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Wind Turbine Operation in Electric Power Systems: Advanced Modeling (Power Systems)

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en Limba Engleză Hardback – 11 Jul 2003
The total capacity of wind turbine generator systems (WTGSs) operating in the world reached 27 600 MW in Autumn 2002. In the European Union (EU) coun­ tries, wind generators capacity of 20 500 MW were operational. Most of them were located in Germany (10 650 MW), Spain (4100 MW) and Denmark (2500 MW). The Danish electric power system has the largest ratio of the capacity of WTGSs to the capacity of all sources of energy and it reaches about 30%. The mean value of the rated power ofWTGSs sold in 2000 was 930 kW. Today, wind generators with a rated power equal to 2 MW have become standard. The exponential growth of the number of WTGSs installed in power systems in the EU results from the policy which forces the sale of electric energy from re­ newable energy sources. The EU plan is to achieve a total capacity of WTGS of 60 000 MW by 2010 and 150 000 MW by 2020. In practical terms, such an in­ crease is possible by utilizing the wind as a source of energy. Other systems, e.g. solar or thermal, cannot yield such levels of energy. Utilization of water as a source of energy (from new power plants) is also limited, for various reasons. This means that energy from the wind is a reasonable prospect for the years to come.
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ISBN-13: 9783540403401
ISBN-10: 354040340X
Pagini: 272
Dimensiuni: 156 x 234 x 20 mm
Greutate: 1.24 kg
Ediția: 2003
Editura: Springer
Colecția Springer
Seria Power Systems

Locul publicării: Berlin, Heidelberg, Germany

Public țintă



l Development of Wind Turbines.- 2 Wind Turbine Generator Systems.- 3 Power Quality Standards and Requirements.- 4 WTGS Operation in Power Systems.- 5 Mathematical Modeling of WTGS Components.- 6 Models of a WTGS Operating in a Power System.- 7 Conclusions.- References.

Textul de pe ultima copertă

This is a comprehensive approach to Wind Turbine Generator Systems (WTGS) and their operation in dynamic electric power system analysis. The presented advanced models arose from the author´s research. They describe the complicated dynamical system behavior of wind turbines much better than the over-simplified static models. In particular, the control structure is taken into account. This book provides advanced tools for design, projection and optimization of turbines and systems that have yet not been available.


Modeling is an essential tool in power systems engineering, and wind turbines are particularly difficult owing to their non-stationary nature
The first book to model wind turbines from the point of view of power systems dynamics
Provides advanced tools for design, projection and optimisation of turbines and systems that have yet not been available