The use of digital twin systems in the construction of socio-cyber-physical systems
Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ, Tome 20 (2024) no. 4, pp. 467-478
Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

The modern stage of technology development allows us to create anthropogenic systems that feature a fundamentally new level of complexity compared to existing systems, which for the most part are multilevel heterogeneous distributed systems, which include anthropogenic physical entities, virtual entities, natural objects, living beings, people and human collectives. Such systems can be defined as socio-cyber-physical systems. The article analyzes the current state of technology for building socio-cyber-physical systems, and considers the possibility of using digital twins in their construction. The possible aspects of using digital twin in the construction of this class of systems are considered. This article discusses one of the possible approaches to the construction of socio-cyber-physical systems based on the use of runtime digital twin systems built using a polymodel approach. The proposed approach can be considered as a convergence of several well-known approaches to the construction of socio-cyber-physical systems. A reference architecture of the run-time digital twin is proposed, the basis of which is not a monolithic model, but a system of models. Typical models that can be used in the construction of socio-cyber-physical systems are analyzed. One of the key problems facing the developers of socio-cyber-physical systems is the construction of a human model.
Keywords: socio-cyber-physical systems, digital twins, digital twin system, human digital twin.
@article{VSPUI_2024_20_4_a2,
     author = {A. I. Vodyakho and N. A. Zhukova and V. Y. Ananeva},
     title = {The use of digital twin systems in the construction of socio-cyber-physical systems},
     journal = {Vestnik Sankt-Peterburgskogo universiteta. Prikladna\^a matematika, informatika, processy upravleni\^a},
     pages = {467--478},
     year = {2024},
     volume = {20},
     number = {4},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VSPUI_2024_20_4_a2/}
}
TY  - JOUR
AU  - A. I. Vodyakho
AU  - N. A. Zhukova
AU  - V. Y. Ananeva
TI  - The use of digital twin systems in the construction of socio-cyber-physical systems
JO  - Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ
PY  - 2024
SP  - 467
EP  - 478
VL  - 20
IS  - 4
UR  - http://geodesic.mathdoc.fr/item/VSPUI_2024_20_4_a2/
LA  - ru
ID  - VSPUI_2024_20_4_a2
ER  - 
%0 Journal Article
%A A. I. Vodyakho
%A N. A. Zhukova
%A V. Y. Ananeva
%T The use of digital twin systems in the construction of socio-cyber-physical systems
%J Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ
%D 2024
%P 467-478
%V 20
%N 4
%U http://geodesic.mathdoc.fr/item/VSPUI_2024_20_4_a2/
%G ru
%F VSPUI_2024_20_4_a2
A. I. Vodyakho; N. A. Zhukova; V. Y. Ananeva. The use of digital twin systems in the construction of socio-cyber-physical systems. Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ, Tome 20 (2024) no. 4, pp. 467-478. http://geodesic.mathdoc.fr/item/VSPUI_2024_20_4_a2/

[1] Van der Valk H., Möller F., Arbter M., Henning J. L., Otto B., “A taxonomy of digital twins”, Americas Conference on Information Systems, 2020, 1–10

[2] Ricci A., Croatti A., Mariani S., Montagna S., Picone M., “Web of digital twins”, ACM Transactions on Internet Technology, 22:4 (2022), 1–30 | DOI

[3] Zhihan Lv., Fersman E., Digital twins: Basics and applications, Springer International Publ., Cham, 2022, 99 pp. | DOI

[4] Auer M. E., Ram B. K., Cyber-physical systems and digital twins, Springer Nature Switzerland AG, Cham, 2020, 862 pp. | DOI

[5] Vohra M., Digital twin technology: Fundamentals and applications, John Wiley Sons, New York, 2023, 272 pp.

[6] Thelen A., Zhang X., Fink O., Lu Y., Ghosh S., Youn B. D., Hu Z., “A comprehensive review of digital twin. Pt 1: Modeling and twinning enabling technologies”, Structural and Multidisciplinary Optimization, 65:12 (2022), 1–75

[7] Gräbler I., Maier G. W., Steffen E., Roesmann D., The digital twin of humans, Springer International Publ., Cham, 2023, 978 pp.

[8] Jamshidi M., System of systems engineering, John Wiley Sons, Inc., New York, 2009, 593 pp.

[9] Okhtilev M. Yu., Sokolov B. V., Yusupov R. M., Intelligent technologies for monitoring and controlling the structural dynamics of complex technical objects, Nauka Publ., M., 2006, 410 pp. (in Russian)

[10] Bass L., Weber I., Zhu L., DevOps: A software architect's perspective, Addison-Wesley Professional, Reading, 2015, 352 pp.

[11] Torgashev V. A., “Dynamic automata networks”, SPIIRAS Proceedings, 4:27 (2013), 23–34 (in Russian)

[12] Bloomberg J., The agile architecture revolution: how cloud computing, rest-based SOA, and mobile computing are changing enterprise IT, John Wiley Sons, New York, 2013, 304 pp.

[13] HLA Working Group, IEEE 1516-2010 - IEEE Standard for Modeling and Simulation (M) High Level Architecture (HLA) — Framework and Rules, IEEE Computer Society, New York, USA, 2010, 38 pp.

[14] Mendling J., Reijers H. A., La Rosa M., Dumas M., Fundamentals of business process management, GI-Jahrestagung, Berlin, 2013, 157 pp.

[15] Hewitt C., Actor model of computation: Scalable robust information systems, 2010, arXiv: (accessed: August 1, 2024) 1008.1459