Computation of Available Transfer Capability in ElectricalTransmission System - A Review

Manjula S. Sureban*, Shekhappa G. Ankaliki **
* Research Scholar, Department of Electrical and Electronics Engineering, Visvesvaraya Technological University, Belgaum, India.
** Professor, Department of Electrical and Electronics Engineering, SDM College of Engineering and Technology, Dharwad, India.
Periodicity:February - April'2017
DOI : https://doi.org/10.26634/jps.5.1.13535

Abstract

The increasing demand for electricity in the recent decades had resulted in several problems in the normal operation of the power system. The transmission lines are forced to operate near their limits; critical components are going out of service and also the efficiency of transmission lines is reducing. To address all these issues, evaluation of transfer capability of transmission lines is important. Many deterministic and probabilistic methods are available for evaluation of transfer capability of transmission lines. On computing the available transfer capability of power system, the efficiency of the transmission lines can be evaluated and congestion management in the system is also possible. By knowing the efficiency of existing transmission lines, necessary steps can be initiated to improve the same and hence to operate the entire system more reliably and economically. This paper aims at discussing the fundamentals of ATC computation and reviewing various technical papers related to the same.

Keywords

Available Transfer Capability (ATC), Transmission Reliability Margin (TRM), Capacity Benefit Margin (CBM), Existing Transmission Commitment (ETC)

How to Cite this Article?

Sureban, S. M., and Ankaliki, S. G. (2017). Computation of Available Transfer Capability in Electrical Transmission System - A Review. i-manager’s Journal on Power Systems Engineering, 5(1), 35-39. https://doi.org/10.26634/jps.5.1.13535

References

[1]. Computation of Availability Transmission Capability. Retrieved from http://shodhganga.inflibnet.ac.in/ bitstream/10603/2277/12/12_chapter%204.pdf
[2]. Docslide.net. Computation of A vailability Transmission Capability . Retrieved from http://docslide.net/documents/12-chapter-4.html
[3]. Ejebe, G. C., Waight, J. G., Sanots-Nieto, M., & Tinney, W. F. (2000). Fast calculation of linear Available Transfer Capability. IEEE Transactions on Power Systems, 15(3), 1112-1116.
[4]. Gao, Y., Zhou, M., & Yang, J. (2010, June). Available T r a n s f e r C a p a b i l i t y c a l c u l a t i o n b a s e d o n contingencyselection. In Industrial Electronics and Applications (ICIEA), 2010 the 5 IEEE Conference on (pp. 868-873). IEEE.
[5]. Hamoud, G. (2000). Assessment of available transfer capability of transmission systems. IEEE Transactions on Power Systems, 15(1), 27-32.
[6]. Hojabri, M., & Hizam, H. (2011). Available Transfer Capability Calculation. In Applications of MATLAB in Science and Engineering. InTech.
7]. Kumar, A., & Kumar, M. (2013). Determination of Available Transfer Capability and its enhancement in Competitive Electrical Market. International Journal of Information and Computation Technology, 3(11), 1171- 1176.
[8]. Li, G., Sun, Y., & Li, X. (2009, April). Available Transfer Capability calculation considering amended thermal limits. In Sustainable Power Generation and Supply, 2009. SUPERGEN'09. International Conference on (pp. 1-7). IEEE.
[9]. Manohar, J. N., & Amarnath, J. (2012). Statistical analysis of power system on enhancement of available transfer capability-applying FACTS. Int. J. Multidiscip. Sci. Eng, 3(7), 33-37.
[10]. Ou, Y., & Singh, C. (2002). Assessment of available transfer capability and margins. IEEE Transactions on Power Systems, 17(2), 463-468.
[11]. Selvi, V. A. I., Karuppasamypandiyan, M., Narmathabanu, R., & Devaraj, D. (2014, January). Artificial neural network approach for on-line ATC estimation in deregulated power system. In Power Signals Control and Computations (EPSCICON), 2014 International Conference on (pp. 1-5). IEEE.
[12]. Šošic, D., & Škokljev, I. (2013). Evolutionary algorithm for calculating available Transfer Capability. Journal of Electrical Engineering, 64(5), 1-7.
[13]. Tong, X., Wu, F. F., & Qi, L. (2008). Available Transfer Capability calculation using a smoothing pointwise maximum function. IEEE Transactions on Circuits and Systems I: Regular Papers, 55(1), 462-474.
[14]. Xiao, Y., Song, Y. H., Liu, C. C., & Sun, Y. Z. (2003). Available Transfer Capability enhancement using FACTS devices. IEEE Transactions on Power Systems, 18(1), 305- 312.
If you have access to this article please login to view the article or kindly login to purchase the article

Purchase Instant Access

Single Article

North Americas,UK,
Middle East,Europe
India Rest of world
USD EUR INR USD-ROW
Pdf 35 35 200 20
Online 35 35 200 15
Pdf & Online 35 35 400 25

Options for accessing this content:
  • If you would like institutional access to this content, please recommend the title to your librarian.
    Library Recommendation Form
  • If you already have i-manager's user account: Login above and proceed to purchase the article.
  • New Users: Please register, then proceed to purchase the article.