DFIG Driven Wind Turbine Grid Fault-Tolerance Using High-Order Sliding Mode Control

Mohamed Benbouzid(1*), Brice Beltran(2), Marwa Ezzat(3), Sylvie Breton(4)

(1) University of Brest, EA 4325 LBMS, Rue de Kergoat, CS 93837, 29238 Brest Cedex 03, France
(2) University of Brest, EA 4325 LBMS, Rue de Kergoat, CS 93837, 29238 Brest Cedex 03, France
(3) University of Brest, EA 4325 LBMS, Rue de Kergoat, CS 93837, 29238 Brest Cedex 03, France
(4) University of Brest, EA 4325 LBMS, Rue de Kergoat, CS 93837, 29238 Brest Cedex 03, France
(*) Corresponding author


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Abstract


This research note deals with grid fault-tolerance of a doubly-fed induction generator-based wind turbine using high-order sliding mode control. Indeed, it is proposed to assess the main and attractive features of high-order sliding modes which are robustness against external disturbances (e.g. grid) and chattering-free behavior (no extra mechanical stress on the drive train). Simulations using the NREL FAST code on a 1.5 MW wind turbine are carried-out to evaluate ride-through performances of high-order sliding mode control.
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Keywords


Wind Turbine; Doubly-Fed Induction Generator (DFIG); Control; Second-Order Sliding Mode; Grid Fault-Tolerance

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References


M. Tsili and S. Papathanassiou, “A review of grid code technical requirements for wind farms,” IET Renewable Power Generation, vol. 3, n°3, pp. 308-332, September 2009.

B. Beltran, T. Ahmed-Ali and M.E.H. Benbouzid, “High-order sliding mode control of variable speed wind turbines,” IEEE Trans. Industrial Electronics, vol. 56, n°9, pp. 3314-3321, September 2009.

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.

Damiano, A., Gatto, G., Marongiu, I., Meo, S., Perfetto, A., Serpi, A., A direct-drive wind turbine control for a wind power plant with an internal DC distribution system, (2012) International Review of Electrical Engineering (IREE), 7 (4), pp. 4845-4856.


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