|

Digital twins in the rocket and space industry: problems and prospects for implementation

Authors: Korolev D.V.
Published in issue: #4(45)/2020
DOI: 10.18698/2541-8009-2020-4-594


Category: Aviation and Rocket-Space Engineering | Chapter: Innovation Technologies of Aerospace Engineering

Keywords: digital twin, rocket and space industry, rocket and space technology, spacecraft, information technology, big data, Internet of things, modeling
Published: 21.04.2020

The paper presents the results of a study of theoretical, practical and regulatory aspects of the use of digital twins in the rocket and space industry of Russia. The relevance of the study is due to insufficient knowledge of the digital twins concept and of its application practice in the rocket and space industry in the Russian scientific literature. The most comprehensive definitions and types of digital twins, the group of technologies for their creation are considered. The advantages and effects of using digital twins at different stages of the life cycle of rocket and space technology have been identified. The paper describes the problems of introducing digital twins into the industry. The key problem is the complete absence of legislative regulation of the turnover of digital twins in Russia, and proposals for improving the regulatory framework are substantiated. Authors studied strategic documents of the development of the Roskosmos State Corporation for the prospects of the introduction of digital twins. It is proposed to combine the efforts of space-faring nations in the development of digital twins for deep space exploration. The necessity is substantiated of a crowdsourcing platform for uniting the efforts of the expert, professional and scientific community as a centralized location for official, working, discussion documents, an educational platform for schoolchildren and youth, a tool for popularizing space research and attracting young people to the space and rocket industry profession.


References

[1] Strategii razvitiya GK “Roskosmos” na period do 2025 g. i perspektivu do 2030 g [Development strategy of “Roskosmos” in the period to 2025 and to 2030 in prospects]. roscosmos.ru: website (in Russ.). URL: https://www.roscosmos.ru/media/files/docs/2017/dokladstrategia.pdf (accessed: 15.12.2019).

[2] Frolov E.B., Klimov A.S., Min-Khtun Z. MES - the basis for the creation of a “digital twins” for production systems. Vestnik MGTU Stankin, 2019, no. 2(49), pp. 52–56 (in Russ.).

[3] Abdulmotaleb E.S. Digital twins: the convergence of multimedia technologies. IEEE MultiMedia, 2018, vol. 25, no. 2, pp. 87–92. DOI: https://doi.org/10.1109/MMUL.2018.023121167

[4] Grieves M. Virtually intelligent product systems: digital and physical twins. In: Complex systems engineering: theory and practice. AIAA, 2019, pp. 175–200.

[5] Borovkov A.I., Ryabov Yu.A. [Digital twins: definition, approaches and methods of development]. Tsifrovaya transformatsiya ekonomiki i promyshlennosti. Sb. tr. nauch.-prakt. konf. s zarubezh. uchastiem [Digital Transformation of Economy and Industry. Proc. Sci.-prakt. conf with int. anticipation]. Sankt-Petersburg, Politekh-Press Publ., 2019, pp. 234–245 (in Russ.).

[6] Vasil’yev A.N., Tarkhov D.A., Malykhina G.F. Methods of creating digital twins based on neural network modeling. Sovremennye informatsionnye tekhnologii i IT-obrazovanie [Modern Information Technology and IT-education], 2018, vol. 14, no. 3, pp. 521–532 (in Russ.).

[7] Petrov A.V. Simulation as the basis of digital twin technology. Vestnik Irkutskogo gosudarstvennogo tekhnicheskogo universiteta [Proceedings of Irkutsk State Technical University], 2018, vol. 22, no. 10(141), pp. 56–66 (in Russ.).

[8] Glaessgen Ed., Stargel D. NASA – the digital twin paradigm for NASA and U.S. air force vehicles. 53rd Structures, Structural Dynamics, and Materials Conf., 2013. DOI: https://doi.org/10.2514/6.2012-1818

[9] Gosudarstvo kak platforma: lyudi i tekhnologii [State as a platform: people and technologies]. Moscow, RANKhiGS Publ., 2019 (in Russ.).

[10] Hicks B. Industry 4.0 and Digital Twins: key lessons from NASA. thefuturefactory.com: website. URL: https://www.thefuturefactory.com/blog/24 (accessed: 15.12.2019).

[11] Goncharov A.S., Saklakov V.M. [Digital twins: review on existing solutions and technology development prospects]. Informatsionno-telekommunikatsionnye sistemy i tekhnologii. Mat. Vseros. nauch.-prakt. konf. [Information Communication Systems and Technologies. Proc. Russ. Sci.-Pract. Conf.], 2018, pp. 24–26 (in Russ.).

[12] Abaz’yeva M.P. Digital twins: concept, opportunities, perspectives. Nauka i biznes: puti razvitiya [Science and business: ways of development], 2019, no. 5(95), pp. 210–212 (in Russ.).

[13] Fullera A., Fana Z., Daya Ch., et al. Digital twin: enabling technology, challenges and open research. arxiv.org: website. URL: https://arxiv.org/abs/1911.01276v2 (accessed: 15.12.2019).

[14] Odobren proekt strategii informatsionnykh tekhnologiy Goskorporatsii “Roskosmos” [Roskosmos project on informational technologies strategy has been approved]. roscosmos.ru: website (in Russ.). URL: https://www.roscosmos.ru/25892/ (accessed: 15.12.2019).

[15] Romanov A.A. Tyulin A.E. Tsifrovaya transformatsiya kosmicheskoy otrasli [Digital information in space sector]. volgaspace.ru: website (in Russ.). URL: http://www.volgaspace.ru/RusNanoSat-2019/first%20day/Plenary%201/2-1.pdf (accessed: 15.12.2019).

[16] Kosmicheskie servisy dlya tsifrovoy ekonomiki [Space services of digital economy]. russianspacesystems.ru: website (in Russ.). URL: http://russianspacesystems.ru/wp-content/uploads/2018/05/BUKLET-KOSMICHESKIE-SERVISY.pdf (accessed: 15.12.2019).

[17] Rossiyskaya kosmicheskaya otrasl’: ozhidaniya biznesa i obshchestva [Russian space sector: business and society expectations]. pltf.r: website (in Russ.). URL: http://pltf.ru/wp-content/uploads/2019/11/otchet_26.11.1500.pdf (accessed: 15.12.2019).