Реализация компонентов мониторинговой среды для управления многофункциональными интеллектуальными системами
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Научный журнал Моделирование, оптимизация и информационные технологииThe scientific journal Modeling, Optimization and Information Technology
Online media
issn 2310-6018

Implementation of monitoring environment components for managing multifunctional intelligent systems

idGusev P., idDanilov A., Lebedev D. 

UDC 681.3
DOI: 10.26102/2310-6018/2024.45.2.046

  • Abstract
  • List of references
  • About authors

The work is devoted to the formation of principles for constructing components of a monitoring environment for managing multifunctional intelligent systems. The relevance of the topic under study is substantiated, the goal and objectives of the work are set. The task of forming a system of indicators describing the operation of the system is highlighted as a key task in the formation of a monitoring environment. Three stages are described that determine the formation of a system of indicators from system performance indicators to performance indicators of individual elements. A system of indicators for the monitoring environment is proposed in the form of a hierarchical structure with 3 levels: the level of performance criteria, the level of performance indicators, the level of a combination of types of resources and types of activities. Algorithms for collecting and generating data sets are proposed. The algorithm for generating a data set for the monitoring environment involves obtaining data from different sources. The task of the data collection algorithm is to prepare data sets for subsequent processing and obtain the values required by the monitoring environment. When collecting data, various approaches to generating target data sets may be considered. To determine the correspondence between functional areas, resources, types of activities, divisions and performers, an algorithm for generating correspondence directories is attached. The architecture of a web application is proposed as one of the forms of implementation of the monitoring environment. Using the example of using the Next.js framework, the components of the application architecture are described and an architecture diagram is presented.

1. Gusev P.Yu., Lvovich Ya.E. Structuring of a multifunctional digitalized system and managing it using optimization models of disaggregation of resources and volumes of activity. Modelirovanie, optimizatsiya i informatsionnye tekhnologii = Modeling, Optimization and Information Technology. 2023;11(4). (In Russ.). https://doi.org/10.26102/2310-6018/2023.43.4.004

2. Terekhov V.I. et al. Cognitive Visualization in Management Decision Support Problems. Optical Memory and Neural Networks. 2019;28(1):27–35. https://doi.org/10.3103/s1060992x19010089

3. Gusev P.Y. Systematization and management of access to data in a multifunctional digitalized system. Modelirovanie, optimizatsiya i informatsionnye tekhnologii = Modeling, Optimization and Information Technology. 2023;11(4). (In Russ.). https://doi.org/10.26102/2310-6018/2023.43.4.025

4. Eremeev A.P., Paniavin N.A. Unification of a data presentation model and format conversion based on a non-relational Neo4j DBMS. Programmnye produkty i sistemy = Software & Systems. 2022;(4):549–556. (In Russ.). https://doi.org/10.15827/0236-235X.140.549-556

5. Nefed'eva K.V. Infografika – vizualizatsiya dannykh v analiticheskoi deyatel'nosti. Trudy Sankt-peterburgskogo gosudarstvennogo universiteta kul'tury i iskusstv = Proceedings of the St. Petersburg State University of Culture and Arts. 2013;197:89–93. (In Russ.).

6. Chickrin D.E., Egorchev A.A. Top-down VS Bottom-up methodologies for ADAS system design. Izvestiya YuFU. Tekhnicheskie nauki = Izvestiya SFedU. Engineering Sciences. 2021;(2):189–199. (In Russ.). https://doi.org/10.18522/2311-3103-2021-2-189-199

7. Samarin I.V. O tselesoobraznosti ierarkhii v sisteme strategicheskogo planirovaniya i upravleniya krupnym predpriyatiem. Innovatsii i investitsii. 2014;(8):109–114. (In Russ.).

8. Buryi A. Improving government information systems as a digital society trend. Pravovaya informatika = Legal Informatics. 2020;(3):19–28. (In Russ.).

9. Shibanov S.V. et al. Obzor sovremennykh metodov integratsii dannykh v informatsionnykh sistemakh. Trudy Mezhdunarodnogo simpoziuma «Nadezhnost' i kachestvo» = Transactions of the International Symposium on Reliability and Quality. 2010;1:292–295. (In Russ.).

10. Lazuardy M.F.S., Anggraini D. Modern Front End Web Architectures with React.Js and Next.Js. International Research Journal of Advanced Engineering and Science. 2022;7(1):132–141.

Gusev Pavel

ORCID |


Voronezh, Russian Federation

Danilov Aleksandr

ORCID |


Voronezh, Russian Federation

Lebedev Danila


Voronezh, Russian Federation

Keywords: management, data, monitoring, architecture, algorithm, intelligent systems

For citation: Gusev P., Danilov A., Lebedev D. Implementation of monitoring environment components for managing multifunctional intelligent systems. Modeling, Optimization and Information Technology. 2024;12(2). URL: https://moitvivt.ru/ru/journal/pdf?id=1611 DOI: 10.26102/2310-6018/2024.45.2.046 (In Russ).

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Full text in PDF

Received 05.06.2024

Revised 24.06.2024

Accepted 27.06.2024

Published 30.06.2024