CFP last date
20 May 2024
Call for Paper
June Edition
IJCA solicits high quality original research papers for the upcoming June edition of the journal. The last date of research paper submission is 20 May 2024

Submit your paper
Know more
Reseach Article

Impact of Integrating Wind Energy into Power Grid System

by Yasir Ghazi Rashid, Firas Mohammed Tuaimah
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 177 - Number 14
Year of Publication: 2019
Authors: Yasir Ghazi Rashid, Firas Mohammed Tuaimah
10.5120/ijca2019919505

Yasir Ghazi Rashid, Firas Mohammed Tuaimah . Impact of Integrating Wind Energy into Power Grid System. International Journal of Computer Applications. 177, 14 ( Oct 2019), 36-43. DOI=10.5120/ijca2019919505

@article{ 10.5120/ijca2019919505,
author = { Yasir Ghazi Rashid, Firas Mohammed Tuaimah },
title = { Impact of Integrating Wind Energy into Power Grid System },
journal = { International Journal of Computer Applications },
issue_date = { Oct 2019 },
volume = { 177 },
number = { 14 },
month = { Oct },
year = { 2019 },
issn = { 0975-8887 },
pages = { 36-43 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume177/number14/30969-2019919505/ },
doi = { 10.5120/ijca2019919505 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-07T00:45:54.319896+05:30
%A Yasir Ghazi Rashid
%A Firas Mohammed Tuaimah
%T Impact of Integrating Wind Energy into Power Grid System
%J International Journal of Computer Applications
%@ 0975-8887
%V 177
%N 14
%P 36-43
%D 2019
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Wind is one kind of free energy and this “must-take” wind power generation is integrated into the system operation. The optimal power flow (OPF) problem with integration wind energy was explored and exploited in this paper. This paper presents the impact integration wind wnergy on different performance parameters of power systems such as the total generation cost, voltage profile, power flow and power losses, by optimally integrate the wind farm in power systems. The modified IEEE 30 system with six thermal generating units and two wind farms. Several scenarios were conducted to determine the impact of single and multiple wind farm on the performance of the IEEE 30 bus system. In this paper, using programming language (Matlab) and PowerWorld software Version 19 to get the results.

References
  1. Reid Dorsey-Palmateer. 2019. “Effects of wind power intermittency on generation and emissions,” The Electricity Journal, vol. 32, no. 3, pp. 25–30.
  2. Global Wind Energy Council (GWEC). April 2019. “Global wind report: Annual market update,” 2018, available at: http://www.gwec.net, accessed on.
  3. C. Shilaja and T. Arunprasath. 2019. “Optimal power flow using Moth Swarm Algorithm with Gravitational Search Algorithm considering wind power,” Future Generation Computer Systems, vol. 98, pp. 708–715.
  4. Partha P. Biswas, P.N. Suganthan. and Gehan A.J. Amaratunga.2017. “Optimal power flow solutions incorporating stochastic wind and solar power,” Energy Conversion and Management, vol. 148, pp. 1194–1207.
  5. H.R.E.H. Bouchekara, A.E. Chaib, M.A. Abido and R.A.El-Sehiemy.2016. “Optimal power flow using an improved colliding bodies optimization algorithm,” Applied Soft Computing, vol. 42, pp.119–131
  6. Firas Mohammed Tuaimah, Yaser Nadhum Abd and Fahad A. Hameed. 2013. “Ant Colony Optimization based Optimal Power Flow Analysis for the Iraqi Super High Voltage Grid,” International Journal of Computer Applications, vol. 67, no. 11, pp. 13–18.
  7. Khaled Zehar and Samir Sayah.2008. “Optimal power flow with environmental constraint using a fast successive linear programming algorithm: Application to the algerian power system,” Energy Conversion and Management, vol. 49, no. 11, pp. 3362–3366.
  8. Yun-Su Kim.2019. “A voltage deviation-memorizing reactive power controller for renewable energy sources,” Electrical Power and Energy Systems, vol. 107, p. 47–57
  9. Mengxia Wang, Ming Yang, and X. Han. 2020. “Optimal power flow considering transient thermal behavior of overhead transmission lines,” Electrical Power and Energy Systems., vol. 114, p. 105396.
  10. Serhat Duman , UğurGüvenç , Yusuf Sönmez, and Nuran Yörükeren. 2012. “Optimal power flow using gravitational search algorithm,” Energy Convers. Manag, vol. 59, pp. 86–95.
  11. Sadjad Galvani and Saeed Rezaeian Marjani. 2019. “Optimal power flow considering predictability of power systems,” Electric Power Systems Research, vol. 171, pp. 66–73.
  12. Khamees, Amr Khaled, N. M. Badra, and Almoataz Y. Abdelaziz.2016. “Optimal Power Flow Methods : A Comprehensive Survey,” International Electrical Engineering Journal (IEEJ), vol. 7, no. 4, pp. 2228–2239.
  13. Anthony M. Giacomoni and Graduate Student Member.2010. “Linear programming optimal power flow utilizing a trust region method,” In North American Power Symposium (NAPS), pp. 1–6.
Index Terms

Computer Science
Information Sciences

Keywords

Optimal Power Flow wind power linear programming voltage profile PowerWorld.