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Small Signal Stability Analysis of Doubly Fed Induction Generator including SDBR

  • Shawon, Mohammad Hasanuzzaman (Dept. of Electrical Engineering, The Petroleum Institute) ;
  • Al-Durra, Ahmed (Dept. of Electrical Engineering, The Petroleum Institute) ;
  • Caruana, Cedric (Dept. of Electrical Engineering, The Petroleum Institute) ;
  • Muyeen, S.M. (Dept. of Electrical Engineering, The Petroleum Institute)
  • Received : 2013.01.12
  • Accepted : 2013.02.12
  • Published : 2013.03.01

Abstract

This paper presents small signal stability analysis of a doubly fed induction generator (DFIG) based wind farm including series dynamic braking resistor (SDBR) connected at the stator side. A detailed mathematical model of wind turbine, DFIG machine and converters and SDBR is presented in this paper to derive the complete dynamic equations of the studied system. Small signal stability of this system is carried out by modal and sensitivity analysis, participation factors and eigenvalue analysis. Finally, this paper presents an analysis of the dynamic behavior of DFIG based wind farm under voltage dip condition with and without SDBR.

Keywords

References

  1. International Wind Energy Development World Market Update,2009 J.[online].Available:http://btm.dk/public/Naviga nt_WMU2010ReportRelease.pdf .
  2. R Datta, and V. T. Ranganathan,"Decoupled Control of Active and Reactive Power for a Grid-Connected Doubly Wound Rotor Induction Machine Without Position Sensor," Conference Record of the1999 IEEE Industry Applications Conference, Thirty-Fourth IAS Annual Meeting (Cat. No. 99CH36370), pp. 2623-2628.
  3. A Causebrooke, D. J Atkinson and A.J Jack,"Fault ride through of large wind farms using series dynamic braking resistor (March 2007)," IEEE Trans. Power System, vol 22, no3, pp 966-975, August2007. https://doi.org/10.1109/TPWRS.2007.901658
  4. S. M. Muyeen , M. H. Ali , R. Takahashi , T. Murata , J. Tamura , Y. Tomaki , A. Sakahara and E. Sasano"Transient stability analysis of wind generator system with the consideration of multi-mass shaft model", Proc. Int. Conf. Power Electron. Drives Syst., vol. 1, p.511 , 2006.
  5. PC. Krause, Analysis of Electric Machinery. New York: MacGraw-Hill, 1987.
  6. J. Lopez, P Sanchis, X raboam, L Marroyo, Dynamic Behavior of doubly fed induction generator during three phase voltage dip, IEEE Trans, Energy Convers, vol. 22, pp. 709-717, 2007. https://doi.org/10.1109/TEC.2006.878241
  7. W Freitas,AMorelato and W. Xu, "Improvement of induction generator stability using braking resistor," IEEE Trans. Power System,vol19. , no. 2, pp. 1247-1249, March 2004. https://doi.org/10.1109/TPWRS.2004.825929
  8. P. Kundur, Power System Stability and Control, Macgraw-Hill, Inc, 1994.
  9. Matlab/Simulink User's Guide, The Mathworks Inc, 2010.