Power Electronics in Wind Turbine Systems

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Fig. 14. Average size of wind turbines and produced energy pr. m2 swept area pr. year in Denmark. REFERENCES [1] S. Heier, Grid integration of wind energy conversion systems/translated by Rachel Waddington. John Wiley, 1998. ISBN 0-47-197143x [2] E. Bossanyi. Wind Energy Handbook. John Wiley, 2000. [3] N. Mohan, T.M. Undeland, W.P. Robbins. Power Electronics-Converters, Applications and Design. 1’st Edition, John Wiley & Sons, 1989. [4] A. D. Hansen, F. Iov, F. Blaabjerg, L. H. Hansen, ”Review of Contemporary Wind Turbine Concepts and their Market Penetration”. Journal of Wind Engineering, Vol. 28, No. 3, 2004, pp. 247-263. [5] P. Thoegersen, F. Blaabjerg. “Adjustable Speed Drives in the Next Decade. Future Steps in Industry and Academia”. Journal of Electric Power Components and Systems, Vol. 32, No. 1, 2004, pp. 13-32. [6] Z. Chen, E. Spooner, “Voltage Source Inverters for High-Power, Variable-Voltage DC Power Sources”, IEE Proc. –Generation, Transmission and Distributions, Vol. 148, No. 5, September 2001, pp. 439-447. [7] F. Blaabjerg, Z. Chen, “Power Electronics as an enabling technology for Renewable Energy Integration”, Journal of Power Electronics, Vol. 3, No. 2, April 2003, pp. 81-89. [8] Z. Chen, E. Spooner, “Grid Power Quality with Variable-Speed Wind Turbines”, IEEE Trans. on Energy Conversion, Vol. 16, No.2, June 2001, pp. 148-154. [9] F. Iov, Z. Chen, F. Blaabjerg, A. Hansen, P. Sorensen, “A New Simulation Platform to Model, Optimize and Design Wind Turbine”, Proc. of IECON ’02, Vol. 1, pp. 561-566. [10] S. Bolik, “Grid Requirements Challenges for Wind Turbines”, Proc. of Fourth International Workshop on Large-Scale Integration of Wind Power and Transmission Networks for Offshore Windfarms, 2003. [11] E. Bogalecka, “Power control of a doubly fed induction generator without speed or position sensor”, Proc. of EPE ‘93, Vol.8, 1993, pp. 224-228. [12] O. Carlson, J. Hylander, K. Thorborg, “Survey of variable speed operation of wind turbines”, Proc. of European Union Wind Energy Conference, Sweden, 1996, pp. 406-409. [13] M. Dahlgren, H. Frank, M. Leijon, F. Owman, L. Walfridsson, “Wind power goes large scale”, ABB Review, 2000, Vol.3, pp.31-37. [14] M.R. Dubois, H. Polinder, J.A. Ferreira, “Comparison of Generator Topologies for Direct-Drive Wind Turbines”, IEEE Nordic Workshop on Power and Industrial Electronics (Norpie ‘2000), 2000, pp. 22-26. [15] L.H. Hansen, P.H. Madsen, F. Blaabjerg, H.C. Christensen, U. Lindhard, K. Eskildsen, “Generators and power electronics technology for wind turbines”, Proc. of IECON '01, Vol. 3, 2001, pp. 2000 – 2005. [16] Z. Chen, E. Spooner, ”Wind turbine power converters: a comparative study”, Proc. of PEVD ’98, 1998 pp. 471 – 476. [17] M.P. Kazmierkowski, R. Krishnan, F. Blaabjerg. Control in Power Electronics-Selected problems. Academic Press, 2002. ISBN 0-12-402772-5 [18] Å. Larsson, The Power quality of Wind Turbines, Ph.D. report, Chalmers University of Technology, Göteborg, Sweden,2000. 15 13,5 12 10,5 9 7,5 6 4,5 3 1,5 0 Class 1 Class 2 95 150 225 300 500 600 1000 Wind turbine size kW Fig. 15. Price pr. produced kWh at different landscape classes. (Source: Risoe National Laboratory, Denmark) Fig. 16. Development of wind turbines during the last 25 years. US cent/kWh

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