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Modeling and Operational Testing of an Isolated Variable Speed PMSG Wind Turbine with Battery Energy StorageBAROTE, L. , MARINESCU, C.
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wind energy, SOC, energy storage, stand-alone system
wind(21), energy(19), power(14), systems(8), system(7), storage(7), turbine(6), renewable(6), control(5), barote(5)
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About this article
Date of Publication: 2012-05-30
Volume 12, Issue 2, Year 2012, On page(s): 81 - 88
ISSN: 1582-7445, e-ISSN: 1844-7600
Digital Object Identifier: 10.4316/AECE.2012.02014
Web of Science Accession Number: 000305608000014
SCOPUS ID: 84865301714
This paper presents the modeling and operational testing of an isolated permanent magnet synchronous generator (PMSG), driven by a small wind turbine with a battery energy storage system during wind speed and load variations. The whole system is initially modeled, including the PMSG, the boost converter and the storage system. The required power for the connected loads can be effectively delivered and supplied by the proposed wind turbine and energy storage systems, subject to an appropriate control method. Energy storage devices are required for power balance and power quality in stand alone wind energy systems. The main purpose is to supply 230 V / 50 Hz domestic appliances through a single-phase inverter. The experimental waveforms, compared to the simulation results, show a good prediction of the electrical variable parameters. Furthermore, it can be seen that the results validate the stability of the supply.
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Digital Object Identifier: 10.1109/ATEE.2015.7133773 [CrossRef]
 Numerical analysis of an electro-thermal wind generator, Tudorache, Tiberiu, Trifu, Ion, Melcescu, Leonard, Floricau, Dan, 2017 9th International Conference on Electronics, Computers and Artificial Intelligence (ECAI), ISBN 978-1-5090-6457-1, 2017.
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 Finite element analysis of a wind generator with two counter-rotating rotors, Melcescu, Leonard, Tudorache, Tiberiu, Craiu, Ovidiu, Popescu, Mihail, 2017 International Conference on Optimization of Electrical and Electronic Equipment (OPTIM) & 2017 Intl Aegean Conference on Electrical Machines and Power Electronics (ACEMP), ISBN 978-1-5090-4489-4, 2017.
Digital Object Identifier: 10.1109/OPTIM.2017.7975004 [CrossRef]
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Faculty of Electrical Engineering and Computer Science
Stefan cel Mare University of Suceava, Romania
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