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Power Quality Enhancement of Grid Connected Doubly-Fed Induction Generator Using Sliding Mode Control


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DOI: https://doi.org/10.15866/iree.v10i2.5347

Abstract


In this paper, we present a simulation study of a wind system with a doubly fed induction machine driven by a variable pitch wind turbine. The objective of the work is to design a control algorithm based on the sliding mode control strategy allowing the control of both active and reactive power independently. The main goal achieved by the control strategy is to control the amount of active and reactive power produced by the doubly fed induction generator and injected in the main grid according to the power references derived from turbine’s mechanical power and the grid operator. The simulation results have shown good performances concerning the tracking of the references both in transient and steady state. A comparative study between the proposed control strategy and the well known vector control strategy has been carried out and has shown the superiority of sliding mode control to track the given references.
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Keywords


Bidirectional Converter; Doubly Fed Induction Machine; Maximum Power Point Tracking (MPPT); Modeling Of Wind System; Vector Control; Sliding Mode Control

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References


Xiaohong Wang; Jinming Yang; Xianyong Zhang; Jie Wu, "Sliding Mode Control of Active and Reactive Power for Brushless Doubly-Fed Machine," Computing, Communication, Control, and Management, 2008. CCCM '08. ISECS International Colloquium on , vol.2, no., pp.294,298, 3-4 Aug. 2008.
http://dx.doi.org/10.1109/cccm.2008.167

E. Pouresmaeil, D. Montesinos Miracle, and O. Gomis- Bellmunt. Control scheme of three-level h-bridge converter for interfacing between renewable energy resources and ac grid. In Power Electronics and Applications (EPE 2011), Proceedings of the 2011-14th European Conference on, pp:1–9, 30 /11-sept.1- 2011.

A. Sumper, O. Gomis-Belmunt, A. Sudria-Andreu, R. Villafafila-Robles, and J. Rull-Duran. Short-term voltage stability of fixed-speed WT: Comparison of single and double cage. In Power and Energy Society General Meeting, 2010 IEEE, pp: 1 –8, july 2010.
http://dx.doi.org/10.1109/pes.2010.5589798

O. Gomis-Bellmunt, A. Junyent-Ferre,A. Sumper, and J. Bergas- Jan. Ride-through control of a doubly fed induction generator under unbalanced voltage sags. Energy Conversion. IEEE Transactions on, 23(4):1036 –1045, dec. 2008.
http://dx.doi.org/10.1109/tec.2008.2001440

A. Junyent-Ferre, O. Gomis-Bellmunt, M. Martinez- Rojas, A. Sumper, M. Sala, and M. Mata. Digital simulations of voltage dip characteristics of wind turbine systems. In Electrical Power Quality and Utilisation. EPQU 2007. 9th International Conference on, 1 –6, oct. 2007.
http://dx.doi.org/10.1109/epqu.2007.4424182

A. Sumper, O. Gomis-Bellmunt, A. Sudria-Andreu, R. Villafafila-Robles, and J. Rull-Duran. Response of fixed speed wind turbines to system frequency disturbances. Power Systems, IEEE Transactions on, 24(1):181 –192, feb. 2009.
http://dx.doi.org/10.1109/tpwrs.2008.2009427

H. Li and Z. Chen. Overview of different wind generator systems and their comparisons. lET Renewable Power Generation, vol. 2, no. 2, pp.123 - 138, june 2008.
http://dx.doi.org/10.1049/iet-rpg:20070044

hmed M. Kassem , Khaled M. Hasaneen , Ali M. Yousef . Dynamic modeling and robust power control of DFIG driven by wind turbine at infinite grid. Electrical Power and Energy Systems 44 (2013).pp: 375–382.
http://dx.doi.org/10.1016/j.ijepes.2011.06.038

Maria Letizia Corradini, Gianluca Ippoliti, and Giuseppe Orlando. Robust Control of Variable-Speed Wind Turbines Based on an Aerodynamic Torque Observer. IEEE Trans. Control Syst. Technol., vol. 21, no. 4, pp: 1199–1206, July 2013.
http://dx.doi.org/10.1109/tcst.2013.2257777

Brice Beltran, Mohamed El Hachemi Benbouzid, Senior Member, IEEE, and Tarek Ahmed-Ali. Second-Order Sliding Mode Control of a Doubly Fed Induction Generator Driven Wind Turbine. IEEE Trans. Energy Convers. vol. 27, no. 2, pp. 261–269, Jun. 2012.
http://dx.doi.org/10.1109/tec.2011.2181515

Zhankui Song, Kaibiao Sun. Adaptive backstepping sliding mode control with fuzzy monitoring strategy for a kind of mechanical system. ISA Transactions 53(2014), pp. 125–133.
http://dx.doi.org/10.1016/j.isatra.2013.07.017

Amimeur H, Abdessemed R, Aouzellag D, Merabet E, Hamoudi F. A sliding mode control associated to the field-oriented control of dual-stator induction motor drives. J Electr Eng 2010; 10(3) [Art. 2]

S.Abdeddaim, A.Betka, S Drid, M Becherif. Implementation of MRAC controller of a DFIG based variable speed grid connected wind turbine. Energy Convers Manage. 79 (2014), pp. 281–288.
http://dx.doi.org/10.1016/j.enconman.2013.12.003

M.L. Corradini, G. Ippoliti, and G. Orlando. An Aerodynamic Torque Observer for the Robust Control of Variable-Speed Wind Turbines. in 51st IEEE Conference on Decision and Control, December 10-13, 2012. Maui, Hawaii, USA, pp. 2483 –2488.
http://dx.doi.org/10.1109/cdc.2012.6426892

F.D. Bianchi, H. De Battista, R.J. Mantz. Wind turbine control systems, principles, Modelling and Gain Scheduling Design. Springer2007.
http://dx.doi.org/10.1002/rnc.1263

Radia Abdelli, Djamila Rekioua, Toufik Rekioua, Abdelmounaïm Tounzi. Improved direct torque control of an induction generator used in a wind conversion system connected to the grid. ISA Transactions 52(2013).pp:525–538.
http://dx.doi.org/10.1016/j.isatra.2013.03.001

T. Mesbahi, T. Ghennam, E.M. Berkouk. A Doubly Fed Induction Generator for Wind Stand-Alone Power Applications (Simulation and Experimental Validation) 978-1-4673-0142-8/12/$26.00 ©, pp. 2028-2033, 2012 IEEE.
http://dx.doi.org/10.1109/icelmach.2012.6350161

Yongchang Zhang, Jianguo Zhu, Jiefeng Hu. Model predictive direct torque control for grid Synchronization of Doubly Fed Induction Generator. Proceedings of the 2011 IEEE. International Electric Machines & Drives Conference (IEMDC) 15-18 May 2011 Niagara Falls, pp. 765 –770.
http://dx.doi.org/10.1109/iemdc.2011.5994908

Victor Flores Mendes, Clodualdo Venicio de Sousa, Selˆenio Rocha Silva, Balduino Cezar Rabelo, Jr., and Wilfried Hofmann, Senior Member, IEEE. Modeling and Ride-Through Control of Doubly Fed Induction Generators During Symmetrical Voltage Sags. IEEE Trans. Energy Convers., vol. 26, no.4, pp. 1161–1171, dec 2011.
http://dx.doi.org/10.1109/tec.2011.2163718

Esmaeil Rezaei, Ahmadreza Tabesh, Member, IEEE, and Mohammad Ebrahimi. Dynamic Model and Control of DFIG Wind Energy Systems Based on Power Transfer Matrix. IEEE Trans. Energy Convers. vol. 27, no. 3, pp. 1485–1493, july 2012.
http://dx.doi.org/10.1109/tpwrd.2012.2195685

H.T. Jadhav, Ranjit Roy. A comprehensive review on the grid integration of doubly fed induction generator. Int J Electr Power Energy Syst 2013; 49(01), pp. 8–18.
http://dx.doi.org/10.1016/j.ijepes.2012.11.020

S. Abdeddaim, A. Betka. Optimal tracking and robust power control of the DFIG wind turbine. Int J Electr Power Energy Syst 2013; 49(01), pp.: 234–242.
http://dx.doi.org/10.1016/j.ijepes.2012.12.014

K. Ghedamsia, E.M. Berkouk. Control of wind generator associated to a flywheel energy storage system. Renewable Energy, Volume 33, Issue 9, pp 2145-2156, Elsevier (2008).
http://dx.doi.org/10.1016/j.renene.2007.12.009

Yong Feng; Bing Chen; Xinghuo Yu; Yongmin Yang, "Terminal sliding mode control of induction generator for wind energy conversion systems," IECON 2012 - 38th Annual Conference on IEEE Industrial Electronics Society , vol., no., pp.4741,4746, 25-28 Oct. 2012.
http://dx.doi.org/10.1109/iecon.2012.6388945

Xiaohong Wang, Jinming Yang, Xianyong Zhang, and Jie Wu. Sliding Mode Control of Active and Reactive Power for Brushless Doubly-Fed Machine. Proceedings of the 2008 IEEE. ISECS International Colloquium on Computing, Communication, Control, and Management, pp: 294-298.
http://dx.doi.org/10.1109/cccm.2008.167

Amimeur H, Aouzellag D, Abdessemed R, Ghedamsi K. Sliding mode control of a dual-stator induction generator for wind energy conversion systems. Int J Electr Power Energy Syst 2012; 42(01), pp: 60–70.
http://dx.doi.org/10.1016/j.ijepes.2012.03.024

Errami, Y.; Maaroufi, M.; Ouassaid, M., "Variable Structure Direct Torque Control and grid connected for wind energy conversion system based on the PMSG," Complex Systems (ICCS), 2012 International Conference on , vol., no., pp.1,6, 5-6 Nov. 2012.
http://dx.doi.org/10.1109/icocs.2012.6458524

D. Kairous, R. Wamkeue. DFIG-based fuzzy sliding-mode control of WECS with flywheel energy storage. Electric Power Systems Research 93 (2012), pp. 16– 23.
http://dx.doi.org/10.1016/j.epsr.2012.07.002

S. Wen, F. Wang. Sensorless Direct Torque Control of High Speed PMSM Based on Variable Structure Sliding Mode,” Proceedings of Electrical Machines and Systems, ICEMS-IEEE, International Conference on, pp. 995 – 998. 2008.

Mosayebian, M.E., Monsef, H., Reliability evaluation in power system integrated with wind power, (2010) International Review on Modelling and Simulations (IREMOS), 3 (3), pp. 368-372.

Gopal Sharma, K., Bhargava, A., Gajrani, K., Stability analysis of DFIG based wind turbines connected to electric grid, (2013) International Review on Modelling and Simulations (IREMOS), 6 (3), pp. 879-887.

Hamdi, N., Bouzid, A., New control of a doubly-fed induction generator of a variable speed wind turbine with Ku transformation, (2013) International Review of Automatic Control (IREACO), 6 (2), pp. 183-188.

Beltran, B., Benbouzid, M., Ahmed-Ali, T., Mangel, H., DFIG-based wind turbine robust control using high-order sliding modes and a high gain observer, (2011) International Review on Modelling and Simulations (IREMOS), 4 (3), pp. 1148-1155.
http://dx.doi.org/10.1109/energycon.2010.5771699

Moutchou, M., Abbou, A., Mahmoudi, H., Induction machine speed and flux control, using vector-sliding mode control, with rotor resistance adaptation, (2012) International Review of Automatic Control (IREACO), 5 (6), pp. 804-814.

Abdellah, A., Abdelhafid, A., Mostafa, R., Combining sliding mode and linear quadratic regulator to control the inverted pendulum, (2013) International Review of Automatic Control (IREACO), 6 (1), pp. 69-76.


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