Alma Mater
ISSN 1026-955X
Vestnik Vysshey Shkoly (Higher School Herald)
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Application of new united digital technologies of end-to-end modeling and design in the training of specialists at the faculty of SM MSTU named after N.E. Bauman

Vladimir T. Kalugin, Alexander Yu. Lutsenko, Irina K. Romanova-Bolshakova

UDC [378:629.7]-042.4:004

https://doi.org/10.20339/AM.06-23.109

 

Vladimir T. Kalugin, Dr. Sc. (Technic), Professor, Head of the NUC SM Bauman Moscow State Technical University

Alexander Yu. Lutsenko, Cand. Sc. (Technic), Docent, First Deputy Dean of the Faculty of SM Bauman Moscow State Technical University

Irina K. Romanova-Bolshakova, Cand. Sc. (Technic), Docent, Deputy Dean for Master's Degree of the Faculty of SM Bauman Moscow State Technical University, e-mail: irina.romanova@bmstu.ru

 

The principle of a single digital platform for the analysis and synthesis of technical systems, implemented in the process of training specialists and masters of the Faculty of Special Engineering (SM) in the direction of rocket and space technology (RKT), is proposed. The requirements of employers is analyzed. The competencies of the approved educational standards of the Moscow State Technical University named after N.E. Bauman, related to modeling and research of systems and implemented at the departments of the Faculty of SM in the direction of RKT. The possibilities of using the MATLAB package as an organizing center are shown, and a description of all components is given, including the integration of third-party application packages to solve the main problem. As an example, the problem of modeling an RCT object – an aircraft is considered.

Keywords: digital platform, modeling, analysis and synthesis, aircraft, MATLAB.

 

References

  1. Minina, V.N. Digitalization of higher education and its social results. Vestnik of Saint Petersburg University. Sociology. 2020. Vol. 13. Iss. 1. P. 84–101.
  2. Professional Standard 25.001 Spacecraft and Systems Design and Engineering Specialist.
  3. Lisitsyna, L.S., Lyamin, A.V., Shekhonin, A.A. Development of Work Programmes of Disciplines (Modules) in Basic Educational Programmes Implementing FGOS VPO. St. Petersburg: NRU ITMO, 2013.
  4. Kazinets, V.A. , Trinadtsatko, O.A. Competence Model of Higher Education. Modern Science-Intensive Technologies. 2020. No. 12 (Pt. 1). P. 160–165.
  5. Romanova, I.K. Development of a New Concept of Modeling Systems Based on the Application and Development of Modern Information Technologies. AIP Conference Proceedings. 2022. Vol. 2383. P. 030001-1-030001-9. DOI: 10.1063/5.0074539
  6. Vladimir, Kalugin, Alexander, Lutsenko, Irina, Romanova, Ding, Ye. Development of teaching programs of artificial intelligence methods in aerospace education. SHS Web of Conferences 137, 01006 (2022), DOI: 10.1051/shsconf/202213701006AESHE 2021
  7. Vladimir, Kalugin, Alexander, Lutsenko, Irina, Romanova, Yongjian, Xu. Implementation of artificial intelligence development strategy in the Russian Federation in the educational programs of aerospace engineering training of Bauman Moscow State Technical University. SHS Web of Conferences 137(2):01005. DOI: 10.1051/shsconf/202213701005
  8. Romanova, I.K. Multi-objective optimization of dynamic systems and problem of the Pareto front control. AIP Conference Proceeding. XLIII Academic Space Conference: Dedicated to the Memory of Academician S.P. Korolev and Other Outstanding Russian Scientists. 2019. Vol. 2171. P. 110016–110016-9. DOI: 0.1063/1.5133250
  9. Romanova, I.K. Study of the influence of deformations and asymmetry on aircraft movement parameters. AIP Conference Proceedings. XLIII Academic Space Conference: Dedicated to the Memory of Academician S.P. Korolev and Other Outstanding Russian Scientists — Pioneers of Space Exploration. 2019. Vol. 2171. P. 130001–130001-8. DOI:10.1063/1.5133268
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