CFP last date
20 May 2024
Reseach Article

Comparison between Wind Farm Aggregation Techniques to Analyze Power System Dynamics

by Ahmed M. Atallah, Mona A. Bayoumi
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 88 - Number 15
Year of Publication: 2014
Authors: Ahmed M. Atallah, Mona A. Bayoumi
10.5120/15425-3826

Ahmed M. Atallah, Mona A. Bayoumi . Comparison between Wind Farm Aggregation Techniques to Analyze Power System Dynamics. International Journal of Computer Applications. 88, 15 ( February 2014), 1-7. DOI=10.5120/15425-3826

@article{ 10.5120/15425-3826,
author = { Ahmed M. Atallah, Mona A. Bayoumi },
title = { Comparison between Wind Farm Aggregation Techniques to Analyze Power System Dynamics },
journal = { International Journal of Computer Applications },
issue_date = { February 2014 },
volume = { 88 },
number = { 15 },
month = { February },
year = { 2014 },
issn = { 0975-8887 },
pages = { 1-7 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume88/number15/15425-3826/ },
doi = { 10.5120/15425-3826 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T22:07:40.126568+05:30
%A Ahmed M. Atallah
%A Mona A. Bayoumi
%T Comparison between Wind Farm Aggregation Techniques to Analyze Power System Dynamics
%J International Journal of Computer Applications
%@ 0975-8887
%V 88
%N 15
%P 1-7
%D 2014
%I Foundation of Computer Science (FCS), NY, USA
Abstract

With increasing amount of wind power penetration, wind farms begin to influence the power systems. When a power system with many wind turbines is to be simulated, Wind farm aggregation techniques are required to reduce the model order while maintaining its accuracy. Different wind farm techniques have been proposed to simulate and analysis wind farm dynamics. In this paper a comparison between three famous techniques: 1- full aggregated model using equivalent wind speed; 2- full aggregated model using average wind speed; and 3- semi aggregated model. Simulation have been carried out for these techniques and compare them using different effects such as wind farm power, reactive power and system dynamics, besides the effect of varying variance on these techniques.

References
  1. L. M. Fernández, J. R. Saenz, and F. Jurado, "Aggregated dynamic model for wind farms with doubly fed induction generator wind turbines," Renewable Energy, vol. 33, pp. 129–140, 2008.
  2. M. I. Martinez, A. Susperregui, G. Tapia, and L. Xu, "Sliding-mode control of a wind turbine-driven double-fed induction generator under non-ideal grid voltages," Renewable Power Generation, IET, vol. 7, pp. 370 - 379, 2013.
  3. A. Chowdhury, W. X. Shen, N. Hosseinzadeh, and H. R. Pota, "A novel aggregated DFIG wind farm model using mechanical torque compensating factor," Energy Conversion and Management, vol 67, pp. 265–274, 2013
  4. Z. J. Meng, and F. Xue, "Improving the Performance of the Equivalent Wind Method for the Aggregation of DFIG Wind Turbines," Power and Energy Society General Meeting, 2011 IEEE, pp. 1-6.
  5. M. A. Chowdhury, N. Hosseinzadeh, M. M. Billah and S. A. Haque, "Dynamic DFIG wind farm model with an aggregation technique," ICECE 2010, 18-20 December 2010, Dhaka, Bangladesh
  6. Heier S. Grid integration of wind energy conversion systems. Chicester: Wiley; 1998.
  7. Ekanayake JB, Holdsworth L, Wu X, and Jenkins N, "Dynamic modeling of doubly fed induction generator wind turbines," IEEE Trans Power Syst 2003;18(2): 803–9.
  8. L. M. Fernandez, C. A. Garcia, J. R. Saenz, and F. Jurado, "Equivalent models of wind farms by using aggregated wind turbines and equivalent winds," Energy Conversion and Management, vol. 50, pp. 691–704, 2009.
  9. SimPowerSystems, User's guide, Natick, MA: The Mathworks Inc. , 2011.
  10. L. M. Fernandez, C. A. Garcia, J. R. Saenz, and F. Jurado, "Reduced model of DFIGs wind farms using aggregation of wind turbines and equivalent wind," IEEE MELCON, pp. 881–884, 2006.
Index Terms

Computer Science
Information Sciences

Keywords

Wind farm aggregation dynamic wind farm model wind speed variance and doubly fed induction generators.