

Analytical assessment of electric energy transport via electric grids of the branch of PJSC ROSSETI Volga – Mordovenergo
https://doi.org/10.24223/1999-5555-2025-18-1-4-14
Abstract
A study has been conducted on the peculiarities of electric energy transport in the power supply systems of Mordovenergo for the period 2018–2023. The structure of the company is described, the characteristics of the main elements of the studied electric networks are provided, and an assessment of the balance of transmission of electric energy in and out of the company's networks is presented. Based on information published in the open press, an analytical assessment of the failure rate in the company's electrical networks was carried out on a monthly basis for each year of the study period. An assessment has been made of the consequences of emergency shutdowns in terms of the amount of electrical energy undersupplied to consumers. Based on the proposed classification, an analysis of the failure intensity was performed, and the percentage of failures of various intensities was determined. Notably, slightly more than 1% of the total number of high-intensity failures accounts for up to 28% of the total amount of electrical energy undersupplied to consumers. A detailed analysis of the main causes of damage to electrical network elements has been performed. The percentage ratio of the number of failures attributed to the most common causes relative to the total number of outages during the study period was established. It was found that more than 72% of failures occurred due to non-compliance with maintenance regulations and delays in detecting and addressing defects. The obtained indicators were compared with similar indicators in the electrical networks of other branches of PJSC ROSSETI Volga. The research employed general scientific methods, as well as numerical analysis techniques. Visualization of the obtained analysis results is presented using the capabilities of the MATLAB graphics editor. The results of this research may be of interest to the management of electric grid companies, as well as researchers and engineers engaged in studies related to reliability of power supply.
About the Authors
I. V. NaumovRussian Federation
664074, Irkutsk, 83 Lermontov str.; 664038, Irkutsk district, village Youth 1/1
I. V. Yamshchikova
Russian Federation
664038, Irkutsk district, village Youth 1/1
N. I. Butina
Russian Federation
664038, Irkutsk district, village Youth 1/1
V. A. Singatulina
Russian Federation
664038, Irkutsk district, village Youth 1/1
References
1. Energy industry of Mordovia. [Electronic resource]. Access mode: https://ru.wikipedia.org/wiki/%D0 (accessed 14.12.2024).
2. Supporting materials. The scheme and program for the development of Russia's electric power systems for 2024-2029. [Electronic resource]. Access mode: https://www.so-ups.ru/fileadmin/files/company/future_plan/public_discussion/2024/final/53_Respublika_Mordovija.pdf (accessed 14.12.2024).
3. Branch of PJSC ROSSETI Volga – Mordovenergo. [Electronic resource]. Access mode: PJSC ROSSETI Volga – official website / RU / About the company / Branches / Branch of PJSC ROSSETI Volga – Mordovenergo (accessed 14.12. 2024).
4. Explanatory Note to the Energy Saving and Energy Efficiency Improvement Program of the branch of PJSC ROSSETI Volga – Mordovenergo for 2023–2027. [Electronic resource]. Access mode: https://www.rossetivolga.ru/ru/o_kompanii/energosber/ (accessed 14.12.2024).
5. PJSC ROSSETI Center. Production potential. [electronic resource]. Access mode: https://www.mrsk-1.ru/investors/indicators/productionpotential/halfyear1/ (accessed 15.12.2024).
6. Fomina O. A., Teslenok S. A., Stultseva N. N. Assessment of damage from dangerous hydrometeorological phenomena in the territory of the Republic of Mordovia. [Electronic resource]. Access mode: https://cyberleninka.ru/article/n/otsenka-uscherba-ot-opasnyhgidrometeorologicheskih-yavleniy-na-territorii-respubliki-mordoviya (accessed 15.12.2024).
7. Climate change in Mordovia. Russia. [Electronic resource]. Access mode: https://www.meteoblue.com/ru/climate-change/%D0%9C%D0%BE%D1%80%D0%B4%D0%BE%D0%B2%D0%B8%D1%8F_%D0%A0%D0%BE%D1%81%D1%81%D0%B8%D1%8F_525369 (accessed 15.12.2024).
8. Expert opinion on the establishment of long-term regulatory parameters and the economic feasibility of the costs of providing services for the transmission of electric energy through the distribution networks of the branch of PJSC ROSSETI Volga – Mordovenergo for 2024. Access mode: https://e-mordovia.store.e-mordovia.ru/iblock/63e/63ec8b20c791e63863fafd8246e32257/Mordovenergo-2024.pdf (accessed 15.12.2024).
9. Naumov I. V. On the issue of reliability and quality of functioning of electric networks (on the example of the branch of PJSC ROSSETI Volga – Samara Distribution Networks). Reliability and safety of energy 2024; 1(17): 65–73.
10. Naumov I. V. Causes of accidents in electrical distribution networks (using the example of the branch of PJSC ROSSETI Volga – Saratov Distribution Networks). Reliability and safety of energy 2024; 2(17): 88–97.
11. Naumov I. V. On the issue of reliability of power transmission (on the example of the branch of PJSC ROSSETI Volga – Penzaenergo). Reliability and safety of energy 2024; 3(17): 164–171.
12. Naumov I. V. Features of power transmission in electric distribution networks (on the example of the branch of PJSC ROSSETI Volga – Ulyanovsk Distribution Networks). Grozny Natural Science Bulletin 2024; 1(35)(9): 118 –126. DOI: 1710.25744/genb.2024.55.33.017
Review
For citations:
Naumov I.V., Yamshchikova I.V., Butina N.I., Singatulina V.A. Analytical assessment of electric energy transport via electric grids of the branch of PJSC ROSSETI Volga – Mordovenergo. Safety and Reliability of Power Industry. 2025;18(1):4-14. (In Russ.) https://doi.org/10.24223/1999-5555-2025-18-1-4-14