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Nine-phase transmission line design: implementation using Matlab/Simulink

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Warianty tytułu
PL
Projekt dziewięciofazowej linii przesyłowej z wykorzystaniem oprogramowania Matlab/Simulink
Języki publikacji
EN
Abstrakty
EN
This paper presents the design and the study of a nine-phase transmission line system. Two lines (400 kV over 200 km and 400 kV over 600 km) are implemented using Matlab/Simulink to solve problems of environmental damage caused by several lines located in the same place, the multiplicity of electric faults and the poor power capability transmitted of the three-phase systems. The results obtained show that nine-phase line system could connect up to 9.6 times more load than that of a three-phase line system.
PL
W artykule zaprezentowano projekt i analizę dziewięciofazowej linii przesyłowej. Analizowano dwie linie 400 kV – 200 km i 400 kV 600 km. Stosując Matlab/Simulink analizowano zakłócenie środowiska, możliwości powstawania błędów i możliwości przesyłania mocy. Wykazano że sieć dziewięciofazowa pozwala na obciążalność 9.6 razy większą niż sieć trójfazowa.
Rocznik
Strony
1--9
Opis fizyczny
Bibliogr. 27 poz., rys., tab.
Twórcy
  • Electrical and Electronic Engineering Sciences, University of Johannesburg, Johannesburg, South Africa
  • Postgraduate School of engineering Management, Johannesburg, South Africa
  • ESKOM Holding Limited, Senior Research Associate: University of Johannesburg, Johannesburg, South Africa
Bibliografia
  • 1. https://https://www.britannica.com/event/Industrial-Revolution. Accessed in July, 15 2018.
  • 2. Phyllis M. Deane, “The first industrial revolution.”Cambridge University Press, 1979.
  • 3. Robert C. Allen, “The British industrial revolution in global perspective.” Cambridge University Press, Vol: 1, 2009.
  • 4. Rolak, M. and Malinowski, M., 2014. Six-phase symmetrical induction machine under fault states-modelling, simulation and experimental results. Przeglad Elektrotechniczny, 90(11), pp.91-95.
  • 5. Michael C. Jensen, “The modern industrial revolution, exit, and the failure of internal control systems”. The Journal of Finance, Vol. 48, no. 3 pp:831-880, 1993.
  • 6. Kirkpatrick Sale, “Rebels against the future, The Luddites and their war on the Industrial Revolution: lessons for the computer age”. Addison-Wesley, New York: 1995.
  • 7. Xifan Wang and McDonald R. James. “Modern power system planning”. McGraw-Hill Companies, 1994.
  • 8. http://www.hydroquebec.com/teachers/pdf/doc-electricityfromthe-power-station-to-the-home.pdf. Accessed July, 17 2018.
  • 9. KUMALA, R. and SOWA, P., 2014. Intersystem faults in the coupled high-voltage line working on the same tower construction. System, 2, p.B2.
  • 10. Eboule, Patrick S. Pouabe, Jan Harm C. Pretorius, and Nhlanhla Mbuli. “Implementation of a Future Nine-Phase Power Transmission Line”. IEEE PES Asia-Pacific Power and Energy Engineering Conference (APPEEC). pp: 1-5, Dec 2019.
  • 11. https://www.worldenergy.org/wp-content/uploads/2013/09/ World-Energy-Scenarios_Composing-energy-futures-to2050_Full-report.pdf. Accessed December, 17 2018.
  • 12. F. Sautriau. Cahier technique n 158: Protection des reseaux par le systme de selectivite logique, Schneider Electric Collection technique, 1990.
  • 13. G. Y Liu and Y. H. Yang. Study of four-phase power transmission systems, IEE Proceedings-Generation, Transmission and Distribution, Vol. 149.4, pp: 397-401, 2002.
  • 14. M.W. Mustafa, M. R. Ahmad, and Hussain Shareef. Fault analysis on double three-phase to six-phase converted transmission line. 7th IEEE International Conference on Power Engineering, pp: 1030–1034, Nov 2005.
  • 15. M.W. Mustafa, and M.R. Ahmad. Transient stability analysis of power system with six-phase converted transmission line. IEEE International Conference in Power and Energy. pp: 262- 266, November 2006.
  • 16. Takani, H., Sonobe, Y., Kagami, T., Kawano, F., Beaumont, P., Baber, G.P. and Main, G.T., 2010. The application and advantages of multi-phase autoreclosing.
  • 17. A.O. Ibe and B.J. Cory, Fault-location algorithm for multiphase power lines. In IEE Proceedings C (Generation, Transmission and Distribution), Vol. 134, No. 1, pp: 43-50. January
  • 18,. Shashank Bhutada and N.R.Bhasme, A Review on Multiphase System for High Power Industrial Applications. International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering Vol. 5, pp: 5094-5100. June 2016.
  • 19. Patrick S. Pouabe Eboule. “Power transmission lines fault detecting and locating using artificial neural networks”. University of Johannesburg, Master diss.,2017.
  • 20. Patrick S. Pouabe Eboule, Ali N. Hasan and Bhekisipho Twala. “The Use of Multilayer Perceptron to Classify and Locate Power Transmission Line Faults”. In Artificial Intelligence and Evolutionary Computations in Engineering Systems: pp. 51- 58. Singapore: Springer, 2018.
  • 21. B.M. Weedy, B.J. Cory, N. Jenkins, J.B. anayake and G. Strbac. “Electric power systems”. John Wiley and Sons, 2012.
  • 22. R.C. Dugan, M.F. McGranaghan, H.W. Beaty and S. Santoso. “Electrical power systems quality”, New York: Mcgraw-Hill, Vol. 2, 1996.
  • 23. J.D. Glover, M.S. Sarma and T. Overbye “Power System Analysis and Design, SI Version”. Cengage Learning. 2012.
  • 24. T. Judendorfer, S. Pack and M. Muhr “Aspects of high voltage cable sections in modern overhead line transmission systems”. International Conference in High Voltage Engineering and Application, pp. 71-75. IEEE. 2008, November.
  • 25. https://cr4.globalspec.com/thread/96200/Transmission-andDistribution-Line. Accessed July, 15 2018.
  • 26. T. Gonen, “Electrical power transmission system engineering: analysis and design”. CRC press, 2015.
  • 27. Thomas Ordon and K. E. Lindsey. “Considerations in the design of three phase compact transmission lines”. International conference in Transmission and Distribution Construction and Live Line Maintenance, pp. 108-114. IEEE, 1995.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2db50ed7-725f-4eea-8a22-6a2d1b468df3
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