Труды КНЦ (Технические науки вып. 2/2024(15))

P. 300-304. 18. Kashani M. G., Babaei S., Bhattacharya S. SVC and STATCOM application in Electric Arc Furnace efficiency improvement // 2013 4th IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG). Rogers, AR, USA, 2013. P. 1-7. 19. Межгосударственный стандарт ГОСТ 30804.4.30-2013. Электрическая энергия. Совместимость технических средств электромагнитная. Методы измерений показателей качества электрической энергии. Введ. 01.01.2014. М.: Стандартинформ, 2014. 60 с. 20. IEEE Std 1459-2010. IEEE Standard Definitions for the Measurement of Electric Power Quantities Under Sinusoidal, Nonsinusoidal, Balanced, or Unbalanced Conditions. Approved 2 February 2010. IEEE, 2010. 50 p. 21. Кацман М. М. Электрические машины: учебник для студ. учреждений сред. проф. образования. М.: Издательский центр «Академия», 2017. 496 с. 22. Кабышев А. В. Компенсация реактивной мощности в электроустановках промышленных предприятий. Томск: Изд-во Томского политехнического университета, 2012. 234 с. References 1. Ershov A. M. Sistemy elektrosnabzheniya. Chast' 2: Elektricheskie nagruzki. Kompensatsiya reaktivnoy moshchnosti [Electrical power systems. Part 2: Electrical loads. Reactive power compensation]. Chelyabinsk, Publ. centre SUSU, 2018, 230 p. (In Russ.). 2. Zhezhelenko I. V., Saenko Yu. L. Pokazateli kachestva elektricheskoy energii i ih kontrol' na promyshlennyh predpriyatiyah [Power quality indices and control of those at industrial enterprises]. Moscow, Energoatomizdat, 2000, 252 p. (In Russ.). 3. Andrei H., Cepisca C., Grigorescu S. Power quality and electrical arc furnaces. Rijeka, InTech, 2011, 362 p. 4. Bhonsle D. C., Kelkar R. B. Analyzing power quality issues in electric arc furnace by modeling. Energy, 2016, Vol. 115, pp. 830-839. 5. Sajeesh D., Seema J. Research on power quality issues in electric arc furnace and its mitigation techniques. International Journal o f Engineering Research and Technology, 2014, Vol. 3, No. 1, p p . 1121-1124. 6. Zhezhelenko I. V., ShidlovskiyA. K., Pivnyak G. G., Saenko Yu. L., Noyberger N. A. Elektromagnitnaya sovmestimost' potrebiteley [Electromagnetic compatibility of consumers]. Moscow, Mashinostroenie, 2012, 351 p. (In Russ.). 7. Zhu X., Chen H., Hu P., Chen R. Reactive compensation for AC electric arc furnace considering power quality constraints. Proceedings o fInternational Conference on Harmonics and Quality o fPower, ICHQP. Belo Horizonte, 2016, pp. 919-924. 8. GOST 32144-2013. Elektricheskaya energiya. Sovmestimost' tehnicheskih sredstv elektromagnitnaya. Normy kachestva elektricheskoy energii v sistemah elektrosnabzheniya obshchego naznacheniya [Electrical energy. Electromagnetic compatibility of technical means. Standards of power quality in general-purpose power supply systems]. Moscow, Standartinform, 2014, 20 p. (In Russ.). 9. Deaconu S. I., Nicolae P. G., Latinovic T. Comparative study for EAF’s reactive energy compensation methods and power factor improvement. WSEAS Transactions on Systems, 2010, Vol. 9, No. 9, pp. 979-988. 10. Eremia M., Liu Ch., Edris A. Advanced Solutions in Power Systems: HVDC, FACTS, and Artificial Intelligence . Hoboken, New Jersey, Wiley & IEEE Press, 2016, ch. 5, pp. 271-338. 11. Static Var Compensator The key to better arc furnace economy. ABB Group. Leading digital technologies for industry. Available at: https://library.e.abb.com/public/6c4608703c0e7760832577bb00 4faee9/A02-0102 E.pdf (accessed 25.04.2024). 12. Staticheskie generatory reaktivnoy moshchnosti STATKOM [Static VAR generator STATCOM]. Gruppa SVEL [SVEL Group]. (In Russ.). Available at: https://svel.ru/catalog/ustroystva-uluchsheniya- kachestva-elektricheskoy-energii/staticheskie-generatory-reaktivnoy-moshchnosti-statkom/ (accessed Труды Кольского научного центра РАН. Серия: Технические науки. 2024. Т. 15, № 2. С. 83-92. Transactions of the Kola Science Centre of RAS. Series: Engineering Sciences. 2024. Vol. 15, No. 2. P. 83-92. © Губская Е. И., Колобов В. В., Карпов А. С., Ярошевич В. В., 2024 91

RkJQdWJsaXNoZXIy MTUzNzYz