Steady State Analysis of IEEE-6 Bus Power System Using Power World Simulator

Shekhappa G. Ankaliki *, Shashikumar R**, Nagarathna. M. C***, Priyanka Biradar****
* Professor, Electrical & Electronics Engineering Department, SDMCET, Dharwad, Karnataka, India.
**,***,**** PG Scholars, Electrical & Electronics Engineering Department, SDMCET, Dharwad, Karnataka, India.
Periodicity:May - July'2014
DOI : https://doi.org/10.26634/jps.2.2.2930

Abstract

This paper presents the steady state analysis of power system using Power World Simulator. Analysis gives information about system voltage, power flows and losses in the system at different loading conditions. Analysis will recommend suggestion for stable operation of the system. The analysis is demonstrated by considering a case study of IEEE 6 bus power system. The performance analysis of the change in voltage and reactive power at the load side and generator side is done using the Power World Simulator software package (Version 16GSO). The outcome of this work helps in steady state monitoring, expansion of existing power system and design of new power system

Keywords

Steady State Analysis, Power World Simulator

How to Cite this Article?

Ankaliki, G. S., Shashikumar, R., Nagarathna, M. C., and Biradar, P. (2014). Steady State Analysis of IEEE-6 Bus Power System Using Power World Simulator. i-manager’s Journal on Power Systems Engineering, 2(2), 24-27. https://doi.org/10.26634/jps.2.2.2930

References

[1]. B. Stott, O. Alsac, and A. J. Monticelli (1987), “Security Analysis and Optimization” IEEE Proceedings.75, December , PP. 1623-1644.
[2]. A. J. Wood, and B. F. Wollenberg (1984), “Power Generation, Operation and Control” New York, Wiley.
[3]. S. N. Singh and S. C. Srinivas (1997), “Improved Voltage and Reactive Power Distribution Factor for Outage Studies” IEEE Transaction on Power Systems, Vol.12, No.3, August, PP1085-1093.
[4]. T. S. Dillon (1991), “Artificial Neural Network Applications to Power Systems and their Relationship to Symbolic Methods” Electric Power and Energy Systems, Vol.13, No.2, April , PP.66-72.
[5]. P. K. Karla, S. C. Srivastava and S. K. Joshi (1992), “Synergism of Expert System and Artificial Net for Power System Applications” in Proceedings of Fifteenth National System Conference, Roorkee (India), March.
[6]. V. S. Vankayala and N. D. Rao (1993), “Artificial Neural Networks and their Applications to Power Systems-a Bibliographical Survey” Electric Power System Research, Vol. 28, PP 67-79.
[7]. L. Srivastava, S.N. Singh and J. Sharma (1997), “ANN Applications in Power Systems; an Overview and Key Issues” Proceedings of the International Conference on Computer Applications in Electrical Engineering, Recent Advances (CERA 97), U.O.R., Roorkee (India), PP 397-403.
[8]. D. J. Sobajic and Y. H. Pao (1989), “Artificial Neural Network Based Dynamic Security Assessment for Electric Power Systems” IEEE Transaction on Power Systems, Vol. PWRS-4, PP 220-228.
[9]. Y. Y. Hsu, and C. C. Yang (1993), “Fast Voltage Estimation Using an Artificial Neural Network” Electric Power System Research, Vol. 27, PP 1-9.
[10]. S. Ghosh and B. H. Chowdhury (1996), “Design of an Artificial Neural Network for Fast Line Flow Contingency Ranking” Electrical Power & Energy Systems, Vol. 18, No.5, PP 271-277.
[11]. A guide on Steady State Power System Security Analysis with Power World Simulator.
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