Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision
The inspection of pipe inside is very important so as to ensure the safety of pipe transmission. The pipe defect detection method based on inside 3D points acquired by circle structured light vision system was discussed in this paper. Based on the characteristics of 3D points inside a pipe acquired...
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2013-01-01
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Series: | Advances in Mechanical Engineering |
Online Access: | https://doi.org/10.1155/2013/670487 |
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doaj-b4fe787482154fa0a76db7d29937ab1c2020-11-25T03:03:22ZengSAGE PublishingAdvances in Mechanical Engineering1687-81322013-01-01510.1155/2013/67048710.1155_2013/670487Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light VisionWang YingJin CuiyunZhang YanhuiThe inspection of pipe inside is very important so as to ensure the safety of pipe transmission. The pipe defect detection method based on inside 3D points acquired by circle structured light vision system was discussed in this paper. Based on the characteristics of 3D points inside a pipe acquired by circle structured light, a method by which pipe inner surface convex defect and pit defect were identified by the normal vector angle between adjacent points change on the same circle was proposed. A distance constraint between each pair of corresponding adjacent two points was proposed in order to recognize holes in the pipe inside. Based on Delaunay triangulation principle, the triangulation method for pipe inner surface circle structured light vision 3D points with hole and without hole was discussed and 3D reconstruction of the pipe was then realized. On the VC++ 6.0 software platform, pipe inner surface defect simulation data, hole simulation data and real 3D data were used to test the correctness of pipe defect identification method.https://doi.org/10.1155/2013/670487 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Wang Ying Jin Cuiyun Zhang Yanhui |
spellingShingle |
Wang Ying Jin Cuiyun Zhang Yanhui Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision Advances in Mechanical Engineering |
author_facet |
Wang Ying Jin Cuiyun Zhang Yanhui |
author_sort |
Wang Ying |
title |
Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision |
title_short |
Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision |
title_full |
Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision |
title_fullStr |
Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision |
title_full_unstemmed |
Pipe Defect Detection and Reconstruction Based on 3D Points Acquired by the Circular Structured Light Vision |
title_sort |
pipe defect detection and reconstruction based on 3d points acquired by the circular structured light vision |
publisher |
SAGE Publishing |
series |
Advances in Mechanical Engineering |
issn |
1687-8132 |
publishDate |
2013-01-01 |
description |
The inspection of pipe inside is very important so as to ensure the safety of pipe transmission. The pipe defect detection method based on inside 3D points acquired by circle structured light vision system was discussed in this paper. Based on the characteristics of 3D points inside a pipe acquired by circle structured light, a method by which pipe inner surface convex defect and pit defect were identified by the normal vector angle between adjacent points change on the same circle was proposed. A distance constraint between each pair of corresponding adjacent two points was proposed in order to recognize holes in the pipe inside. Based on Delaunay triangulation principle, the triangulation method for pipe inner surface circle structured light vision 3D points with hole and without hole was discussed and 3D reconstruction of the pipe was then realized. On the VC++ 6.0 software platform, pipe inner surface defect simulation data, hole simulation data and real 3D data were used to test the correctness of pipe defect identification method. |
url |
https://doi.org/10.1155/2013/670487 |
work_keys_str_mv |
AT wangying pipedefectdetectionandreconstructionbasedon3dpointsacquiredbythecircularstructuredlightvision AT jincuiyun pipedefectdetectionandreconstructionbasedon3dpointsacquiredbythecircularstructuredlightvision AT zhangyanhui pipedefectdetectionandreconstructionbasedon3dpointsacquiredbythecircularstructuredlightvision |
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1724685982889934848 |