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Analysis of the reliability of photovoltaic-microwind based hybrid power system with battery storage for optimized electricity generation at Tlemcen, north west Algeria

Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article considers designing of a renewable electrical power generation system for self-contained homes away from conventional grids. A model based on a technique for the analysis and evaluation of two solar and wind energy sources, electrochemical storage and charging of a housing area is introduced into a simulation and calculation program that aims to decide, based on the optimized results, on electrical energy production system coupled or separated from the two sources mentioned above that must be able to ensure a continuous energy balance at any time of the day. Such system is the most cost-effective among the systems found. The wind system adopted in the study is of the low starting speed that meets the criteria of low winds in the selected region under study unlike the adequate solar resource, which will lead to an examination of its feasibility and profitability to compensate for the inactivity of photovoltaic panels in periods of no sunlight. That is a system with fewer photovoltaic panels and storage batteries whereby these should return a full day of autonomy. Two configurations are selected and discussed. The first is composed of photovoltaic panels and storage batteries and the other includes the addition of a wind system in combination with the photovoltaic system with storage but at a higher investment cost than the first. Consequently, this result proves that is preferable to opt for a purely photovoltaic system supported by the storage in this type of site and invalidates the interest of adding micro wind turbines adapted to sites with low wind resources.
Rocznik
Strony
161--185
Opis fizyczny
Bibliogr. 20 poz., rys., wykr., tab.
Twórcy
  • Unit of Research on Materials and Renewable Energies, Department of Physics, Faculty of Sciences, Abou Bekr Belkaid University, BP 119-13000- Tlemcen, Algeria
  • Unit of Research on Materials and Renewable Energies, Department of Physics, Faculty of Sciences, Abou Bekr Belkaid University, BP 119-13000- Tlemcen, Algeria
autor
  • Unit of Research on Materials and Renewable Energies, Department of Physics, Faculty of Sciences, Abou Bekr Belkaid University, BP 119-13000- Tlemcen, Algeria
Bibliografia
  • [1] Ministére de l’Energie et des Mines: Guide des Energies Renouvelables, 2007.
  • [2] Maouedj R.: Application de l’énergie photovoltaïque au pompage hydraulique sur les sites de Tlemcen et de Bouzaréah. MSc thesis, Université de Tlemcen, Tlemcen 2005.
  • [3] Gumuła S., Stanisz K.: Variants of Technical Solutions of the Demand for Electrical Energy of the Building Energetically Independent. Scientific Works of the Warsaw University of Technology, ser. Conf. 26, Warszawa 2009.
  • [4] Saheb-Koussa D, Belhamel M. Benferhat K.: Contribution à l’étude théorique du comportement d’un systéme hybride (éolien- photovoltaïque-diesel) de production d’électricité sans interruption. Afrique Science 5(2009), 1, 23–38.
  • [5] Reindl D.T., Beckman W.A., Duffie J.A.: Evaluation of hourly tilted surface radiation models. Sol. Energy 45(1990), 1, 9–17.
  • [6] El Hadidy M.A.: Performance evaluation of hybrid (wind/solar/diesel) power systems. Renew. Energ. 26(2002), 3, 401–413.
  • [7] Khahro S.F., Tabbassum K., Soomro A.M., Dong L., Liao X.: Evaluation of wind power production prospective and Weibull parameter estimation methods for Babaurband, Sindh Pakistan. Energy Convers. Manage. 78(2014), 956–967.
  • [8] Gumuła S., Knap T., Strzelczyk P., Szczerba Z.: Wind Power Industry. Wyd. AGH, Krakow 2006.
  • [9] Akpinar E.K., Akpinar S.: An assessment on seasonal analysis of wind energy characteristics and wind turbine characteristics. Energy Convers. Manage. 46(2005), 1848–1867.
  • [10] Gumuła S., Woźniak A.: The influence of power properties of the wind turbine on energetic and economic indicators of electric energy production. Trans. Inst. FluidFlow Mach. 132(2016), 57–69.
  • [11] Kolokotsa D. et al.: Methodology for optimal sizing of stand-alone photovoltaic/wind/generator systems using genetic algorithms. Int. J. Solar Energy 80(2006, 9, 1072–1088.
  • [12] Keyhani A., Ghasemi-Varnamkhasti M., Khanali M., Abbaszadeh R.: An assessment of wind energy potential as a power generation source in the capital of Iran. Tehran. Energy 35(2010), 188–201.
  • [13] Lu Y, Burnett L. et al.: Investigation on wind power potential on Hong Kong islands-an analysis of wind power and wind turbine characteristics. Int. J. Renew. Energ. 27(2002), 1, 1–12.
  • [14] Bogdan S.B., Salameh Z. M.: Methodology for optimally sizing the combination of a battery bank and PV array in a wind/PV hybrid system. IEEE Trans. Energy Conversion 11(1996),2, 367–375.
  • [15] Bin A, Hongxing Y. et al.: Computer aided design for PV/wind hybrid system. Int. J. Renew. Energ. 28(2003), 1491–1512.
  • [16] Gergaud O.: Modélisation énergétique et optimisation économique d’un systéme de production éolien et photovoltaique couplé au réseau et associé à un Accumulateur. PhD thesis, Electrotechnique, Ecole Normale Supérieure de Cachan, 2002.
  • [17] Protogeropouios C., Brinkworth B.J., Marshall R.H.: Sizing and techno economical optimization for hybrid solar photovoltaic/wind power systems with battery storage. Int. J. Energy Res. 21(1997), 465–479.
  • [18] Belghitri H.: Modélisation, simulation et optimisation d’un systéme hybride éolien photovoltaique. MSc thesis, Université de Tlemcen, Tlemcen 2011.
  • [19] http://www.bateriehaze.pl/
  • [20] http://fotoogniwa-sklep.pl/
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6f6d7ea9-a42f-411e-90dc-c59155797bf6
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