DocumentCode
2450448
Title
High-order sliding mode control of DFIG-based marine current turbine
Author
Ben Elghali, S.E. ; Benbouzid, M.E.H. ; Ahmed-Ali, T. ; Charpentier, J.F. ; Mekri, F.
Author_Institution
Lab. Brestois de Mec. et des Syst., Univ. of Brest, Brest
fYear
2008
fDate
10-13 Nov. 2008
Firstpage
1228
Lastpage
1233
Abstract
This paper deals with the speed control of a variable speed DFIG-based marine current turbine. Indeed, to increase the generated power and therefore the efficiency of a marine current turbine, a nonlinear controller has been proposed. DFIG has been already considered for similar applications particularly wind turbine systems using mainly PI controllers. However, such kinds of controllers do not adequately handle some of tidal resource characteristics such as turbulence and swell effects. Indeed, these may decrease marine current turbine performances. Moreover, DFIG parameter variations should be accounted for. Therefore, a robust nonlinear control strategy, namely high-order sliding mode control, is proposed. This control strategy relies on the resource and the marine turbine models that were validated by experimental data. The sensitivity of the proposed control strategy is analyzed regarding the swell effect as it is considered as the most disturbing one for the resource model. Tidal current data from the Raz de Sein (Brittany, France) are used to run simulations of a 7.5-kW prototype over various flow regimes. Simulation results are presented and fully analyzed.
Keywords
PI control; asynchronous generators; marine systems; nonlinear control systems; turbines; variable structure systems; velocity control; PI controllers; doubly-fed induction generators; marine current turbine; nonlinear control; power 7.5 kW; sliding mode control; speed control; Inductance; Induction generators; Kinetic energy; Marine technology; Power generation; Rotors; Sliding mode control; Tides; Torque; Wind turbines; Marine current turbine (MCT); doubly-fed induction generator (DFIG); high-order sliding mode; modeling; nonlinear control;
fLanguage
English
Publisher
ieee
Conference_Titel
Industrial Electronics, 2008. IECON 2008. 34th Annual Conference of IEEE
Conference_Location
Orlando, FL
ISSN
1553-572X
Print_ISBN
978-1-4244-1767-4
Electronic_ISBN
1553-572X
Type
conf
DOI
10.1109/IECON.2008.4758130
Filename
4758130
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