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Wind-powered centrifugal pump system : investigating the potential for removing the interfacing converter stabilizer

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Population growth has led to a significant increase in demand for water resources. The scarcity of surface water has made tapping into available groundwater resources essential. This article presents a study focusing on water pumping using a less cumbersome wind system with improved efficiency. This is achieved by eliminating the power electronics interface and its control, which in turn removes harmonics generated by the static converter and requires less maintenance. The simulation results are compared with those from similar systems that include the power electronics bay.
Rocznik
Strony
21--32
Opis fizyczny
Bibliogr. 15 poz., rys., wykr.
Twórcy
autor
  • Laboratory of Renewable Energy Mastery, University of Bejaia, 06000
  • Laboratory of Renewable Energy Mastery, University of Bejaia, 06000, Algeria
  • Laboratory of Renewable Energy Mastery, University of Bejaia, 06000, Algeria
Bibliografia
  • [1] Z. Al «Wind-Powered electric Water-pumping system installed in a remote location», Applied Energy, 65,339 ± 34, 2000.
  • [2] 0. Badran Al «Wind turbine utilization for Water pumping in Jordan», Journal wind Engineering and Industrial Aerodynamics, 91, 1203-1214, 2003.
  • [3] C. Evangelista, and Al «Lyapunov-Designed Super-Twisting Sliding Mode Control for Wind Energy Conversion Optimization», IEEE Transactions on Industrial Electronics, vol. 60, no. 2, 2013.
  • [4] T. Ghennam, and Al «Advanced Control System of DFIG based Wind Generators for reactive Power Production and Integration in a Wind farm dispatching», Energy Conversion and Management, 105, 240-250, 2015.
  • [5] S. Ghoudelbourk, and Al «New techniques to improve the power control in the double-fed induction generator wind turbine», Wind Engineering, February, 2016.
  • [6] F.Abdoune, and Al« Terminal voltage build-up and control of a DFIG based stand-alone wind energy conversion system »,Renewable Energy 97,468,480, 2016.
  • [7] R.Pereira, and Al «Active stall control for large offshore horizontal axis wind turbines; a conceptual study considering different actuation methods», Journal of Physics: Conference Series 555, 012082, 2014.
  • [8] B.S. Pali, S. Vadhera «A novel pumped hydro-energy storage scheme with wind energy for power generation at constant voltage in rural areas», Renewable Energy 127, 802-810, 2018.
  • [9] R.N. Clark, K.E. Mulk «Water Pumping for livestock», Wind Power Proceedings, USA, 1992.
  • [10] F.Amrane, A.Chaiba, S.Mekhilef «High performances of Grid-connected DFIG based on Direct Power Control with Fixed Switching Frequency via MPPT Strategy using MRAC and Neuro-Fuzzy Control», Journal of Power Technologies 96, (1), 2016.
  • [11] A.Chenna, D.Aouzellag, K.Ghedamsi « Study and Control of a Pumped Storage Hydropower System Dedicated to Renewable Energy Resources», Journal Europeen des Systemes Automatises. Vol.53, No.l. PP. 95-102. February, 2020.
  • [12] H.Iman-Eini, D.Frey, S.Bacha, C.Boudinet, and J-L.Schanen «Evaluation of Loss Effect on Optimum Operation of Variable Speed Micro-hydropower Energy Conversion Systems», Renewable Energy Vol.131, PP.1022-1034. February, 2019.
  • [13] F.Amrane, A.Chaiba, S.Mekhilef «High performances of Grid-connected DFIG based on Direct Power Control with Fixed Switching Frequency via MPPT Strategy using MRAC and NeuroFuzzy Control» Journal of Power Technologies 96 (1) PP. 27-39. 2016.
  • [14] S. Taraft, D. Rekioua, D. Aouzellag, S. Bacha «A proposed strategy for power optimization of a wind energy conversion system connected to the grid» Energy Conversion and Management 101 PP. 489-502, 2015.
  • [15] S. Taraft, D. Rekioua, D. Aouzellag, «Performances Study of the DFIG Associated to the Variable Speed Wind Turbine Connected to the Grid»International Journal of Electrical and Power Engineering 2 (5), PP.353-364, 2008.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-3d737757-1dde-4764-8d93-5be3a5717341
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