CFP last date
20 May 2024
Reseach Article

Static Security Analysis of Double Branch Outage Contingency

by Yousuf Mohammad Younes, Abdul Ghani A. A
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 181 - Number 35
Year of Publication: 2019
Authors: Yousuf Mohammad Younes, Abdul Ghani A. A
10.5120/ijca2019918305

Yousuf Mohammad Younes, Abdul Ghani A. A . Static Security Analysis of Double Branch Outage Contingency. International Journal of Computer Applications. 181, 35 ( Jan 2019), 16-21. DOI=10.5120/ijca2019918305

@article{ 10.5120/ijca2019918305,
author = { Yousuf Mohammad Younes, Abdul Ghani A. A },
title = { Static Security Analysis of Double Branch Outage Contingency },
journal = { International Journal of Computer Applications },
issue_date = { Jan 2019 },
volume = { 181 },
number = { 35 },
month = { Jan },
year = { 2019 },
issn = { 0975-8887 },
pages = { 16-21 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume181/number35/30258-2019918305/ },
doi = { 10.5120/ijca2019918305 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-07T01:08:13.340967+05:30
%A Yousuf Mohammad Younes
%A Abdul Ghani A. A
%T Static Security Analysis of Double Branch Outage Contingency
%J International Journal of Computer Applications
%@ 0975-8887
%V 181
%N 35
%P 16-21
%D 2019
%I Foundation of Computer Science (FCS), NY, USA
Abstract

This research analyse the static security of the electrical power system according to the security constraints after the transient state of the N-2 Contingency, i.e., two components outage together. Active power performance index (PIP) has had the greatest share of attention because of overloading some branches which led to cascading outages which led to isolating of some loads. Several techniques have been taken to reduce this deterioration and mitigate the transmission system from the consequences of it such as using a HVDC Link instead of a HVAC Link, addition of a line parallel to the line that suffers from overload and small local generation stations to ensure security. The IEEE 14 Bus system was selected as a model for study and representation in MATLAB.

References
  1. Pudi Sekhar, “Assessment and Enhancement of Power System Security using Soft Computing and Data Mining Approaches” Ph.D. Thesis, National Institute of Technology Rourkela, January, 2016.
  2. S. Ravindra, V. C. Veera Reddy and S. Sivanagaraju, “Power System Severity Analysis under Generator Outage Condition”, International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering, Vol. 4, Issue 1, January 2015.
  3. S. Kalyani, “A Unified Approach for Security Assessment of Power Systems Using Pattern Classifiers”, Ph.D. Thesis, Department of Electrical Engineering Indian Institute of Technology Madras, India, October 2010.
  4. Neal Balu, Bose, Lester Fink and Wollenberg, “On-Line Power System Security Analysis”, IEEE, VOL. 80, NO. 2, FEBRUARY 1992.
  5. Christian Andersson, “Power System Security Assessment Application of Learning Algorithms”, Licentiate Thesis, Department of Industrial Electrical Engineering and Automation, Lund University, Sweden, 2005.
  6. Bruce F. Wollenberg, “Power System Operation and Control”, University of Minnesota, 2001.
  7. Toshi Mandloi and Anil K Jain, “A Study of Power System Security and Contingency Analysis”, International Journal of Scientific Research Engineering & Technology (IJSRET), Volume 3, Issue 4, July 2014.
  8. B.Likhitha, J.Srinivasa Rao and J.Amarnath, “Sensitivity Approach for the Effective location of TCSC in a Deregulated Electricity Market”, IOSR Journal of Engineering (IOSRJEN), Volume 2, Issue 6, June 2012.
  9. Dr.Hossam Talaat, “Fundamentals of Power System Operation”, Power Horizon International Resources, Inc, 28July-1August, 2001.
  10. James Brooks, “Security Assessment in Future Power Systems”, Ph.D. Thesis, University of Bath, May 2013.
  11. Mohamed E. El-Hawary, “Introduction to Electrical Power Systems” , the Institute of Electrical and Electronics Engineers, Inc. 2008.
  12. P.R. Sharma, Rajesh Kr.Ahuja, Shakti Vashisth and Vaibhav Hudda, “Computation of Sensitive Node for IEEE- 14 Bus system Subjected to Load Variation”, International Journal of Innovative Research in Electrical, Electronics, Instrumentation and Control Engineering , Vol. 2, Issue 6, June 2014.
  13. Mohammed Abdulla Abdulsada and Dr. Firas M. Tuaimah, “Power System Static Security Assessment for Iraqi Super High Voltage Grid” , International Journal of Applied Engineering Research, Volume 12, Number 19, 2017.
  14. Prabha Kundur, “Power System Security in the New Industry Environment: Challenges and Solutions” , IEEE Toronto Centennial Forum on Reliable Power Grids in Canada, October 3, 2003.
  15. Niraj H. Patel1 Visha, Thakkar Hemant and N. Raval, “Contingency Analysis in Power System and Remedial Actions” , IJSRD - International Journal for Scientific Research & Development, Vol. 3, Issue 03, 2015.
  16. X.‐F. Wang et al., “Modern Power Systems Analysis: Chapter 2 “ ,2008.
  17. Timothy Allen Ernster, “Power System Vulnerability Analysis A Centrality Based Approach Utilizing Limited Information” , M.Sc.Thesis, Washington State University, School of Electrical Engineering and Computer Science, August, 2012.
Index Terms

Computer Science
Information Sciences

Keywords

Static security analysis Contingency Double branch outage Active power performance index.