Wind turbine control systems : principles, modelling and gain scheduling design

Modern wind turbines generally operate at variable speed in order to maximise the conversion efficiency below rated power and to reduce loading on the drive-train. In addition, pitch control of the blades is usually employed to limit the energy captured during operation above rated wind speed. The h...

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Những tác giả chính: Bianchi, Fernando D., Battista, Hernán De (Tác giả), Mantz, Ricardo Julian (Tác giả)
Định dạng: Livre papier
Ngôn ngữ:Anglais
Được phát hành: London : Springer copyright 2007.
Loạt:Advances in industrial control
Những chủ đề:
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Edition sous un autre format:• Wind Turbine Control Systems, Principles, Modelling and Gain Scheduling Design, by Fernando D. Bianchi, Ricardo J. Mantz, Hernán Battista., London, Springer London, Springer e-books, 2007, Advances in Industrial Control, 978-1-8462-8493-9
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041 0 |a eng 
100 1 |a Bianchi, Fernando D. 
245 1 0 |a Wind turbine control systems :  |b principles, modelling and gain scheduling design   |c Fernando D. Bianchi, Hernán De Battista and Ricardo J. Mantz. 
260 |a London :  |b Springer,  |c copyright 2007. 
300 |a 1 vol. (XIX-205 p.) :  |b ill. ;  |c 25 cm. 
490 1 |a Advances in industrial control  |x 1430-9491 
504 |a Réf. bibliographiques p. [195]-201. Index 
505 0 |a 1. Introduction -- 2. The wind and wind Turbines -- 3. Modelling of WECS [Wind Energy Conversion System] -- 4. Control objectives and strategies -- 5. Control of variable-speed fixed-pitch wind turbines -- 6. Control of variable-speed variable-pitch wind turbines. -- [Appendix] A. Linear matrix inequalities -- [Appendix] B. Gain scheduling techniques and LPV systems -- [Appendix] C. Quasi-LPV model and control. 
520 |a Modern wind turbines generally operate at variable speed in order to maximise the conversion efficiency below rated power and to reduce loading on the drive-train. In addition, pitch control of the blades is usually employed to limit the energy captured during operation above rated wind speed. The higher complexity of variable-speed variable-pitch turbines is offset by the benefits of control flexibility, namely, higher conversion efficiency, better power quality, longer useful life; because of the immediate impact of control on the cost of wind energy, reliable high-performance controllers are essential in making wind technology competitive. [...] the application of linear-parameter varying (LPV) gain scheduling techniques to the control of wind energy conversion systems is emphasised. This recent reformulation of the classical gain scheduling problem allows a straightforward design procedure and simple controller implementation. [Source : 4e de couv.] 
650 |a Éoliennes  |x Commande automatique 
700 1 |a Battista, Hernán De.  |4 aut 
700 1 |a Mantz, Ricardo Julian.  |4 aut 
776 0 |0 123152070  |t Wind Turbine Control Systems  |o Principles, Modelling and Gain Scheduling Design  |f by Fernando D. Bianchi, Ricardo J. Mantz, Hernán Battista.  |c London  |n Springer London  |n Springer e-books  |d 2007  |s Advances in Industrial Control  |z 978-1-8462-8493-9 
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