800
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Performance analysis and multi-mode control of grid connected micro Wind–solar hybrid generator in Saudi Arabia

, , , , &
Pages 550-565 | Received 14 Aug 2021, Accepted 12 May 2022, Published online: 04 Jun 2022

References

  • Barhoumi EM, Okonkwo PC, and Zghaibeh M, et al. Renewable energy resources and workforce case study Saudi Arabia: review and recommendations. J Therm Anal Calorim. 2020;141:221–230.
  • Alshammar N, Samy MM, Asumadu J. Optimal economic analysis study for renewable energy systems to electrify remote region in kingdom of Saudi Arabia. Proceeding of the 20th international middle east power system conference (Mepcon'20); 2018, Cairo University, Egypt, p. 18–20.
  • Zell E, Gasim S, Wilcox S, et al. Assessment of solar radiation resources in Saudi Arabia. Science Direct-Solar Energy. 2015;119:422–438.
  • Alharthi YZ, Siddiki MK, Chaudhry GM. Resource assessment and techno-economic analysis of a grid-connected solar PV-wind hybrid system for different locations in Saudi Arabia. Sustainability. 2018;10:3690, doi:10.3390/su10103690.
  • Allhibi H, Chowdhury H, Zaid M, et al. Prospect of wind energy utilization in Saudi Arabia: A review. Sci Direct – Energy Procedia. 2019;160:746–751. 2nd International Conference on Energy and Power, ICEP2018, 13–15 December 2018, Sydney, Australia.
  • Alabbadi N. Wind energy resource assessment for five locations in Saudi Arabia. Renewable Energy. 2005;30:1489–1499.
  • Rratlas.energy.gov.sa. (2018). Saudi Arabia renewable resource atlas [Internet] Available from: https://rratlas.energy.gov.sa [cited 2020 Marsh 1].
  • Abassi R, Chebbi S. Energy management strategy for a grid connected wind-solar Hybrid system with battery storage: policy for optimizing conventional energy generation. Int Rev Electr Eng (IREE). Marsh – April 2012;7(2):3979–3990.
  • Thi Minh Chau Le. “Couplage onduleurs photovoltaïques et réseau, aspects contrôle / commande et rejet de perturbations”. THÈSE DE L’UNIVERSITÉ DE GRENOBLE. 25 Janvier 2012.
  • Tran-Quoc T, Caire R. chapitre 5 du livre “La distribution d’énergie électrique en présence de production décentralisée”, éditeur LAVOISIER, 2010.
  • Samy MM, Mossad MI, Barakat S. Reliability support of undependable grid using green energy systems; economic study. IEEE Access J. 2021;9:14528–14539.
  • G. Rami, “Contrôle de tension auto adaptatif pour des productions décentralisées d’énergies connectées au réseau électrique de distribution”, Thèse doctorat de l’INPG, 2006.
  • Tran-Quoc T, Le Thi Minh C, Bacha S, et al. Local voltage control of PVs in distribution networks. CIRED, Prague, Czech republic; 8–11 May 2009.
  • Loenvenbruck P. Impact of distributed generation on losses, draw off costs from transmission network and investments of the French distribution network operator Erd. CIRED; juin 2009.
  • Bhandari B, Lee K-T, Lee CS, et al. A novel off-grid hybrid power system comprised of solar photovoltaic, wind, and hydro energy sources. Appl Energy. 2014;133:236–242.
  • Younsi S, Hamrouni N. Control of grid connected three-phase inverter for hybrid renewable systems using sliding mode controller. (IJACSA) Int J Adv Comput Sci Appl. 2018;9(11):336–342.
  • Zhang Wp, Maleki A, Rosen MA, et al. Sizing a stand-alone solar-wind-hydrogen energy system using weather forecasting and a hybrid search optimization algorithm. Energy Convers Manage. 2019;180:609–621.
  • Chen S, Kumar A, Wong WC, et al. Hydrogen value chain and fuel cells within hybrid renewable energy systems: Advanced operation and control strategies. Appl Energy. 2019;233–234:321–337.
  • Abu-Hamdeh N, Alnefaie K. Techno-economic comparison of solar power tower system/photovoltaic system/wind turbine/diesel generator in supplying electrical energy to small loads. J Taibah Univ Sci 13(1):216224, doi: 10.1080/16583655.2018.1556916-2019.
  • Eteiba MB, Barakat S, Samy MM, et al. “Optimization of an Off-grid PV/Biomass hybrid system with different battery technologies. Sustainable Cities Soc 2018;40:713–727. doi:10.1016/j.scs.2018.01.012.
  • Samy MM, Barakat S, Ramadan HS. A flower pollination optimization algorithm for an off-grid PV-Fuel cell hybrid renewable system. Int J Hydrogen Energy (IJHE). 2019;44(4):2141–2152. doi:10.1016/j.ijhydene.2018.05.127.
  • Samy MM, Barakat S, Ramadan HS. Techno-economic analysis for rustic electrification in Egypt using multi-source renewable energy based on PV/ wind/ FC. Int J Hydrogen Energy (IJHE). 2020;45(20):11471–11483.
  • Barakat S, Samy MM, Eteiba MB, et al. Feasibility study of grid connected PV-biomass integrated energy system in Egypt. Int J Emerg Electr Power Syst. 2016;17(5). doi:10.1515/ijeeps-2016-0056.
  • Samy MM, Elkhouly HI, Barakat S. Multi-objective optimization of hybrid renewable energy system based on biomass and fuel cells. Int J Energy Res. 2021;45(6):8214–8230.
  • Tazy AF, Samy MM, Barakat S. A techno-economic feasibility analysis of an autonomous hybrid renewable energy sources for university building at Saudi Arabia. J Electr Eng Technol. 2020;15:2519–2527.
  • Samy MM, Barakat S. Hybrid invasive weed optimization - particle swarm optimization algorithm for biomass/PV micro-grid power system. Proceeding of the 21th international middle east power systems conference MEPCON 2019, tanta university; 17–19 Dec. 2019; Cairo, Egypt.
  • Mokhtara C, Negrou B, Settou N, et al. Design optimization of off-grid hybrid renewable energy systems considering the effects of building energy performance and climate change: case study of Algeria energy. Energy, Int J. 2020;219:1–18.
  • Sawle Y, Gupta SC, Bohre AK. PV-wind hybrid system: a review with case study. Cogent Eng. 2016;3(1):1189305. doi:10.1080/23311916.2016.1189305.
  • Khashab HE, Al Ghamedi M. Comparison between hybrid renewable energy systems in Saudi Arabia. J Electr Systems Information Technol. 2015;2(1):111–119. doi:10.1016/j.jesit.2015.03.010.
  • Eid BM, Rahim NA, Selvaraj J, et al. Control methods and objectives for electronically coupled distributed energy resources in microgrids: A review. IEEE Syst J. 2016;10(2):446–458.
  • Alshibani A, Alshamrani OS. ANN/BIM- based model for predicting the energy cost of residential buildings in Saudi Arabia”. J Taibah Univ Sci. 11(6):13171329, doi:10.1016/j.jtusci.2017.06.003-2017.
  • Hamrouni N, Younsi S, Jraidi M. A flexible active and reactive power control strategy of a LV grid connected PV system. SciDirect – Energy Procedia. 2019;162:325–338.
  • Younsi S, Jraidi M, Hamrouni N, et al. Modelling and control of hybrid renewable energy system connected to AC grid. Int J Comput Sci Eng (IJCSE).  2011;3(12):38–54.
  • Hamrouni N, Younsi S. Moncef jraidi “modelling, command and treatment of a PV pumping system installed in Tunisia. (IJACSA) Int J Adv Comput Sci Appl. 2019;10(2):414–420.
  • Younsi S, Jraidi M, Hamrouni N, et al. Artificial neural network control of hybrid renewable energy system connected to AC grid. IJCIT. 2011;2(2):44–52.
  • Apata O, Oyedokun DTO. An overview of control techniques for wind turbine systems. Sci African. 2020;10:e00566.
  • Baran J, Jąderko A. An MPPT control of a PMSG-based WECS with disturbance compensation and wind speed estimation. Energies. 2020;13:6344, doi:10.3390/en13236344.
  • Yang J, Fang L, Song D, et al. Review of control strategy of large horizontal-axis wind turbines yaw system. Wind Energy. 2021;24:97–115. doi:10.1002/we.2564.
  • Tan RHG, Er CK, Solanki SG. Modeling of photovoltaic MPPT lead acid battery charge controller for standalone system applications. E3s Web of conferences 182, 03005 (2020) CPEEE; 2020.
  • Chellakhi A, El Beid S, Abouelmahjoub Y. Implementation of a novel MPPT tactic for PV system applications on MATLAB/simulink and proteus-Based arduino board environments. Int J Photoenergy. 2021:1–19.
  • Xu L, Cheng R, Yang J. A new MPPT technique for fast and efficient tracking under fast varying solar irradiation and load resistance. Int J Photoenergy. 2020;2020:1–18.
  • Abdelkhalek C, Said EB, Younes A. A novel MPPT tactic for PV systems with fast-converging speed and zero oscillation. 5th International Conference on renewable energies for developing countries (REDEC); 2020, Marrakech, Morocco.
  • Benghanem MS, Alamri SN. Modeling of photovoltaic module and experimental determination of serial resistance. J Taibah Univ Sci. 2(1):94–105. doi:10.1016/S1658-3655(12)60012-0-2009.
  • RATE WIND SPEED OBSERVED BY PME MET STATIONS for 2015 A.D. General Authority for statistics- KSA.
  • Azorin-Molina C, Rehman S, Guijarro JA, et al. Recent trends in wind speed across Saudi Arabia, 1978–2013. Int J Climatol. 2018;38(Suppl.1):e966–e984. - Published online 29 January 2018 in Wiley Online Library (wileyonlinelibrary.com) doi:10.1002/joc.5423.
  • Malik L, Rawat S, Kumar M, et al. Comparative analysis of aerodynamic characteristics of F16 and F22 combat aircraft using computational fluid dynamics. MaterToday Proc. 2021;38:191–197.
  • Malik L, Tevatia A. Comparative analysis of aerodynamic characteristics of F16 and F22 combat aircraft using computational fluid dynamics. Def Sci J. 2021;71(2):137–145.