Conference MC&FPGA

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Distance Training of Higher Education Specialists Using Virtual Presence Technologies

DOI: 10.35598/mcfpga.2020.015

Distance Training of Higher Education Specialists Using Virtual Presence Technologies
Valerii Semenets, Oleg Avrunin, Tatyana Nosova, Evgen Chuguy, Yana Nosova, Oleksandr Gryshkov

II International Scientific and Practical Conference Theoretical and Applied Aspects of Device Development on Microcontrollers and FPGAs (MC&FPGA), Kharkiv, Ukraine, 2020, pp.50-52.

Abstract
The technologies of creating modern educational content based on video with the effect of presence are considered. The features of the technology for creating a modern panoramic video and examples useful for creating educational content in different fields are given.

Keywords: high resolution, educational process, panoramic video, viewing angle, situational problems

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References

  1. V. Kobzev, V. Semenets and V. Filatov, “Components of the information system for monitoring the quality of education in Kharkov National University of Radio Electronics”, in 7th Int. scientific and technical conf. Information systems and technologies (IST-2018), Kharkiv-Koblevo, 2018, pp. 51-54.
  2. V. Semenets, I. Svyd and L. Saikivska, “Methods of improving the quality of preparation of technical specialists”, in Engineering education: challendes and developments : materials of the IX International Scientific and Methodological Conference, Minsk, Belarus, 2018, pp. 415-416.
  3. Iorns, Thomas, and Taehyun Rhee. “Real-time image based lighting for 360-degree panoramic video.” Image and Video Technology. Springer, Cham, 2015.
  4. Youvalari, Ramin Ghaznavi, et al. “Efficient coding of 360-degree pseudo-cylindrical panoramic video for virtual reality applications.” 2016 IEEE International Symposium on Multimedia (ISM). IEEE, 2016.
  5. Kwon, Oh-Seol, and Yeong-Ho Ha. “Panoramic video using scale-invariant feature transform with embedded color-invariant values.” IEEE transactions on Consumer Electronics 56.2 (2010): 792-798.
  6. O. Avrunin, O. Kruk, T. Nosova and V. Semenets, “Technical aspects of the development of virtual laboratory works on technical educational disciplines”, Open Education, vol. 3, pp. 11-17, 2008.
  7. O. Avrunin, S. Sakalo and V. Semenetc, “Development of up-to-date laboratory base for microprocessor systems investigation,” 2009 19th International Crimean Conference Microwave & Telecommunication Technology, Sevastopol, 2009, pp. 301-302.
  8. Gubanov, A. V., Zhemchuzhkina, T. V., Nosova, T. V., & Nosova, Y. V. (2014). Electromyographic data processing module 5-th International radio electronic forum «Applied electronics. Status and Development Trends», Conference «Problems of Biomed Engineering. Science and Technology, 3, 25-27.
  9. Nosova, Ya V., Kh I. Faruk, and O. G. Avrunin. “A tool for researching respiratory and olfaction disorders.” Telecommunications and Radio Engineering 77.15 (2018): 1389-1395.
  10. Avrunin, O. “Development of Automated System for Video Intermatoscopy/OG Avrunin, V. Klymenko, A. Trubitcin, O. Isaeva.” Proceedings of the IX International Scientific and Practical Conference International Trends in Science and Technology. Vol. 2. 2019.
  11. Avrunin, O., Ya Nosova, and S. Khuadaieva. “Features of creation technologies for educational panoramic video content.” Modern approaches to the introduction of science into practice. Abstracts of X International Scientific and Practical Conference. San Francisco, USA 2020. Pp.256-259.
  12. Nosova, Y., I. Younouss Abdelhamid, and O. Gryshkov. “Using 3D printing technology to full-scale simulation of the upper respiratory tract.” Informatyka, Automatyka, Pomiary W Gospodarce I Ochronie Środowiska, Vol. 9, no. 4, Dec. 2019, pp. 60-63, doi:10.35784 / iapgos.681.
  13. Saghir, Ali. “Influence of Vidio Games in Learning.” Journal of Emerging Trends in Computing and Information Sciences 7.8 (2016): 338-342.
  14. I. Tarasov. Organization of the educational process in the design of digital devices using an initial level based boards FPGA Spartan-6 company Xilinx. Components and Technologies, 2011,12, pp.10-14.
  15. V. Semenets, V. Kauk, O. Avrunin. “The advanced technology of remote training at the initial process” [“Vprovadjennya tehnologiy dystantsiynogo navchannya u navchalnii protses”], High School, 2009. – No. 5 .– P. 40– 45.
  16. Avrunin, Oleg G., T. Nosova, and V. Semenets. “Experience of Developing a Laboratory Base for the Study of Modern Microprocessor Systems.” Proceedings of I International Scientific and Practical Conference “Theoretical and Applied Aspects of Device Development on Microcontrollers and FPGAs” MC&FPGA-2019, Kharkiv, Ukraine, 2019.  P. 6–8.