SMALL POWER GENERATION: THE PATH TO SUSTAINABLE ENERGY SUPPLY

Published 2024-07-15
TECHNICAL SCIENCES Vol. 76 No. 2 (2024)
№2 (2024)
Authors:
  • S.K. SHERYAZOV
  • Zh.U. ZHUBANDYKOVA
  • T.S. KAINENOVA
  • A.A. YERKEN
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In the modern world, electricity has become a vital resource that ensures the functioning of almost all aspects of our daily lives. However, despite the rapid development of technology and infrastructure, power supply networks are increasingly facing challenges such as power shortages and congestion. This is where an innovative idea comes on the scene that could change the way we meet our electricity needs. We are talking about the concept of "automatic small-scale power generation" - an intelligent system that automatically activates small power plants located close to end users in the event of a power shortage in the main grid. This is not only a way to increase the reliability of electricity supply, but also to make it more stable and affordable.
The purpose of this study is to study and analyze the potential of small-scale power generation to improve the sustainability of energy supply, especially in regions with a power shortage, and to determine the best strategies for integrating such systems into the existing power grid with minimal losses and maximum efficiency. The situation in the industry is becoming increasingly difficult due to the growth of small generation capacities, which are changing the nature of electricity production.

S.K. SHERYAZOV

Doctor of Technical Sciences, Professor, South- Ural State Agrarian University, Chelyabinsk, Russia
Е-mail: sakenu@yandex.ru, https://orcid.org/0000-0001-8795-5114

Zh.U. ZHUBANDYKOVA

Candidate of Technical Sciences, Associate Professor (ARU), Aktobe Regional University named after K. Zhubanov, Aktobe, Kazakhstan.
Е-mail: tima2001@inbox.ru, https://orcid.org/0000-0003-2028-9262

T.S. KAINENOVA

Master of Pedagogy and Psychology, senior Lecturer, Aktobe Regional University named after K. Zhubanov, Aktobe, Kazakhstan.
Е-mail: kaynenova83@mail.ru, https://orcid.org/0000-0001-8750-5703

A.A. YERKEN

Master's student of the ARU named after to K. Zhubanova, Aktobe, Kazakhstan.
Е-mail: Abylai.erken@mail.ru, https://orcid.org/0009-0001-4537-8942

  1. Myshkina, L.S. (2017). Distributed generation is a means of increasing power system survivability // Novosibirsk State Technical University, Novosibirsk, Russia. Vol. 19, 23-30. DOI: https://www.energyret.ru/jour/article/view/336/295
  2. Pepermans G., Driesen J., Haeseldonckx D., Belmans R., D’haeseleer W.. (2005). Distributed generation: definition, benefits and issues, Energy Policy, Vol. 33, 787-798. DOI: http://dx.doi.org/10.1016/j.enpol.2003.10.004
  3. Nudel'man G., Onisova O. (2014). Relejnaya zashchita i avtomatika v usloviyah razvitiya maloj raspredelyonnoj energetiki. Elektroenergiya. Peredacha i raspredelenie. Vol. 4, 106-114. DOI: https://rucont.ru/efd/500220 [in Russian].
  4. Grabovskij, V. P.(2019). Analiz povrezhdaemosti valoprovoda turboagregata pri nesinhronnom vklyuchenii generatora v set'.Voprosy tekhnicheskih i fiziko-matematicheskih nauk v svete sovremennyh issledovanij [sbornik statej po materialam XVIII-XIX mezhdunarodnoj
  5. nauchno-prakticheskoj konferencii]. Novosibirsk: Associaciya nauchnyh sotrudnikov "Sibirskaya akademicheskaya kniga. Vol. 8-9, 43-50
  6. Edvard C. (2020). Protection coordination practices distribution systems distributed generation.DOI:https://electrical-engineering-portal.com/protection-coordination-practicesdistribution-systems-distributed-generation
  7. Sushko, A. A. (2022). Osnovnye vidy zashchit (relejnaya zashchita i avtomatika). Aktual'nye problemy obshchestva, ekonomiki i prava v kontekste global'nyh vyzovov[ Sbornik materialov XII Mezhdunarodnoj nauchno-prakticheskoj konferencii]. Moskva: Obshchestvo s
  8. ogranichennoj otvetstvennost'yu "IROK". DOI: https://www.elibrary.ru/item.asp?edn=whbxjq
  9. Lakervi E., Holmes, E.J. (2003) Electricity distribution network design 2nd edition.Published by Peter Peregrinus Ltd.,on behalf of the institution of Electrical Engineers, London,United Kingdom Reprinted with revision.
  10. Utverzhdenie Pravil ustrojstva elektroustanovok 20 marta 2015 goda (s izmeneniyami i dopolneniyami po sostoyaniyu na 3 yanvarya 2023 g.) https://adilet.zan.kz/rus/docs/V1500010851 [in Russian].
  11. Tishchenko, Y.N., Movsesova, N.S., Barybina, Y.G. (1990). Spravochnik po proektirovaniyu elektrosnabzheniya.
  12. Kobzistyj, O. V., Noga, I. G. (2014). O raschete perekhodnyh processov v elektricheskih setyah s nesimmetrichnym napryazheniem. Vol. 4, 281-285. DOI: https://www.elibrary.ru/item.asp?edn=taotkh
  13. Ilyushin, P. V., Nebera, A. A., Fedorov O. A. (2017). Perspektivy razvitiya i instrumenty avtomatizacii zadach ekspluatacii ustrojstv RZA. Relejnaya zashchita i avtomatizaciya. Vol.2(27), 28-37.
  14. Barkans, E. B. (2011). Zashchita ot razvalov i samovosstanovlenie energosistem. Relejnaya zashchita i avtomatizaciya. Vol. 4(5), 52-56. DOI: https://srzau-ric.ru/izdatelskaiadeiatelnost/knigi/barkanc/ [
  15. ZAKON RESPUBLIKI KAZAHSTAN Ob energosberezhenii i povyshenii energoeffektivnosti (s izmeneniyami i dopolneniyami po sostoyaniyu na 29.09.2014 g.) https://online.zakon.kz/Document/?doc_id=31112351
Electric power, power plant, content analysis, statistical analysis, comparative analysis, relay protection.

How to Cite

SMALL POWER GENERATION: THE PATH TO SUSTAINABLE ENERGY SUPPLY. (2024). Scientific Journal "Bulletin of the K. Zhubanov Aktobe Regional University", 76(2). https://doi.org/10.70239/arsu.2024.t76.n2.04

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