An online quality assessment framework for automated welding processes

被引:0
|
作者
H. Fronthaler
G. Croonen
J. Biber
M. Heber
M. Rüther
机构
[1] AIT Austrian Institute of Technology,Institute for Computer Graphics and Vision
[2] Graz Universityof Technology,undefined
关键词
Nondestructive testing; Hough transform; Splines; Dynamic time warping; Shape features;
D O I
暂无
中图分类号
学科分类号
摘要
Despite the broad adoption of robotic welding, automated quality assessment of the resulting welds is still in its infancy and therefore quality checks are commonly performed by human experts. In this study, we conduct quality testing simultaneously with the welding process (online). For this purpose, a camera positioned behind the welding head provides images of the weld pool and parts of the solidified bead, which is tracked in successive frames. We suggest a weld bead segmentation algorithm, which links the outcome of several local hough transforms with two spline functions in each frame. The actual quality assessment is based on shape features, which can easily be extracted from the segmented weld bead. We propose several distance measures (e.g., dynamic time warping) enabling a comparison between the currently observed weld bead and a reference. Additionally, we suggest variance-based ad hoc quality measures, making reference information expendable. A novel database featuring a large variety of welding tasks, materials and sources of error forms the basis of our experiments. An evaluation of the proposed online quality assessment framework yielding an equal error rate of less than 3 %, based on more than 250 single welds, corroborates the robustness of the approach.
引用
收藏
页码:1655 / 1664
页数:9
相关论文
共 50 条
  • [31] SYSTEM FOR AUTOMATED COMPUTER DESIGN OF RESISTANCE WELDING PROCESSES.
    Dolgopol'skii, B.S.
    Artsishevskii, Yu.Yu.
    Sokolov, V.S.
    Welding Production (English translation of Svarochnoe Proizvodstvo), 1983, 30 (09): : 44 - 45
  • [32] A SYSTEM FOR AUTOMATED COMPUTER DESIGN OF RESISTANCE-WELDING PROCESSES
    DOLGOPOLSKII, BS
    ARTSISHEVSKII, YY
    SOKOLOV, VS
    WELDING PRODUCTION, 1983, 30 (09): : 44 - 45
  • [33] Welding inspection automated vision systems improve quality
    Goldsberry, Clare
    Welding Design and Fabrication, 2008, 81 (02):
  • [34] ASDF: An Automated, Online Framework for Diagnosing Performance Problems
    Bare, Keith
    Kavulya, Soila P.
    Tan, Jiaqi
    Pan, Xinghao
    Marinelli, Eugene
    Kasick, Michael
    Gandhi, Rajeev
    Narasimhan, Priya
    ARCHITECTING DEPENDABLE SYSTEMS VII, 2010, 6420 : 201 - +
  • [35] A Framework for Comprehensive Automated Evaluation of Concurrent Online Checkers
    Saltarelli, Pietro
    Niazmand, Behrad
    Raik, Jaan
    Hariharan, Ranganathan
    Jervan, Gert
    Hollstein, Thomas
    2015 EUROMICRO CONFERENCE ON DIGITAL SYSTEM DESIGN (DSD), 2015, : 288 - 292
  • [36] AUTOMATED ONLINE RIA QUALITY-CONTROL
    PARSONS, G
    ROGERS, C
    LAFRANCE, A
    CLINICAL CHEMISTRY, 1983, 29 (06) : 1208 - 1208
  • [37] Automated quality assurance of online NIR analysers
    Aaljoki, K
    JOURNAL OF AUTOMATED METHODS & MANAGEMENT IN CHEMISTRY, 2005, (02): : 44 - 49
  • [38] Adaptive and Automated Online Assessment Evaluation System
    Dumal, P. A. A.
    Shanika, W. K. D.
    Pathinayake, S. A. D.
    Sandanayake, T. C.
    2017 11TH INTERNATIONAL CONFERENCE ON SOFTWARE, KNOWLEDGE, INFORMATION MANAGEMENT AND APPLICATIONS (SKIMA), 2017,
  • [39] A semi-automated approach to online assessment
    Jackson, D
    ITICSE 2000: PROCEEDINGS OF THE 5TH ANNUAL SIGCSE/SIGCUE CONFERENCE ON INNOVATION AND TECHNOLOGY IN COMPUTER SCIENCE EDUCATION, 2000, 32 (03): : 164 - 167
  • [40] Semi-automated approach to online assessment
    Jackson, David
    Proceedings of the Conference on Integrating Technology into Computer Science Education, ITiCSE, 2000, : 164 - 167