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Multifunctional Grid Connected Electrical Converter Interfaced with a Wind Energy Conversion System

Kyasarla Roja, J. Yadagiri, H. Kishan

Abstract


This study deals with a three phase multifunctional grid-connected electrical converter interfaced with a Wind Energy Conversion System (WECS) is represented. The studied system consists of a Permanent Magnet Synchronous Generator (PMSG) primarily based turbine, a rectifier and a three-phase voltage supply electrical converter connected to the utility at the purpose of common coupling. to make sure the multifunctional feature, we tend to propose an on the spot power management (DPC) that is applied to eliminate line current harmonics, compensate reactive power and feeding alternative energy into the utility. Simulation results ar provided to demonstrate the effectiveness of the projected system. The results show that the management rule of system is effective for eliminating harmonic currents, reactive power compensation and inject the active power out there from the PMSG turbine into the load and/or grid, that allowed United States of America to substantiate the strength of the projected strategy.


Keywords


Inverter, Wind Energy Conversion System, Permanent Magnet Synchronous Generator, Rectifier, DPC

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References


H.G. Kim, D.C. Lee, J.K. Seok and G.M. Lee, “Stand-alone wind power generation system using vector- controlled cage-type induction generators,” in Proc. of Inter. Conference on Electrical Machines and systems, vol.1, pp.289-292, Nov.2003.

B. Singh and G.K. Kasal, “Voltage and Frequency Controller for a three- phase four wire autonomous wind energy conversion systems,” IEEE Trans. Energy Conversion, vol. 23, no.2, pp.509–518, June 2008.

A.Krama, L.Zellouma and B. Rabhi “Improved Control of Shunt Active Power Filter Connected to a Photovoltaic System Using Technique of Direct Power Control,” 8th International Conference on Modelling, Identification and Control (ICMIC-2016).

M.R. Bengourina, M. Rahli, S. Saadi,, L.Hassaine, “Optimization of direct power control of three-phase shunt active power filter by using PSO algorithm”,LeonardoElectronic Journal of Practices and Technologies, vol. 16, no.31, pp. 218-234, Dec 2017.

A.Chaoui., J. Gaubert, F. Karim,, “Power quality improvement using DPC controlled three-phase shunt active filter”, Electric Power Systems Research, vol. 80, pp. 657–666, 2010.

Cichowski, W. Sleszynski and J. Nieznanski, "Comprehensive compensation of grid current distortion by shunt active power filters," 2015 International School on Nonsinusoidal Currents and Compensation

(ISNCC), Lagow, pp. 1-6, 2015.

Exposto, V. Monteiro, J. G. Pinto, D. Pedrosa, A. A. N. Meléndez and J. L. Afonso, "Three-phase current-source shunt active power filter with solar photovoltaic grid interface," Industrial Technology (ICIT), 2015

IEEE International Conference on, Seville,, pp. 1211-1215, 2015.

Malinowski, M., et al. ‘‘A comparative study of control techniques for PWM rectifiers in AC adjustable speed drives’’, IEEE Transactions on Industrial Electronics, 18(6), pp. 1390– 1396, 2003.

Bouzidi, M., Bouafia, S., Bouzidi, A., Benaissa, A., Barket, S., ‘‘Application of Backstepping to the Virtual Flux Direct Power Control of Five-Level Three-Phase Shunt Active Power Filter’’, International Journal of Power Electronics and Drive System (IJPEDS), vol 4, pp. 173-191, 2014.

M.R. Bengourina, M. Rahli, S. Saadi,, L.Hassaine, “PSO based Direct Power Control for a Multifunctional Grid Connected Photo voltaicSystem”,International Journal of Power Electronics and Drive System (IJPEDS), vol. 9, No. 2, pp. 610-621, June 2018.

Rajasekaran, S., and C. H. Mahendar. "Comparative Study of THD in Multilevel Converter Using Model Predictive Controller." 2021 International Conference on Artificial Intelligence and Smart Systems (ICAIS). IEEE, 2021.

S.Rajasekaran,R.Anand,P.Muthukumar “Digital Controller based Multi motor drive using SPWM”, International Journal of Innovative Technology and Exploring Engineering (IJITEE) ISSN: 2278-3075, Volume-8 Issue-5S March, 2019,pp.652-655


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