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Structural and Functional Model of Organizational and Technical Systems Interoperability

https://doi.org/10.31854/1813-324X-2023-9-4-65-74

Abstract

In modern conditions, with the integration of organizational and technical systems (OTS), the relevance of ensuring interoperability in such systems is increasing. In this paper, the issues of forming a structural-functional model of OTS interoperability are considered. The processes, categories and objects included in the OTS are singled out, their classification is carried out. The factors influencing interoperability at semantic, organizational and technical levels are revealed. The interoperability of the main processes, categories and objects as part of the interoperability model is considered. Recommendations are presented for the further direction of research in order to improve the quality of interoperability in the interaction of OTS.

About the Authors

S. Makarenko
Saint Petersburg Electrotechnical University 'LETI'
Russian Federation


A. Nesterov
The Bonch-Bruevich Saint Petersburg State University of Telecommunications
Russian Federation


References

1. Gulyaev Yu.V., Oleinikov A.Ya., Filinov E.N. Development and application of open systems in the Russian Federation. Information Technologies and Computing Systems. 1995;1:32‒43.

2. Gulyaev Yu.V., Oleinikov A.Ya. Open systems technology ‒ the main direction of information technology. Information Technologies and Computing Systems. 1997;3:4‒14.

3. Batovrin V.K., Vasyutovich V.V., Gulyaev Yu.V., Kozlov V.A. Open Systems Technology. Moscow: Janus-K Publ.; 2004. 288 p.

4. Kalinichenko L.A., Bryukhov D.O., Kogalovsky M.R., Kravchenko D.V., Romanov V.Yu., Ryabov Yu.F., Ryaboshapko A.A., Sukhomlin V.A., Chaban I.A. Providing information and scientific and methodological support for RFBR projects based on object technologies for creating open interoperable information and computing resources for fundamental science and education. Re-search Report No. 97-07-90369. RFFI. 1997.

5. Bryukhov D.O., Zadorozhny V.I., Kalinichenko L.A., Kuroshev M.Yu., Shumilov S.S. Interoperable information systems: architectures and technologies. Database management systems. 1995;4 URL: https://www.osp.ru/dbms/1995/04/13031453 [Accessed 08.04.2023]

6. Kalinichenko L.A. SYNTHESIS ‒ language for defining, programming and designing interoperable environments of heterogeneous information resources. Moscow: IPI RAN Publ.; 1993. 113 p.

7. Kalinichenko L. A declarative framework for capturing dynamic behaviour in heterogeneous interoperable information resource environment. Proceedings of the 3rd International Workshop on Research Issues in Data Engineering: In-teroperability in Multidatabase Systems, RIDE-IMS 1993, 19–20 апреля 1993, Vienna, Austria. IEEE; 1993. p.249‒252. DOI:10.1109/RIDE.1993.281913

8. Batovrin V.K. Using the principles of open systems in system engineering. Information Technologies and Computing Systems. 2006;3:19‒41.

9. Makarenko S.I., Oleynikov A.Y., Chernitskaya T.E. Models of interoperability assessment for information systems. Systems of Control, Communication and Security. 2019;4:215‒245. DOI:10.24411/2410-9916-2019-10408

10. Antsiperov V.E., Kamenshchikov A.A., Kochukov A., Nikitov D.S., Oleinikov A.Ya. Functional standardization in the creation of medical information systems. Medical doctor and information technologies. 2006;4:15-18.

11. Oleynikov A.Ya., Razinkin E.I. The interoperability profile in the electronic commerce. Computer Science and Control. 2013;4:74‒79.

12. Oleynikov A.Y., Merkulova A.V. On the issue of building an integrated corporate information environment of the university. Journal of Radio Electronics. 2005;5:4.

13. Batovrin V.K., Vasyutovich V.V., Zhuravlev Ye.Ye., Oleynikov A.Y., Petrov A.B., Sokolov S.A., Teryayev Ye.D. Building a profile of information, computing and telecommunications resources to support fundamental research. Journal of Radio Electronics. 2001;11:8.

14. Zhuravlev Ye.Ye., Ivanov S.V., Kamenshchikov A.A., Oleynikov A.Y., Razinkin E.I., Ruban K.A. Interoperability in cloud computing. Journal of Radio Electronics. 2013;9:14.

15. Oleynikov A.Ya., Yegorov G.A., Zhuravlev Ye.Ye., Korolev A.S., Kochukov A.N., Shirobokova T.D. Application of open systems technology to create integrated information systems of industrial enterprises. Radiopromyshlennost. 2006;2:90‒107.

16. Bashlykova A.A., Kamenshchikov A.A., Oleynikov A.Ya. On approaches to the development of interoperability profiles in the military field. Computer Science and Control. 2017;4:112‒121.

17. Kamenshchikov A.A., Oleynikov A.Y., Chusov I.I., Shirobokova T.D. The problem of interoperability in military information systems. Journal of Radio Electronics. 2016;1:16.

18. Bashlykova A.A., Kamenshchikov A.A., Oleynikov A.Y. Ensuring interoperability as a means of seamless integration of functional subsystems as part of advanced automated military systems. Journal of Radio Electronics. 2018;9:18.

19. Makarenko S.I., Karutin A.N. Prospects and problematic issues of ensuring the interoperability of integrated space systems. Systems of Control, Communication and Security. 2021;4:228‒247. DOI:10.24412/2410-9916-2021-4-228-247

20. GOST R 55062-2012. Information technologies. Industrial automation systems and integration. Interoperability. Basic principles. Moscow: Standartinform Publ.; 2014. 12 p.

21. Oleynikov A.Ya., Rastyagayev D.V., Fomin I.A. Basic provisions of the concept of ensuring the interoperability of the network information and control systems. Bulletin of RosNOU. 2020;3:122‒131. DOI:10.25586/RNU.V9187.20.03.P.122.

22. Oleynikov A.Ya. Current status of the interoperability problem. IT-Standart. 2020;2(23):37‒42.

23. Kozlov S.V. Process aspects of interoperability integrated control systems. IT-Standart. 2019;1(18):25‒30.

24. Bashlykova A.A., Zatsarinnyy A.A., Kamenshchikov A.A., Kozlov S.V., Oleynikov A.YA., Chusov I.I. Interoperability as a scientific, methodical, and regulatory base of information and telecommunication systems seamless integration. Systems and Means of Informatics. 2018;28(4):61‒72. DOI:10.14357/08696527180407

25. Bashlykova A.A., Gadzhikuliyev T.A., Oleynikov A.Ya. Solution of interoperability problems in smart city projects. Modern Information Technologies and IT-Education. 2019;15(3):767‒774. DOI:10.25559/SITITO.15.201903.767-774

26. Makarenko S.I. Interoperability of human-machine interfaces. St. Petersburg: Naukoyemkiye tekhnologii Publ.; 2023. 185 p.

27. Drogovoz V.A. Improving the assessment of interoperability indicators of complex systems using scenario modeling. Proceedings of the XXIX International Scientific and Technical Conference on Radar, Navigation, Communication, Voronezh, Russia, 18–20 April 2023, vol.5. Voronezh: VGU Publ.; 2023. p.361‒369.

28. Drogovoz V.A. Ensuring the interoperability of e-health in the context of the digital transformation of the Russian economy. Proceedings of the XII International Scientific Conference on IT Standard 2023. Moscow: Prospekt Publ.; 2023. p.89‒97.

29. Drogovoz V.A. Conceptual aspects of ensuring the interoperability of e-health in the context of digital transformation of the Russian economy. IT-Standart. 2023;2:51‒61.

30. Akatkin Yu.M., Yasinovskaya E.D. Digital Transformation of Public Administration: Datacentricity and Semantic Interop-rability. Moscow: URSS Publ.; 2019. 724 p.

31. Frangulova E.V. Classification of approaches to integration and interoperability of information systems. Bulletin of the Astrakhan State Technical University. Series: Management, computer technology and informatics. 2010;2:176‒180.

32. Makarenko S.I., Solovieva O.S. The main provisions of the concept of semantic interoperability of network-centric systems. Journal of Radio Electronics. 2021;4. DOI:10.30898/1684-1719.2021.4.10

33. Makarenko S.I., Solovieva O.S. Semantic interoperability of interaction of elements in network-centric systems. Journal of Radio Electronics. 2021;6. DOI:10.30898/1684-1719.2021.6.3

34. Makarenko S.I. Semantic interoperability human agents in net-centric systems. Journal of Radio Electronics. 2022;1. DOI:10.30898/1684-1719.2022.1.1

35. Makarenko S.I. Semantic interoperability of human-machine interfaces in net-centric systems. Journal of Radio Electronics. 2022;2. DOI:10.30898/1684-1719.2022.2.4

36. Makarenko S.I. Data compatibility and portability for ensuring technical interoperability of network-centric systems. Journal of Radio Electronics. 2022;7. DOI:10.30898/1684-1719.2022.7.1

37. GOST R ISO 11354-1-2012. Advanced automation technologies and their applications. Requirements for establishing manufacturing enterprise process interoperability. Part 1. Framework for enterprise interoperability. Moscow: Standartinform Publ.; 2014.

38. ISO 11354-1:2011. Advanced automation technologies and their applications – Requirements for establishing manufacturing enterprise process interoperability – Part 1: Framework for enterprise interoperability; 2011-09.

39. GOST R 70569-2022. Information technologies. Network-centric information-control systems. Interoperability. Moscow: Rossiyskiy institut standartizatsii Publ.; 2022.

40. GOST R 59797-2021. Information technology. Complex systems. Interoperability. Basic provisions. Moscow: Rossiyskiy institut standartizatsii Publ.; 2021. 11 p.

41. Makarenko S.I. Reference book of scientific terms and notation. St. Petersburg: Naukoyemkiye tekhnologii Publ.; 2019. 254 p.


Review

For citations:


Makarenko S., Nesterov A. Structural and Functional Model of Organizational and Technical Systems Interoperability. Proceedings of Telecommunication Universities. 2023;9(4):65-74. (In Russ.) https://doi.org/10.31854/1813-324X-2023-9-4-65-74

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ISSN 1813-324X (Print)
ISSN 2712-8830 (Online)