ISSN 0021-3454 (print version)
ISSN 2500-0381 (online version)
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vol 67 / April, 2024
Article

DOI 10.17586/0021-3454-2021-64-12-965-971

UDC 007.3

ANALYSIS OF THE RESULTS OF INTEGRATED PLANNING OF CORPORATE INFORMATION SYSTEMS FUNCTIONING AND MODERNIZATION

V. V. Zakharov
St. Petersburg Institute for Informatics and Automation of the RAS, laboratory for Information Technologies in Systems Analysis and Modeling ;


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Abstract. Results of a study in development of "reference" programs for coordinated functioning and modernization of modern corporate information systems of an industrial enterprise warehouse subsystem of based on the V. G. Boltyansky method of local cross sections and the fuzzy-possibilistic approach, are analyzed. It is shown that with the use of developed special model-algorithmic software, it is possible to account simultaneously for both the dynamics of the main spatial-temporal, technological, technical and organizational constraints, and the expert knowledge associated with the specified stage of the life cycle of a complex object under consideration. It is noted that the work continues previously performed research.
Keywords: modernization planning, complex modeling, corporate information systems, digital transformation

References:

1. Ivanov D., Sokolov B., Evelio A.D.R. International Journal of Systems Science: Operations & Logistics, 2014, no. 1(1), pp. 18–26. 2. Zakharov V.V. Journal of Instrument Engineering, 2020, no. 11(63), pp. 975–984. (in Russ.) 3. Potryasaev S.A. Journal of Instrument Engineering, 2018, no. 11(61), pp. 939–946. (in Russ.) 4. Anichkin A.S., Semenov V.A. Proceedings of the Institute for System Programming of the RAS (Proceedings of ISP RAS), 2014, no. 3(26), pp. 5–50, https://doi.org/10.15514/ISPRAS-2014-26(3)-1. (in Russ.) 5. Semenkina O.E., Popov E.A. Herald of the Bauman Moscow State Technical University. Series Instrument Engineering, 2019, no. 3(126). (in Russ.) 6. Popov V.D., Spesivtsev A.V., Sukhoparov A.I., Spesivtsev V.A. 2017 XX IEEE International Conference on Soft Computing and Measurements (SCM), 2017, pp. 203–206. 7. Ivanov D., Sokolov B., Chen W., Dolgui A., Werner F., Potryasaev S. IISE Transactions, 2021, no. 1(53), pp. 21–38. 8. Mikoni S.V., Sokolov B.V., Yusupov R.M. Kvalimetriya modeley i polimodel'nykh kompleksov (Qualimetry of Models and Polymodel Complexes), Moscow, 2018, 410 р. (in Russ.) 9. Sokolov B.V., Zakharov V.V., Nazarov D.I. Nauchnoe Priborostroenie (Journal), 2020, no. 3(3), pp. 49–62. (in Russ.) 10. Sokolov B.V., Zakharov V.V., Krylov A.V., Salukhov V.I. Proceedings of the Fifth International Scientific Conference “Intelligent Information Technologies for Industry” (IITI’21). IITI 2021, Lecture Notes in Networks and Systems, vol. 330. Springer, Cham. 11. Kuzin E.I., Kuzin V.E. Engineering Journal: Science and Innovation, 2016, no. 2(50). (in Russ.) 12. Skripkin K.G. Ekonomicheskaya effektivnost' informatsionnykh system (Economic Efficiency of Information Systems), Moscow, 2002, 256 р. (in Russ.) 13. Zakharov V.V., Ushakov V.А. Journal of Instrument Engineering, 2019, no. 6(62), pp. 585–588. (in Russ.) 14. Sokolov B.V., Pavlov, A.N., Potriasaev S., Zakharov V.V. Advances in Intelligent Systems and Computing, 2020, vol. 1156, рр. 234–243. 15. Zakharov V.V. Journal of Instrument Engineering, 2019, no. 10(62), pp. 167–172. (in Russ.) 16. https://litsam.ru. (in Russ.) 17. Zelentsov V.A., Pavlov A.N. Informatsionno-upravlyayushchiye sistemy, 2010, no. 6, pp. 7–12. (in Russ.) 18. Krylov I.A., Chernous'ko F.L. Zhurnal vychislitel'noy matematiki i matematicheskoy fiziki, 1972, no. 1(12), pp. 14–34. (in Russ.) 19. Boltyanskiy V.G. Differentsial'nyye uravneniya, 1968, no. 12(4), pp. 2166–2183. (in Russ.) 20. Sokolov B.V., Kalinin V.N. Automation and Remote Control, 1987, no. 1, pp. 106–114. (in Russ.) 21. Morozov V.P., Dymarskiy Ya.S. Elementy teorii upravleniya GAP. Matematicheskoye obespecheniye (Elements of the Theory of GAP Control. Mathematical Software), Leningrad, 1984, 333 р. (in Russ.)