• Aucun résultat trouvé

Parametric active contour for weld defects boundary extraction in radiographic testing

N/A
N/A
Protected

Academic year: 2021

Partager "Parametric active contour for weld defects boundary extraction in radiographic testing"

Copied!
1
0
0

Texte intégral

(1)

Parametric active contour for weld defects boundary extraction in radiographic testing

A. B. Goumeidane; M. Khamadja; N. Nacereddine; F. Mekhalfa

Abstract

Snakes, or active contours, are used extensively in computer vision and image processing applications, particularly to locate object boundaries. Problems associated with initialization and poor convergences to boundary concavities have aroused, which restricts their utility. This paper presents a new approach to deal with the defects contours estimation problem in radiographic images using parametric active contours. In this approach we exploit the performance of the GVF as external force and enhance it by joining to it an external adaptive pressure forces which speeds up to the snake progression, makes it less sensitive to initialization and provides capability of tracking the concavities

.

Proc. SPIE 6356, Eighth International Conference on Quality Control by Artificial Vision, 63560R

Références

Documents relatifs

This paper presents an adaptive probabilistic region-based deformable model using an explicit representation that aims to extract automatically defects from

Abstract : In this paper, we use the active contour models (Snakes) for edge detection and segmentation of weld defects in radiographic images.. Gradient Vector Flow snakes enhance

In this paper, we use the active contour models (Snakes) for edge detection and segmentation of weld defects in radiographic images.. Gradient Vector Flow snakes enhance

Also the level set function is easily initialized with a binary function, which is more efficient to construct than the widely used signed distance function (SDF). The

In this approach we exploit the performance of the GVF as external force and enhance it by joining to it external adaptive pressure forces which bring speed to the snake evolution

In this approach we exploit the performance of the GVF as external force and enhance it by joining to it external adaptive pressure forces which bring speed

In this approach we exploit the performance of the GVF as external force and enhance it by joining to it an external adaptive pressure forces which speeds up to the snake

In this approach we exploit the performance of the Gradient Vector Flow (GVF) as external force and enhance it by adding external adaptive pressure forces (APF) which speeds up