DocumentCode :
963652
Title :
Interactive Volume Exploration for Feature Detection and Quantification in Industrial CT Data
Author :
Hadwiger, Markus ; Laura, F. ; Rezk-Salama, Christof ; Hollt, Thomas ; Geier, Georg ; Pabel, Thomas
Author_Institution :
VRVis Res. Center, Vienna
Volume :
14
Issue :
6
fYear :
2008
Firstpage :
1507
Lastpage :
1514
Abstract :
This paper presents a novel method for interactive exploration of industrial CT volumes such as cast metal parts, with the goal of interactively detecting, classifying, and quantifying features using a visualization-driven approach. The standard approach for defect detection builds on region growing, which requires manually tuning parameters such as target ranges for density and size, variance, as well as the specification of seed points. If the results are not satisfactory, region growing must be performed again with different parameters. In contrast, our method allows interactive exploration of the parameter space, completely separated from region growing in an unattended pre-processing stage. The pre-computed feature volume tracks a feature size curve for each voxel over time, which is identified with the main region growing parameter such as variance. A novel 3D transfer function domain over (density, feature.size, time) allows for interactive exploration of feature classes. Features and feature size curves can also be explored individually, which helps with transfer function specification and allows coloring individual features and disabling features resulting from CT artifacts. Based on the classification obtained through exploration, the classified features can be quantified immediately.
Keywords :
computerised tomography; data visualisation; engineering graphics; feature extraction; flaw detection; image classification; inspection; production engineering computing; rendering (computer graphics); 3D transfer function; cast metal part; defect detection; feature classification; feature detection; interactive industrial CT volume exploration; nondestructive testing; region growing; visualization-driven approach; volume rendering; Automotive engineering; Building materials; Computed tomography; Computer vision; Construction industry; Data visualization; Manufacturing industries; Metals industry; Nondestructive testing; Transfer functions; Index Terms— Multi-Dimensional Transfer Functions; Non-Destructive Testing; Region Growing; Volume Rendering; Algorithms; Computer Graphics; Equipment Failure Analysis; Imaging, Three-Dimensional; Industry; Materials Testing; Pattern Recognition, Automated; Tomography, X-Ray Computed; User-Computer Interface;
fLanguage :
English
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
Publisher :
ieee
ISSN :
1077-2626
Type :
jour
DOI :
10.1109/TVCG.2008.147
Filename :
4658169
Link To Document :
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