Representing the surface of complex objects, the samples resulting from their digitization can contain a very large number of points, endorsing simplification techniques, which analyse the relevance of the data. Simplification techniques also provide models with fewer points than the original ones. On the contrary the reconstruction of a surface, with simplified point cloud, must be close to the original. In this article, we develop a method of simplification reduce the number of scanned dense points, based on the density estimation and the notion of entropy. The performance of this approach is illustrated through experimental results and comparison with other simplification methods
The reconstruction of accurate freeform surface models of 3D scanned objects is a common task encoun...
As data acquisition technology continues to advance, the improvement and upgrade of the algorithms f...
In order to obtain a highly accurate profile of a measured three-dimensional (3D) free-form surface,...
Representing the surface of complex objects, the samples resulting from their digitization can conta...
Modelling and visualisation methods working directly with point-sampled geometry have developed into...
Abstract—For efficiently processing integration, registration, representation and recognition of lar...
While the reconstruction of 3D objects is increasingly used today, the simplification of 3D point cl...
In this article we will present a method simplifying 3D point clouds. This method is based on the Sh...
A novel fast simplification method for point-sampled statue model is proposed. Simplifying method fo...
This paper introduces a new technique to simplify a 3D point cloud sampled from an elevation surface...
Contemporary three-dimensional (3D) scanning devices are characterized by high speed and resolution....
Many computer vision approaches for point clouds processing consider 3D simplification as an importa...
Dense 3D visual mapping estimates as many as possible pixel depths, for each image. This results in ...
A point cloud as an information-intensive 3D representation usually requires a large amount of trans...
Point cloud models (PCMs) are 3D point datasets from 3D acquisition device. They are densely sampled...
The reconstruction of accurate freeform surface models of 3D scanned objects is a common task encoun...
As data acquisition technology continues to advance, the improvement and upgrade of the algorithms f...
In order to obtain a highly accurate profile of a measured three-dimensional (3D) free-form surface,...
Representing the surface of complex objects, the samples resulting from their digitization can conta...
Modelling and visualisation methods working directly with point-sampled geometry have developed into...
Abstract—For efficiently processing integration, registration, representation and recognition of lar...
While the reconstruction of 3D objects is increasingly used today, the simplification of 3D point cl...
In this article we will present a method simplifying 3D point clouds. This method is based on the Sh...
A novel fast simplification method for point-sampled statue model is proposed. Simplifying method fo...
This paper introduces a new technique to simplify a 3D point cloud sampled from an elevation surface...
Contemporary three-dimensional (3D) scanning devices are characterized by high speed and resolution....
Many computer vision approaches for point clouds processing consider 3D simplification as an importa...
Dense 3D visual mapping estimates as many as possible pixel depths, for each image. This results in ...
A point cloud as an information-intensive 3D representation usually requires a large amount of trans...
Point cloud models (PCMs) are 3D point datasets from 3D acquisition device. They are densely sampled...
The reconstruction of accurate freeform surface models of 3D scanned objects is a common task encoun...
As data acquisition technology continues to advance, the improvement and upgrade of the algorithms f...
In order to obtain a highly accurate profile of a measured three-dimensional (3D) free-form surface,...