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Feature Estimation and Registration of Point Clouds in Reverse Engineering

Received: 24 March 2017    Accepted: 8 April 2017    Published: 30 October 2017
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Abstract

Cultural relic is the carrier of information, such as production, life, science and technology, art and so on. However, due to natural and man-made reasons, artifacts are often destroyed. Excavation site is the most common variety of cultural relics, the need for cultural relics repair. Because the artifacts are generally made on the rotating disk, so the object of this study is the rotating debris. The geometric characteristics of the rotating body are the rotation axis, the contour line, the radius of rotation and the angle of fit. Estimate the overall characteristics of the rotary body have important reference value for computer aided restoration of cultural relics. The efficiency and precision of the axis of rotation, contour is estimated by different methods are different, which will directly affect the follow-up work of this paper focuses on the stitching, from the axis of rotation estimation, contour calculation, rotation radius and central angle calculation is discussed.

Published in International Journal of Mechanical Engineering and Applications (Volume 5, Issue 5)
DOI 10.11648/j.ijmea.20170505.17
Page(s) 282-286
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Cultural Relic Restoration, Revolving Body, Rotation Axis, Contour, Radius of Gyration

References
[1] S. Ben Yacoub and Ch. Menard, Robust axis determination for rotational symmetric objects out of range data. Burger and Burge [Burge97], pages 197-201.
[2] R. Sablatnig and M. Kampel, Model-Based Registration of Front-and Backviews of rotational symmetric objects, Computer Vision and Image Understanding, 2002.
[3] R. Halir Estimation of the axis rotational of fragements of archaeological pottery, Burger and Burge [Burge97], pages 175-184.
[4] Zhang Zongxia. Research and implementation of classification and retrieval of cultural relic. Master Thesis of Shandong University, 2005.
[5] Pottmann, H., Peternell, M., Ravani, B., An introduction to line geometry with applications, Computer Aided Design 31, 1999, 3-16.
[6] Park H, Lee J. H. B-spline curve fitting based on adaptive curve refinement using dominant points [J]. Computer Aided Design, 2007, 39(6): 439-451.
[7] Saint-Marc P., Rom H., Medioni G., B-spline contour representment and symmetry detection [J]. IEEE Transactions on Pattern Analysis and Machine Inteligence, 1993, 15(11): 1191-1197.
[8] Li W., Xu S., Zhao G., et al. Adaptive knot placement in B-spline curve approximation [J]. Computer Aided Design, 2005, 37(8): 791-797.
[9] R. Sablatnig and M. Kampel, Model-Based Registration of Front-and Backviews of rotational symmetric objects, Computer Vision and Image Understanding (S1077-3142), 2002, 87(1-3): 90-103.
[10] Schindler K, Kampel M, Sablatnig R. Fitting of a Closed Planar Curve Representing a Profile of an Archaeological Fragement [C]. Proceedings of Proceedings of the 2001 conference on Virtual reality, archeology, and cultural heritage. Glyfada: ACM Press, 2001: 263-269.
[11] Wenping wang, Helmut Pottmann, Yangi Lu. Fitting B-spline Curves to Point Clouds by Square Distance Minimization [M]. ACM Transactions on Graphics (S0730-0301), 2006, 25: 214-238.
[12] Ouyang Leiguang. Cultural debris classification mosaic and parallel algorithm. Master's degree thesis of Shandong University. 2007.
[13] Zongfang Zhang. The estimation of the overall characteristics of the rotating object artifacts from point clouds. [J] Journal of Beijing Electronics Science and Technology Institute, 2008.
[14] Qian Liu. Research and application of 3D contour line matching pieces of cultural relics mosaic algorithm based on master's degree thesis of Northwestern University, 2013.
Cite This Article
  • APA Style

    Hongguang Zhu, Xu Zhang. (2017). Feature Estimation and Registration of Point Clouds in Reverse Engineering. International Journal of Mechanical Engineering and Applications, 5(5), 282-286. https://doi.org/10.11648/j.ijmea.20170505.17

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    ACS Style

    Hongguang Zhu; Xu Zhang. Feature Estimation and Registration of Point Clouds in Reverse Engineering. Int. J. Mech. Eng. Appl. 2017, 5(5), 282-286. doi: 10.11648/j.ijmea.20170505.17

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    AMA Style

    Hongguang Zhu, Xu Zhang. Feature Estimation and Registration of Point Clouds in Reverse Engineering. Int J Mech Eng Appl. 2017;5(5):282-286. doi: 10.11648/j.ijmea.20170505.17

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  • @article{10.11648/j.ijmea.20170505.17,
      author = {Hongguang Zhu and Xu Zhang},
      title = {Feature Estimation and Registration of Point Clouds in Reverse Engineering},
      journal = {International Journal of Mechanical Engineering and Applications},
      volume = {5},
      number = {5},
      pages = {282-286},
      doi = {10.11648/j.ijmea.20170505.17},
      url = {https://doi.org/10.11648/j.ijmea.20170505.17},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ijmea.20170505.17},
      abstract = {Cultural relic is the carrier of information, such as production, life, science and technology, art and so on. However, due to natural and man-made reasons, artifacts are often destroyed. Excavation site is the most common variety of cultural relics, the need for cultural relics repair. Because the artifacts are generally made on the rotating disk, so the object of this study is the rotating debris. The geometric characteristics of the rotating body are the rotation axis, the contour line, the radius of rotation and the angle of fit. Estimate the overall characteristics of the rotary body have important reference value for computer aided restoration of cultural relics. The efficiency and precision of the axis of rotation, contour is estimated by different methods are different, which will directly affect the follow-up work of this paper focuses on the stitching, from the axis of rotation estimation, contour calculation, rotation radius and central angle calculation is discussed.},
     year = {2017}
    }
    

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  • TY  - JOUR
    T1  - Feature Estimation and Registration of Point Clouds in Reverse Engineering
    AU  - Hongguang Zhu
    AU  - Xu Zhang
    Y1  - 2017/10/30
    PY  - 2017
    N1  - https://doi.org/10.11648/j.ijmea.20170505.17
    DO  - 10.11648/j.ijmea.20170505.17
    T2  - International Journal of Mechanical Engineering and Applications
    JF  - International Journal of Mechanical Engineering and Applications
    JO  - International Journal of Mechanical Engineering and Applications
    SP  - 282
    EP  - 286
    PB  - Science Publishing Group
    SN  - 2330-0248
    UR  - https://doi.org/10.11648/j.ijmea.20170505.17
    AB  - Cultural relic is the carrier of information, such as production, life, science and technology, art and so on. However, due to natural and man-made reasons, artifacts are often destroyed. Excavation site is the most common variety of cultural relics, the need for cultural relics repair. Because the artifacts are generally made on the rotating disk, so the object of this study is the rotating debris. The geometric characteristics of the rotating body are the rotation axis, the contour line, the radius of rotation and the angle of fit. Estimate the overall characteristics of the rotary body have important reference value for computer aided restoration of cultural relics. The efficiency and precision of the axis of rotation, contour is estimated by different methods are different, which will directly affect the follow-up work of this paper focuses on the stitching, from the axis of rotation estimation, contour calculation, rotation radius and central angle calculation is discussed.
    VL  - 5
    IS  - 5
    ER  - 

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Author Information
  • College of Mechanical Engineering, Shanghai University of Engineering Science, Shanghai, China

  • College of Mechanical Engineering, Shanghai University of Engineering Science, Shanghai, China

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