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Inspection of Part Placement Within Containers Using Point Cloud Overlap Analysis for an Automotive Production Line

Title
Inspection of Part Placement Within Containers Using Point Cloud Overlap Analysis for an Automotive Production Line
Type
Article in International Conference Proceedings Book
Year
2024
Authors
Dias J.
(Author)
Other
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Nascimento R.
(Author)
Other
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Rocha C.
(Author)
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Germano Veiga
(Author)
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Armando Jorge Sousa
(Author)
FEUP
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Thomas U.
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Conference proceedings International
Pages: 677-686
32nd International Conference on Flexible Automation and Intelligent Manufacturing, FAIM 2023
Porto, 18 June 2023 through 22 June 2023
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Publicação em Scopus Scopus - 0 Citations
Other information
Authenticus ID: P-00Y-X69
Abstract (EN): Reliable operation of production lines without unscheduled disruptions is of paramount importance for ensuring the proper operation of automated working cells involving robotic systems. This article addresses the issue of preventing disruptions to an automotive production line that can arise from incorrect placement of aluminum car parts by a human operator in a feeding container with 4 indexing pins for each part. The detection of the misplaced parts is critical for avoiding collisions between the containers and a high pressure washing machine and also to avoid collisions between the parts and a robotic arm that is feeding parts to a air leakage inspection machine. The proposed inspection system relies on a 3D sensor for scanning the parts inside a container and then estimates the 6 DoF pose of the container followed by an analysis of the overlap percentage between each part reference point cloud and the 3D sensor data. When the overlap percentage is below a given threshold, the part is considered as misplaced and the operator is alerted to fix the part placement in the container. The deployment of the inspection system on an automotive production line for 22 weeks has shown promising results by avoiding 18 hours of disruptions, since it detected 407 containers having misplaced parts in 4524 inspections, from which 12 were false negatives, while no false positives were reported, which allowed the elimination of disruptions to the production line at the cost of manual reinspection of 0.27% of false negative containers by the operator.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 9
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