CFP last date
20 December 2024
Reseach Article

Voltage Sag Mitigation by using SVC

by Tandra Sutradhar, Jhuma Rudra Pal, Champa Nandi
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 71 - Number 12
Year of Publication: 2013
Authors: Tandra Sutradhar, Jhuma Rudra Pal, Champa Nandi
10.5120/12410-9068

Tandra Sutradhar, Jhuma Rudra Pal, Champa Nandi . Voltage Sag Mitigation by using SVC. International Journal of Computer Applications. 71, 12 ( June 2013), 16-20. DOI=10.5120/12410-9068

@article{ 10.5120/12410-9068,
author = { Tandra Sutradhar, Jhuma Rudra Pal, Champa Nandi },
title = { Voltage Sag Mitigation by using SVC },
journal = { International Journal of Computer Applications },
issue_date = { June 2013 },
volume = { 71 },
number = { 12 },
month = { June },
year = { 2013 },
issn = { 0975-8887 },
pages = { 16-20 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume71/number12/12410-9068/ },
doi = { 10.5120/12410-9068 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T21:36:40.316624+05:30
%A Tandra Sutradhar
%A Jhuma Rudra Pal
%A Champa Nandi
%T Voltage Sag Mitigation by using SVC
%J International Journal of Computer Applications
%@ 0975-8887
%V 71
%N 12
%P 16-20
%D 2013
%I Foundation of Computer Science (FCS), NY, USA
Abstract

This paper deals with modeling and simulation of SVC in IEEE 14 bus System with Induction Motor load for avoiding voltage sag. Single phase to ground fault is applied in predominant Induction motor load bus for voltage sag analysis. The effect of reactive power compensation to prevent sag has been analyzed with and without SVC. Simulations of the SVC were carried out by using Power System Computer Aided Design (PSCAD) software. Simulation results prove that the SVC is capable of mitigating voltage sag with proper reactive Power support.

References
  1. Mohsen GITIZADEH, Mohsen KALANTAR, Optimum allocation of FACTS devices in Fars Regional Electric Network using genetic algorithm based goal attainment', Gitizadeh et al. / J Zhejiang Univ Sci A 2009 10(4):478-487, ISSN 1673-565X (Print); ISSN 1862-1775 (Online).
  2. Zhengyu Huang, Yixin Ni, C. M. Shen, Felix F. Wu, Shousun Chen, and Baolin Zhang, Application of Unified Power Flow Controller in Interconnected Power Systems—Modeling, Interface, Control Strategy, and Case Study, IEEE TRANSACTIONS ON POWER SYSTEMS, VOL. 15, NO. 2, MAY 2000.
  3. D. Murali, Dr. M. Rajaram, N. Reka, Comparison of FACTS Devices for Power System Stability Enhancement, International Journal of Computer Applications (0975 – 8887) Volume 8– No. 4, October 2010.
  4. JIANG Tie-zheng, CHEN Chen, CAO Guo-yun, Nonlinear optimal predictive controller for static var compensator to improve power system damping and to maintain voltage, Front. Electr. Electron. Eng. China (2006) 4: 380?384, DOI 10. 1007/s11460-006-0073-5.
  5. Champa Nandi, Sumita Deb, Minakshi Deb Barma, and A. K. Chakraborty, Study and Simulation of the SVC and STATCOM Effect on Voltage Collapse and Critical Fault Clearing Time, International Journal of Modeling and Optimization, Vol. 2, No. 4, August 2012.
  6. R. Mohan Mathur and Rajib K. Varma, Thyristor_based FACTS Controllers for Electrical Transmission Systems, IEEE press 2002, A JOHN WILEY & SONS, INC. PUBLICATION, ISBN 0-471-20643-1.
  7. Enrique Acha,Claudio R. Fuerte-Esquivel, Hugo Ambriz-Pe´rez, Ce´sar Angeles-Camacho, FACTS Modelling and Simulation in Power Networks, Copyright ©2004 John Wiley & Sons Ltd, ISBN 0-470-85271-2.
  8. K. R. Padiyar, FACTS Controllers in Power Transmission and Distribution, Copyright © 2007, New Age International (P) Ltd. , Publishers, ISBN (13): 978-81-224-2541-3.
  9. A. R. Boynuegri, B. Vural, A. Tascikaraoglu, M. Uzunoglu, R. Yumurtac?, Voltage regulation capability of a prototype Static VAr Compensator for wind applications, 0306-2619/$ - see front matter © 2011 Elsevier Ltd. All rights reserved. doi:10. 1016/j. apenergy. 2011. 12. 031.
  10. M. Gitizadeh, Allocation of multi-type FACTS devices using multi-objective genetic algorithm approach for power system reinforcement, Received: 24 February 2010 / Accepted: 28 September 2010 / Published online: 15 October 2010 © Springer-Verlag 2010.
  11. P. Thakur • A. K. Singh, A novel way to quantify the magnitude of voltage sag, Electr Eng, DOI 10. 1007/s00202-012-0268-0, © Springer-Verlag Berlin Heidelberg 2012.
Index Terms

Computer Science
Information Sciences

Keywords

SVC Voltage sag Voltage stability Reactive power compensation