International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies

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:: International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies

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ISSN 2228-9860
eISSN 1906-9642
CODEN: ITJEA8


FEATURE PEER-REVIEWED ARTICLE

Vol.11(3) (2020)

  • MODERN TECHNOLOGIES AND APPROACHES TO THE TRIANGULATION ALGORITHMS

    Saima Javed (School of Education, Shaanxi Normal University, Xian, CHINA),
    Zhang Wenlan (School of Education, Shaanxi Normal University, Xian, CHINA and Institute for Digital Education, Shaanxi Normal University, Xian, CHINA),
    Vitaly V. Baynev, Sergey A. Fedosin (Department of Automated Information Processing Systems and Management, Institute of Electronics and Light Engineering, National Research Ogarev Mordovia State University, Saransk, RUSSIA)

    Disciplinary: Computer Graphics.

    ➤ FullText

    DOI: 10.14456/ITJEMAST.2020.45

    Keywords: Delaunay method; modeling, Triangulation network; Delaunay triangulation; Triangulation method.

    Abstract
    Features of organizing the automation systems for engineering calculations are considered. Program realization for the creation of triangular networks, in particular, the generator of networks based on a Delaunay method of creating triangulation is analyzed. Methods of creation of volume networks are also considered. Conformal networks with many-sided cells are presented. Triangulation methods, their essence, merits and demerits, algorithms of creating Delaunay triangulation are described.

    Paper ID: 11A03E

    Cite this article:

    Baynev, V. V., Fedosin, S. A. (2020). MODERN TECHNOLOGIES AND APPROACHES TO THE TRIANGULATION ALGORITHMS. International Transaction Journal of Engineering, Management, & Applied Sciences & Technologies, 11(3), 11A03E, 1-6. http://doi.org/10.14456/ITJEMAST.2020.45



References

  1. Baynev, V. V., & Fedosin, S. A. (2018a). Simulation and study of optical systems based on LEDs. Acta Technica, 63, 897-902.
  2. Baynev, V. V., Fedosin, S. A. (2018b). Triangulation networks and hierarchical structures of the models in calculation of LED modules. International Journal of Engineering and Technology (UAE), 7(2), 5-8.
  3. Baynev, V., & Fedosin, S. (2019a). Implementation and Optimization of Ray Tracing Algorithm in an Optical System. Journal of Advanced Research in Dynamical and Control Systems, 11(02), 489-493.
  4. Baynev, V., & Fedosin, S. (2019b). Surface Presentation Methods in Geometric Models of Light Devices. Journal of Advanced Research in Dynamical and Control Systems, 11(02), 460-464.
  5. Bayneva, I. I. (2019). Features OD Free-Form Optics Design and Manufacture in Lighting Industry. Journal of Advanced Research in Dynamical and Control Systems, 11(02), 465-467.
  6. Borouchaki, H., Hecht, F., Saltel, E., & George, P. L. (1995). Reasonably efficient Delaunay based mesh generator in 3 dimensions. In Proceedings 4th International Meshing Roundtable (pp. 3-14).
  7. Shewchuk, J. R. (1996, May). Triangle: Engineering a 2D quality mesh generator and Delaunay triangulator. In Workshop on Applied Computational Geometry (pp. 203-222). Springer, Berlin, Heidelberg.
  8. Yang, Y. J., Yong, J. H., & Sun, J. G. (2005). An algorithm for tetrahedral mesh generation based on conforming constrained Delaunay tetrahedralization. Computers & Graphics, 29(4), 606-615.


Other issues:
Vol.12(2)(2021)
Vol.12(1)(2021)
Vol.11(16)(2020)
Vol.11(15)(2020)
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