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Hardware and Software Complex for Power Plant Management

https://doi.org/10.35596/1729-7648-2024-22-5-89-94

Abstract

Today, the issues of transferring private households to independent energy sources, including solar panels and solar collectors, are relevant. The article examines software options for hardware systems that can be used to manage energy supply systems for private homes. Technologies for using independent energy sources in the energy consumption system are presented, as well as the mathematical model for their optimization for remote country houses.

About the Authors

V. A. Rybak
Belarusian State University of Informatics and Radioelectronics
Belarus

Rybak Victor Aleksandrovich, Cand. of Sci., Associate Professor, Vice-Rector for Academic Affairs

220013, Minsk, P. Brovki St., 6

Tel.: +375 17 293-85-11



I. M. Rimarev
Belarusian State Acade my of Communications
Belarus

Rimarev I. M., Postgraduate at the Department of Physical and Mathematical Foundations of Computer Science

Minsk



References

1. Kunelbaev M. M. (2021) Development of Remote Monitoring for Solar Heating Systems. Bulletin of the South Ural State University. Series Power Engineering. (1), 90–98. DOI: 10.14529/power210110.

2. Muhiki Y., Kabarokole P. (2019) Automatic Solar Generation Control System. Automatic Control. (15), 57–88.

3. Kuldashov O. Kh., Nigmatov U. Zh. (2021) Automated System for Monitoring the Temperature of the Working Surface of Solar Panels. Automation and Software Engineering. 37 (3), 108–112.

4. Amirgaliev E. N., Kunelbaev M. M., Sundetov T. R. (2021) Development of an Automated Controller for a Solar Heating System. Bulletin of the South Ural State University. Series Power Engineering. (3), 83–90. DOI: 10.14529/power210310.

5. Kunelbaev M. M. (2020) Numerical Modeling for the Analysis of the Efficiency Parameters of a New Type of Flat Solar Collector. Bulletin of the South Ural State University. Series Power Engineering. (4), 77–85. DOI: 10.14529/power200409.

6. Vasiliev L. L., Harlampidi D. Kh., Tarasova V. A., Zhuravlev A. S., Kuznetsov M. A., Grakovich L. P., et al. (2019) Solar Heating System with a Two-Phase Multicomponent Liquid. Bulletin of the Gomel State Technical University named after P. O. Sukhoi. 76 (1), 56–64.

7. Omarov R. A., Kunelbaev M. M., Omarov D. R. (2021) Results of Studies of a Double-Circuit Solar Plant with Thermosiphon Circulation in Winter. Bulletin of the South Ural State University. Series Power Engineering. (4), 66–72. DOI: 10.14529/power210408.

8. Rybak V. A., Rimarev I. M., Al-Arkauazi Ali (2022) Solar Water Heating System, Invention BY 23792. Publ. 31.05.2022.


Review

For citations:


Rybak V.A., Rimarev I.M. Hardware and Software Complex for Power Plant Management. Doklady BGUIR. 2024;22(5):89-94. (In Russ.) https://doi.org/10.35596/1729-7648-2024-22-5-89-94

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ISSN 1729-7648 (Print)
ISSN 2708-0382 (Online)