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Some issues of increasing the efficiency of electric machines

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Warianty tytułu
PL
Niektóre zagadnienia dotyczące zwiększania wydajności maszyn elektrycznych
Języki publikacji
EN
Abstrakty
EN
The article discusses ways to reduce losses to increase efficiency in electric machines. The amount of energy loss is determined by the efficiency coefficient. The issues of changing the size of an electric machine under electromagnetic loads with a constant power source and constant voltage are considered. It is taken into account that reducing energy losses reduces the degree of environmental pollution, which contributes to improving life around the world. The analysis of the dimensions of an electric machine is given, that is, the possibility of reducing electricity losses by changing its dimensions within possible limits, taking into account the design capabilities of electric machines. The analysis is based on the law of similarity, which is widely used in the design of electric machines.
PL
Rozważane są kwestie zmiany wielkości maszyny elektrycznej pod obciążeniem elektromagnetycznym ze stałym źródłem zasilania i stałym napięciem. Bierze się pod uwagę, że zmniejszenie strat energii zmniejsza stopień zanieczyszczenia środowiska, co przyczynia się do poprawy życia na całym świecie. Podano analizę wymiarów maszyny elektrycznej, czyli możliwość zmniejszenia strat energii elektrycznej poprzez zmianę jej wymiarów w możliwych granicach, biorąc pod uwagę możliwości konstrukcyjne maszyn elektrycznych. Analiza opiera się na prawie podobieństwa, które jest szeroko stosowane w projektowaniu maszyn elektrycznych.
Rocznik
Strony
171--173
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
  • Azerbaijan State University of Oil and Industry. Baku city, Azadlyg avenue 20
Bibliografia
  • [1] S. A Celtek, S.Ruşen, G. Karanfil Effects of Electric on the energy efficincy. Department of Energy Systems Engineering, Karamanoğlu Mehmetbey University, Karaman. 8th International Ege Energy Symposium and Exhibition, 2016, https://www. researchgate.net/publication/313767458_Effects_of_Electr ic Motors_On_The_Energy_Efficiency
  • [2] A. T. De Almeida, F. J. T. E. Ferreira, J. A. C. Fong, and C. U. Brunner, “Electric motor standards, eco-design and global market transformation,” Conf. Rec. - Ind. Commer. Power Syst. Tech. Conf., pp. 1–9, 2008.
  • [3] S.M. Lu, “A review of high-efficiency motors: Specification, policy, and technology,” Renew. Sustain. Energy Rev., vol. 59, pp. 1–12, 2016.
  • [4] A. Zabardast and H. Mokhtari, “Effect of high-efficient electric motors Celtek et al. / 8th International Ege Energy Symposium and Exhibition - 2016 on efficiency improvement and electric energy saving,” 3rd Int. Conf. Deregul. Restruct. Power Technol. DRPT 2008, no. April, pp. 533–538, 2008.
  • [5] “World Energy Outlook 2016, “IEA, Paris, License: CC BY 4.0 (report); CC BY NC SA 4.0 (Annex A), 2016. [Online]. https://www.iea.org/reports/world-energy-outlook-2016.
  • [6] “Energy Efficiency 2022” IEA, Paris, 2022, vol. License: CC BY 4.0. https://www.iea.org/reports/energy-efficiency-2022.
  • [7] “World Energy Outlook 2022, “IEA, Paris, License: CC BY 4.0 (report); CC BY NC SA 4.0 (Annex A), 2022. https://www.iea.org/reports/world-energy-outlook-2022.
  • [8] “Electric motors https://commission. and variable speed drives” europa.eu/energy-climate-change environment /standards-tools-and-labels/products-labelling rules-and-requirements/energy-label-and-ecodesign/energy efficient-products/electric-motors-and-variable-speed drives_en (accessed 21/04/2023, 2023).
  • [9] “Energy Efficiency Improvements in Electronic Motors and Drives,” 2000, https://doi.org/10.1007/978-3-642-59785-5.
  • [10] Kazovskiy Ye.YA. Perekhodnyye protsessy v elektricheskikh mashinakh peremennogo toka- M.L.: Izd. ANSSSR, 1962.-624 s.
  • [11] Jacek F. Gieras Electrical Machines 1st Edition. CRC Press; December 18, 2020, 452 pages. ISBN-10: 0367736942.
  • [12] Ryszard Palka and Marcin Wardach , Design and Application of Electrical Machines. May 2022., Pages: 352. https://doi.org/10.3390/books978-3-0365-4324-6
  • [13] Postnikov N.M., Ostapchuk L.B., Postnikov V.N. Godograf toka i parametry massivnogo rotora asinkhronnoy mashiny // Elektrichestvo, -1975.-№1, pp.38-42
  • [14] Paul C. Krause, Oleg Wasynczuk, and Scott D. Sudhoff.. Analysis and Design of Electric Machines. Publication date: 2013. Publisher: Wiley. 720 pages.
  • [15] T.J.E. Miller. Synchronous and Asynchronous Machines. Pergamum Press.1989. 448 pages
  • [16] R.Saidur. A review on electrical motors energy use and energy savings. Renewable and Sustainable Energy Reviews, Volume 14, Issue 3, April 2010, Pages 877-898
  • [17] L Nagel. What is the Average Efficiency of an Electric Motor, July 02, https://www.tytorobotics.com/blogs/articles/what-is-the average-efficiency-of-an-electric-motor 2023,
  • [18] Wilde, C. U. Brunner,”Energy-Efficiency Policy Opportunities for Electric Motor-Driven Systems”, International Energy Agency, Working paper, 2011.
  • [19] “Electric Motors and Variable Speed Drives – Standards and legal requirements for the energy efficiency of low-voltage three-phase motors”, ZVEI – Zentralverband Elektrotechnik- und Elektronikindustrie e.V., Division Automation – Electric Drive Systems, Frankfurt, December 2010, 2nd Edition.
  • [20] Vagati, “The synchronous reluctance solution: a new alternative in AC drives,” 20th International Conference on Industrial Electronics, Control and Instrumentation, 1994. IECON ’94., Bologna, 1994, pp. 1-13 vol.1.
  • [21] Lipo, T. A., “Synchronous reluctance machines – a viable alternative for AC drives.”, Wisconsin Electric Machines and Power Electronics Consortium, Research report, 1991.
  • [22] “Low voltage Process performance motors according to EU MEPS”, ABB catalog, October 2014
  • [23] “Rare Earths”, S. Geological Survey, Mineral Commodity Summaries, January 2016.
  • [24] Guglielmi, B. Boazzo, E. Armando, G. Pellegrino and A. Vagati, “Magnet minimization in IPM-PMASR motor design for wide speed range application,” 2011 IEEE Energy Conversion Congress and Exposition, Phoenix, AZ, 2011, pp. 4201-4207.
  • [25] “Motor technologies for higher efficiency in applications – An overview of trends and applications”, Danfoss Power Electronics – Danfoss VLT drives PE-MSMBM, November 2014.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-9bf8df37-609e-4471-a612-8c52b7aabf15
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