Operation of a Vanadium Redox Flow Battery for PV

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Operation of a Vanadium Redox Flow Battery for PV ( operation-vanadium-redox-flow-battery-pv )

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614 Amjed Hina Fathima et al. / Energy Procedia 117 (2017) 607–614 8 Fathima AH and Palanisamy K/ Energy Procedia 00 (2017) 000–000 Simulation results prove effective functioning of the battery system thus modeled. The performance of battery under varying irradiation is also studied. VRB battery balances the load when solar power drops to ensure constant power output at the load. Thus, a stable PV-VRB hybrid power system is modeled and tested to enable firm power delivery to the consumers. References [1] Fathima AH, Palanisamy K. Battery energy storage applications in wind integrated systems — A review. International Conference on Smart Electric Grid (ISEG), 2014, Andhra Pradesh, India. p. 1-8. [2] Redox Flow Batteries. [updated: 2016; cited 2016 May 30] Energy Storage Association; Available from: http://energystorage.org/energy-storage/technologies/redox-flow-batteries. [3] Mahboobeh N, Mansooreh S, Ali K. Vanadium recovery from oil refinery sludge using emulsion liquid membrane technique. International Journal of Chemical & Environmental Engineering 2012; 3(3):149. [4] Alotto P, Guarnieri M, Moro F. Redox flow batteries for the storage of renewable energy:A review. Renew Sust Energ Rev 2014; 29:325– 335. [5] Blanc C, Ruffer A. Multiphysics and energetic modeling of a vanadium redox flow battery. Proc. International conference on sustainable energy technologies (ICSET), Singapore, October 2008. pp. 759-764. [6] Wandschneider FT, Finke D, Grosjean S, Fischer P, Pinkwart P, Tübke J, Nirschl H. Model of a vanadium redox flow battery with an anion exchange membrane and a Larminie-correction. J. Power Sources 2014; 272: 436-447. [7] Li M, Funaki T, Hikihara T. A study of output terminal voltage modeling for redox flow battery based on charge and discharge experiments. Proc. power conversion conference (PCC), Nagoya, Japan April 2007. pp. 221-225. [8] D‘Agostino R, Baumann L, Damiano A, Boggasch E. A vanadium-redox-flow-battery model for evaluation of distributed storage implementation in residential energy systems. IEEE T Energy Conver 2015; 30(2):421-430. [9] Ontiveros LJ, Mercado PE. Modeling of a vanadium redox flow battery for power system dynamic studies. Int J Hydrogen Energ 2014; 39:8720-8727. [10] Merei G, Adler S, Magnor D, Leuthold L, Sauer DU. Multi-physics model for a vanadium redox flow battery. Energy Procedia 2014; 46:94– 203. [11] Barote L, Marinescu C, Georgescu M. VRB modeling for storage in stand-alone wind energy systems. IEEE Bucharest Power Tech Conference 2009; Bucharest, Romania. [12] Wang G, Ciobotaru M, Agelidis VG. Integration of vanadium redox battery with PV systems: Modeling and operational characteristics. IEEE International Symposium on Industrial Electronics (ISIE) 2012; 1:1598-1603. [13] Wang G, Ciobotaru M, Agelidis VG. Power management of hybrid energy storage system for a MW photovoltaic system. 39th Annual Conference of the IEEE Industrial Electronics Society, IECON 2013; 1:6777-6782. [14] Akinyele DO, Rayudu RK. Review of energy storage technologies for sustainable power networks. Sustainable Energy Technologies and Assessments 2014; 8:74–91. [15] Palizban O, Kauhaniemi K. Energy storage systems in modern grids—Matrix of technologies and applications. Journal of Energy Storage 2016; 6: 248–259. doi:10.1016/j.est.2016.02.001.

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