Pascal Laube presents machine learning approaches for three key problems of reverse engineering of defective structured surfaces: parametrization of curves and surfaces, geometric primitive classification and inpainting of high-resolution textures. The proposed methods aim to improve the reconstruction quality while further automating the process. The contributions demonstrate that machine learning can be a viable part of the CAD reverse engineering pipeline
Industrial-plant CAD models are commonly repre-sented by triangular meshes, which do not preserve or...
Generative models that produce point clouds have emerged as a powerful tool to represent 3D surfaces...
The digital industrial revolution calls for smart manufacturing plants, i.e. plants that include sen...
Surface reconstruction, or reverse engineering of a surface, is the practice of combining data colle...
With the fast development of computer software, 3D computer aided design (CAD) and computer aided ma...
technical reportReverse engineering entails building a representation of an engineered object using ...
Reverse engineering (RE) has played a key role in producing low demands parts, especially with the r...
While performing mechanical reverse engineering, 3D reconstruction processes often encounter difficu...
In many areas of industry, it is desirable to create geometric models of existing objects for which ...
We describe new machine-learning-based methods to defeature CAD models for tetrahedral meshing. Usin...
The paper is focused on surface reconstruction techniques, developed to enhance the capability of a ...
The surface reconstruction problem, which consists in the search of the surface that best describes ...
The analysis of diffraction patterns obtained from machined surfaces can be used to characterise the...
The problem of Surface Reconstruction arises in many real world situations. We introduce in detail t...
Reverse engineering (RE) is a process to create computer aided design (CAD) models from the scanned ...
Industrial-plant CAD models are commonly repre-sented by triangular meshes, which do not preserve or...
Generative models that produce point clouds have emerged as a powerful tool to represent 3D surfaces...
The digital industrial revolution calls for smart manufacturing plants, i.e. plants that include sen...
Surface reconstruction, or reverse engineering of a surface, is the practice of combining data colle...
With the fast development of computer software, 3D computer aided design (CAD) and computer aided ma...
technical reportReverse engineering entails building a representation of an engineered object using ...
Reverse engineering (RE) has played a key role in producing low demands parts, especially with the r...
While performing mechanical reverse engineering, 3D reconstruction processes often encounter difficu...
In many areas of industry, it is desirable to create geometric models of existing objects for which ...
We describe new machine-learning-based methods to defeature CAD models for tetrahedral meshing. Usin...
The paper is focused on surface reconstruction techniques, developed to enhance the capability of a ...
The surface reconstruction problem, which consists in the search of the surface that best describes ...
The analysis of diffraction patterns obtained from machined surfaces can be used to characterise the...
The problem of Surface Reconstruction arises in many real world situations. We introduce in detail t...
Reverse engineering (RE) is a process to create computer aided design (CAD) models from the scanned ...
Industrial-plant CAD models are commonly repre-sented by triangular meshes, which do not preserve or...
Generative models that produce point clouds have emerged as a powerful tool to represent 3D surfaces...
The digital industrial revolution calls for smart manufacturing plants, i.e. plants that include sen...