Decoupling local geometric features from the spatial location of a mesh is crucial for feature-preserving mesh denoising. This paper focuses on first order features, i.e., facet normals, and presents a simple yet effective anisotropic mesh denoising framework via normal field denoising. Unlike previous denoising methods based on normal filtering, which process normals defined on the Gauss sphere, our method considers normals as a surface signal defined over the original mesh. This allows the design of a novel bilateral normal filter that depends on both spatial distance and signal distance. Our bilateral filter is a more natural extension of the elegant bilateral filter for image denoising than those used in previous bilateral mesh denoisin...
Abstract We present a simple denoising technique for geometric data rep-resented as a semiregular me...
The joint bilateral filter, which enables feature-preserving signal smoothing according to the struc...
In this paper, we propose a new and powerful mesh/soup denoising technique. Our approach is inspired...
In this paper, we propose a feature-preserving mesh denoising algorithm which is effective, simple a...
The joint bilateral filter is a variant of the standard bilateral filter, where the range kernel is ...
The joint bilateral filter is a variant of the standard bilateral filter, where the range kernel is ...
In this project, bilateral filter adapted for mesh denoising has been implemented and specific metr...
Recent 3D reconstruction algorithms are able to generate colored meshes with high resolution details...
Abstract We propose in this paper a robust surface mesh denoising method that can effectively remove...
During a surface acquisition process using 3D scanners, noise is inevitable and an important step in...
This paper proposes a new noise filtering method inspired by Bilateral filter (BF) and non-local mea...
In this paper, we introduce a feature-preserving denoising algorithm. It is built on the premise tha...
Abstract—We present a generalization of the bilateral filter that can be applied to feature-preservi...
This paper proposes a denoising algorithm which performs non-local means bilateral filtering. As exi...
Figure 1: From left to right: initial surface, surface corrupted by Gaussian noise in random directi...
Abstract We present a simple denoising technique for geometric data rep-resented as a semiregular me...
The joint bilateral filter, which enables feature-preserving signal smoothing according to the struc...
In this paper, we propose a new and powerful mesh/soup denoising technique. Our approach is inspired...
In this paper, we propose a feature-preserving mesh denoising algorithm which is effective, simple a...
The joint bilateral filter is a variant of the standard bilateral filter, where the range kernel is ...
The joint bilateral filter is a variant of the standard bilateral filter, where the range kernel is ...
In this project, bilateral filter adapted for mesh denoising has been implemented and specific metr...
Recent 3D reconstruction algorithms are able to generate colored meshes with high resolution details...
Abstract We propose in this paper a robust surface mesh denoising method that can effectively remove...
During a surface acquisition process using 3D scanners, noise is inevitable and an important step in...
This paper proposes a new noise filtering method inspired by Bilateral filter (BF) and non-local mea...
In this paper, we introduce a feature-preserving denoising algorithm. It is built on the premise tha...
Abstract—We present a generalization of the bilateral filter that can be applied to feature-preservi...
This paper proposes a denoising algorithm which performs non-local means bilateral filtering. As exi...
Figure 1: From left to right: initial surface, surface corrupted by Gaussian noise in random directi...
Abstract We present a simple denoising technique for geometric data rep-resented as a semiregular me...
The joint bilateral filter, which enables feature-preserving signal smoothing according to the struc...
In this paper, we propose a new and powerful mesh/soup denoising technique. Our approach is inspired...