric size and resolution) using the classified scale-space of 3D surface curvatures. Triplets of these features are used to represent the surface topologies invariant to transformation (scaling, rotation, translation) and geometric hashing is used for object recognition. Scaled and both scaled and occluded versions of range images from a 3D object database are tested and the expe...
A feature detector and a feature descriptor are presented, which are applicable to 3D range data. Th...
This paper addresses the problem of extracting certain types of surfaces for 3-dimensional object re...
Three-dimensional object recognition and localization are the central problems for many applications...
In this thesis, a generic, scale and resolution invariant method to extract 3D features from 3D surf...
An algorithm is proposed for 3D object representation using generic 3D features which are transforma...
Using transform invariant 3D fatures obtained from a database of 3D range images, geometric hashing ...
This thesis examines an approach to the representation of 3-D objects based on multi-scale surface p...
Object recognition is one of the most important problems in computer vision. Traditional object reco...
An algorithm is proposed to extract transformation and scale invariant 3D fundamental elements from ...
In this paper, we present a method for extracting salient local features from 3D models using surfac...
We describe an approach to the classification of 3-D objects using a multi-scale representation. Thi...
This work focuses on the extraction of features from dense range images for object recognition. The ...
The recognition of free-form 3-D objects using multi-scale features recovered from 3-D models, and b...
We describe an approach to the classification of 3-D objects using a multi-scale representation. Thi...
Abstract. Despite the ubiquitous use of range images in various com-puter vision applications, littl...
A feature detector and a feature descriptor are presented, which are applicable to 3D range data. Th...
This paper addresses the problem of extracting certain types of surfaces for 3-dimensional object re...
Three-dimensional object recognition and localization are the central problems for many applications...
In this thesis, a generic, scale and resolution invariant method to extract 3D features from 3D surf...
An algorithm is proposed for 3D object representation using generic 3D features which are transforma...
Using transform invariant 3D fatures obtained from a database of 3D range images, geometric hashing ...
This thesis examines an approach to the representation of 3-D objects based on multi-scale surface p...
Object recognition is one of the most important problems in computer vision. Traditional object reco...
An algorithm is proposed to extract transformation and scale invariant 3D fundamental elements from ...
In this paper, we present a method for extracting salient local features from 3D models using surfac...
We describe an approach to the classification of 3-D objects using a multi-scale representation. Thi...
This work focuses on the extraction of features from dense range images for object recognition. The ...
The recognition of free-form 3-D objects using multi-scale features recovered from 3-D models, and b...
We describe an approach to the classification of 3-D objects using a multi-scale representation. Thi...
Abstract. Despite the ubiquitous use of range images in various com-puter vision applications, littl...
A feature detector and a feature descriptor are presented, which are applicable to 3D range data. Th...
This paper addresses the problem of extracting certain types of surfaces for 3-dimensional object re...
Three-dimensional object recognition and localization are the central problems for many applications...