UDC 378::629.7+519.2
DOI 10.20339/AM.07-26.060
Vladimir T. Kalugin, D.Sc. (Engineering), Professor, Head of the NUC SM Bauman Moscow State Technical University
Alexander Yu. Lutsenko, Cand. Sci.(Engineering), Docent, First Deputy Dean of the Faculty of SM Bauman Moscow State Technical University
Irina K. Romanova-Bolshakova, D.Sc. (Engineering), Docent, Deputy Dean for Master’s Degree of the Faculty of SM Bauman Moscow State Technical University, e-mail: irina.romanova@bmstu.ru, https://orcid.org/0000-0002-5757-350X
New requests for the formation of competencies of aviation and rocket and space technology (A&RST) specialists related to the active use of methods of probabilistic analysis and statistical data processing, statistical dynamics of the functioning of rocket and space systems are considered. This is important for solving problems related to the development, design and operation of rockets and rocket and space complexes, for example, to assess the reliability of products, analyze the dynamics of structures under random loads. It is important for solving problems related to the development, design and operation of rockets and rocket and space complexes, for example, to assess the reliability of products, probabilistic assessment of the dynamic properties of a structure under the combined action of external (additive) and parametric (multiplicative) vibrations on its elements, conducting statistical tests, the study of such special phenomena peculiar to aircraft as aeroelasticity. The directions of retraining specialists at 24 UGSN are proposed for in-depth study of mathematical methods and their use in the practice of developing and operating complex technical facilities of A&RST.
Keywords: Aviation and rocket and space technology, methods of probability theory and mathematical statistics in the life cycle of A&RST products, reliability, risks, statistical modeling
References
1. Kalugin, V.T., Lutsenko, A.Yu., Romanova-Bolshakova, I.K. Features of training specialists and master’s students in the field of rocket and space technology in the context of growing demands for the development of integrated competencies. Alma mater (Vestnik vysshey shkoly). 2023. No. 6. Pp. 50–55. http://doi.org/10.20339/AM.06-23.050
2. Kalugin, V.T., Lutsenko, A.Yu., Romanova-Bolshakova, I.K. Features of training specialists in the field of ‘Aviation and Rocket and Space Engineering’ in the modern context of Industry 4.0. Moscow: MAI Publishing House, 2025. Pp. 100–128.
3. Kalugin, V.T., Lutsenko, A.Yu., Romanova-Bolshakova, I.K. Developing the competencies of engineering personnel in the rocket, space and aviation industries in the field of ensuring the reliability of complex technical systems. Alma mater (Vestnik vysshey shkoly). 2024. No. 7. Pp. 65–75. http://doi.org/10.20339/AM.07-24.065
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5. Romanova-Bolshakova, I.K. Establishing cause-and-effect relationships in the task of identifying failures in controlled systems. Technologies for the Development and Debugging of Complex Technical Systems. Proceedings of All-Russian Scientific and Practical Conference. Moscow, 2024. Pp. 153–163.
6. Kalugin, V.T., Lutsenko. A.Yu., Romanova-Bolshakova, I.K. Developing the competencies of engineering personnel in the rocket, space and aviation industries in the field of optimal design of complex technical systems. In: Aerospace Education in Russia. Responding to the challenges of our time. D.A. Kozorez (ed). Moscow, 2023. Pp. 136–156.
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8. Romanova-Bolshakova, I.K. The Effect of Object Parameter Degradation on Changes in the Pareto Dynamic Front. Technologies for the Development and Debugging of Complex Technical Systems. All-Russian Scientific and Practical Conference. Moscow, 2024. Pp. 143–152.











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