Wind Energy Generation: Modelling and Control - download pdf or read online

By Olimpo Anaya-Lara, Nick Jenkins, Janaka B. Ekanayake, Phill Cartwright, Michael Hughes

ISBN-10: 0470714336

ISBN-13: 9780470714331

ISBN-10: 0470748230

ISBN-13: 9780470748237

With expanding predicament over weather swap and the safety of strength provides, wind strength is rising as a massive resource of electric power through the global.

Modern wind generators use complicated strength electronics to supply effective generator keep watch over and to make sure suitable operation with the ability method. Wind power Generation describes the basic ideas and modelling of generator and gear digital structures utilized in huge wind generators. It additionally discusses how they have interaction with the facility method and the impact of wind generators on energy process operation and stability.    

Key features:

  • Includes a finished account of energy digital apparatus utilized in wind generators and for his or her grid connection.
  • Describes allowing applied sciences which facilitate the relationship of large-scale onshore and offshore wind farms.
  • Provides special modelling and keep watch over of wind turbine systems.
  • Shows a few simulations and case reports which clarify the dynamic interplay among wind energy and traditional generation.

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Additional resources for Wind Energy Generation: Modelling and Control

Example text

7, then Sa1 is ON when Vref > Vtri . Sa2 is ON when Vref < Vtri . 2) where ‘1’ denotes the switch state ON and ‘0’ denotes the switch state OFF. 3) Vˆtri where the ‘hat’, ‘ ˆ ’, represents peak values. 8 and mf = 15. 8. 0), then the fundamental voltage does not vary linearly. , 1995). 9). This PWM switching strategy provides good results in terms of harmonic distortion, possibly eliminating the requirement for passive harmonic filtering but the switching losses are increased over square-wave modulation.

Brod, D. M. and Novotny, D. W. (1985) Current control of VSI-PWM inverters, IEEE Transactions on Industrial Applications, 1A-21 (4), 562–570. Buja, G. S. and Indri, G. B. (1977) Optimal pulsewidth modulation for feeding AC motors, IEEE Transactions on Industry Applications, 1A-13 (1), 38–44. Holtz, J. (1992) Pulsewidth modulation – a survey, IEEE Transactions on Industrial Electronics, 39 (5), 410–420. Kundur, P. (1994) Power System Stability and Control, McGraw-Hill, New York, ISBN 0-07-035958-X.

McGowan, J. G. and Rogers, A. L. (2002) Wind Energy Explained: Theory, Design and Application, John Wiley & Sons, Ltd, Chichester, ISBN 10: 0471499722. , Deicke, M. and De Doncker, R. W. (2002) Doubly fed induction generator systems for wind turbines, IEEE Industry Applications Magazine, 8 (3), 26–33. com/uk/Electricity/ Codes/gridcode/; last accessed 18 March 2009. Slootweg, J. G. (2003) Wind power: modelling and impacts on power system dynamics. PhD thesis. Technical University of Delft. htm; last accessed 18 March 2009.

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Wind Energy Generation: Modelling and Control by Olimpo Anaya-Lara, Nick Jenkins, Janaka B. Ekanayake, Phill Cartwright, Michael Hughes

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