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Tytuł artykułu

Stand-alone hybrid system for extracting maximum power and constant voltage under load variation

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Samodzielny system hybrydowy do pozyskiwania maksymalnej mocy i stałego napięcia przy wahaniach obciążenia
Języki publikacji
EN
Abstrakty
EN
This paper presents an integrated stand-alone wind / Photovoltaic (PV) system enhanced with storage system and the required controllers. The proposed scheme concerned with maximum electrical power extracting from the two renewable energy resources to maintain the DC bus with a fixed voltage, under different levels of wind speed and solar irradiation irrespective of the battery state of charge (SOC). To approach full utilization of the system components, proper power management strategy is implemented. The validity of the proposed scheme is confirmed through extensive simulation results under different operating conditions.
PL
W artykule przedstawiono zintegrowany, autonomiczny system wiatrowy / fotowoltaiczny (PV) wzbogacony o system magazynowania i wymagane sterowniki. Proponowany schemat dotyczył maksymalnej mocy elektrycznej wydobywanej z dwóch ´zródeł energii odnawialnej w celu utrzymania stałego napięcia na szynie DC, przy różnych poziomach prędkości wiatru i napromieniowania słonecznego, niezależnie od stanu naładowania akumulatora (SOC). Aby zbliżyć się do pełnego wykorzystania elementów systemu, wdrażana jest właściwa strategia zarządzania energią. Trafność proponowanego schematu jest potwierdzona wynikami szeroko zakrojonych symulacji w róznych warunkach eksploatacyjnych.
Rocznik
Strony
76--80
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
  • Al-Ahliyya Amman Univeristy, Faculty of Engineering, Amman, Jordan
  • Yarmouk University,Hijjawi Faculty of Engineering Technology, Irbid, Jordan
Bibliografia
  • [1] CA. Chatterjeea, A. Brenta, R. Rayudua, and P. Vermaa, "Microgrids for rural schools: an energy-education accord tocurb societal challenges for sustainable rural developments",Int. Journal of Renewable Energy Development, vol. 18, no 3, pp. 231-241, October 2019.
  • [2] Priya, Ramalingam Adikesavan, Devaraj Dhanasekaran, and Parasurama Chandrasekaran Kishoreraja. "Performance analysis of PMSG based wind energy conversion system using two stage matrix converter." Przeglad Elektrotechniczny 2 (2019).
  • [3] Y. Abu Eldahab, N. Saad, and A. Zekry, " Enhancing the energy utilization of hybrid renewable energy systems", Int. Journal of Renewable Energy Research, vol.10, no 4, December 2020.
  • [4] S. Omran, and R. Broadwater, "Grid integration of a renewable energy system: modeling and analysis", Int. Journal of Renewable Energy Research, vol.10, no 3, September 2020.
  • [5] Y. Nassar, M. Abdunnabi, M. Sbeta, A. Hafez, K. Amer, A. Ahmed, and B. Belgasim, " Dynamic analysis and sizing optimization of a pumped hydroelectric storage-integrated hybrid PV/wind system: A case study", Energy Conversion and Management, vol. 229, December 2020.
  • [6] M. Azaroual, M. Ouassaid, and M. Maaroufi, "An optimal energy management of grid-connected residential photovoltaicwind-battery system under step-rate and time-of-use tariffs"’, Int. Journal of Renewable Energy Research, vol. 10, no 4, pp. 1829-1843, December 2020.
  • [7] B. Sun, " A multi-objective optimization model for fast electric vehicle charging stations with wind, PV power and energy storage", Journal of Cleaner Production, Accepted for publication in December 2020.
  • [8] R. Putri, M. Rifa’i, I. Syamsiana, and F. Ronilaya, " Control of PMSG stand-alone wind turbine system based on multiobjective PSO", Int. Journal of Renewable Energy Research,vol.10, no 2, pp. 998-1004, June 2020.
  • [9] A. Masih, and H. Verma, "Optimization and reliability evaluation of hybrid solar-wind energy systems for remote areas", Int. Journal of Renewable Energy Research, vol.10, no 4, pp. 1696-1707, December 2020.
  • [10] Y. Anagreh, A. Alnassan, and A. Radaideh, " High performance mppt approach for off-line pv system equipped with storage batteries and electrolyzer", Int. Journal of Renewable Energy Development, vol. 10, no 3, pp. 507-515, February 2021.
  • [11] S. Marih, L. Ghomri, and B. Bekkouche, "Evaluation of the Wind Potential and Optimal Design of a Wind Farm in the Arzew Industrial Zone in Western Algeria", Int. Journal of Renewable Energy Development, vol. 9, no 2, pp. 177-187, May 2020.
  • [12] P. Nema, R. Nema, and S. Rangnekar, "A current and future state of art development of hybrid energy system using wind and PV-solar: A review", Renewable and Sustainable Energy Review, Vol. 13, no 8, pp. 2096–2103, October 2009.
  • [13] B. Bhandari, S. Poudel, K. Lee, S. Ahn, "Mathematical modeling of hybrid renewable energy system: A review on small hydrosolar-wind power generation". Int Journal of precision Enginering and Manufactoring- Green Technology. vol. 1, pp. 157–173, April 2014.
  • [14] A. Tawfiq, M. Abed El-Raouf, A. El- Gawad, and M. Farahat, "Analysis the impact of renewable energy based-wind farms installed with electrical power generation system on reliability assessment", Int. Journal of Renewable Energy Research", vol.10, no 4, pp. 1595-1607, December 2020.
  • [15] S. Bisoyi, R. Jarial, and R Gupta, "Modeling and Analysis of Variable Speed Wind Turbine equipped with PMSG". Int. Journal of Current Engineering Technology, vol. 2, pp. 421–426, February 2014.
  • [16] A. Chouaib, H. Messaoud, and M. Salim, "Sizing and optimization for hybrid central in south Algeria based on three different generators", Int. Journal of Renewable Energy Development, vol. 6, no 3, pp. 263-272, September 2017.
  • [17] F. Blaabjerg, and K. Ma, "Wind energy systems". Proceedings of IEEE, vol. 105, no 11, pp. 2116–2131, May 2017.
  • [18] M. Khan, J. Wang, L. Xiong, and M. Ma, " Fractional Order Sliding Mode Control of PMSG-Wind Turbine Exploiting Clean Energy Resource", Int. Journal of Renewable Energy Development, vol. 8, no 1, pp. 81-89, January 2019.
  • [19] O. Anaya-Lara, N. Jenkins, J. Ekanayake, P. Cartwright, and M. Hughes, Wind Energy Generation: Modelling and Control, John Wiley and Sons, 2009.
  • [20] ELmorshedy M., S. M. Allam S., and Rashad E., "Load voltage control and maximum power extraction of a stand-alone wind-driven PMSG including unbalanced operating conditions", Eighteenth International Middle East Power Systems Conference (MEPCON), 27-29 Dec. 2016
  • [21] K. Hasan, Control of power electronic interfaces for photovoltaic power systems, M.Sc. Thesis, Univresity of Tasmania, Australia, August 2009.
  • [22] M. Husain, and A. Tariq, "Modeling and study of a standalone PMSG wind generation system using Matlab/Simulink", Universal Journal of Electrical and Electronic Engineering, vol. 2, no 7, pp. 270–277, 2014.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1dfa521d-8117-4e8c-9642-3b92e119ea16
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