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Optimizing Control Algorithm of Energy Conversion System for Small Hydropower Plant Working at Variable Speed

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Języki publikacji
EN
Abstrakty
EN
The paper presents the control algorithm dedicated to a variable speed energy conversion system in a small hydropower plant. The energy conversion system consists of propeller water turbine, permanent magnet synchronous generator and power electronic converter. The main purpose of the algorithm, apart from the water level controlling, is to achieve the highest possible efficiency of the system. The changeable hydrological conditions, in the form of significant variations in a river’s flow and head throughout the year, requires to operate in a wide water flow and head range. Applied optimizing techniques guarantee maximal average efficiency independently of hydrological condition changes, by constant searching of the optimal operation parameters. The presented control method is implemented and tested in the energy conversion model, created in the Matlab/Simulink software. All characteristics and parameters were identified on the real small hydropower plant and on the special laboratory model.
Rocznik
Tom
Strony
41--46
Opis fizyczny
Bibliogr. 10 poz., wykr., wz.
Twórcy
autor
  • Cracow University of Technology
Bibliografia
  • [1]. Directive 2009/28/ec of the european parliament and of the council of 23 April 2009 on the promotion of the use of energy from renewable sources and amending and subsequently repealing Directives 2001/77/EC and 2003/30/EC. [Online]. Available:http://eurlex.europa.eu/LexUriServ/LexUr iServ.do?uri=Oj:L:2009:140:0016:0062:en:PDF
  • [2]. Report from the commission to the european parliament, the Council, the european economic and social committee and the Committee of the regions, Brussels, 27.3.2013, [Online]. Available: http://eurlex.europa.eu/LexUriServ/LexUriServ.douri=COM:2013:0175:FIN:EN:PDF
  • [3]. Fraile-Ardanuy J., Wilhelmi J.R., Fraile-Mora J.J., Perez J.I.: Variable-Speed Hydro Generation: Operational Aspects and Control, IEEE Transactions on Energy Conversion, vol. 21, no. 2, June 2006
  • [4]. Kaźmierkowski M., Krishnan R., Blaabjerg F., Irwin J.: Control In Power Electronics, ACADEMIC PRESS, 2003, ISBN: 0-12-402772-5
  • [5]. Status report on variable speed operation in small hydropower Austria: Energie publication, 2000. [Online]. Available:http://ec.europa.eu/energy/res/sectors/doc/small_hydro/statusreport_vspinshp_colour2.pdf
  • [6]. Borkowski D., Węgiel T.: Small Hydropower Plant with Integrated Turbine-Generators Working at Variable Speed. IEEE Transactions on Energy Conversion, Vol. 28, No. 2, June 2013, pp. 452-459
  • [7]. G. A. Aggidis, E. Luchinskaya, R. Rothschild, and D. C. Howard, The costs of small-scale hydro power production: Impact on the development of existing potential, Renewable Energy, vol. 35, pp. 2632–2638, 2010
  • [8]. A. Wijesinghe and L. Lei Lai, Small hydro power plant analysis and development, in Proc. 4th Int. Conf. DRPT, 2011, pp. 25–30
  • [9]. Borkowski D.: Laboratory model of small hydropower plant with variable speed operation. Zeszyty Problemowe – Maszyny Elektryczne Nr 3/2013 (100), pp. 27-32
  • [10]. Borkowski D., Węgiel T.: Optymalizacja przetwarzania energii dla małych elektrowni wodnych z generatorami pracującymi ze zmienną prędkością obrotową. Zeszyty Problemowe - Maszyny Elektryczne Nr 92/2011, pp. 121-126
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-290b82bd-b551-4e8d-b565-5c75d03d9718
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