A Review on the Fact Device Comparison between UPFC and STATCOM

Authors

  • Abhijeet, Abhishek Dubey

Keywords:

UPFC, STATCOM

Abstract

There will be a ceaselessly developing request to wind energy era limit. This circumstances powers the amendment of the grid codes requirements, should remain associated throughout grid faults, i.e., will ride through the faults; Also help framework Dependability Throughout flaw line state. For an ordinary deficiency condition, those voltage toward the side of the point for regular coupling (PCC) drops underneath 80% instantly and the rotor speed for incitement generators turns into flimsy. In this paper, STATCOM Also UPFC are used to enhancing those low voltage ride-through (LVRT) about wind vitality transformation framework (WECS) to moist those rotor velocity oscillations from claiming incitement generator under flaw line states. We tried to incorporate both facts device for the comparison theme of the proposed system with wind conversion system and tried to show the active and reactive power analysis with both devices.

     

References

E. Muljadi, C.P. Butterfield, J. Chacon, H. Romanowitz, “Power quality aspects in a wind power plant,” 2006 IEEE Power Engineering Society General Meeting, pp. 8, 13–22 June 2006.

T. Sun, C. Chen, F. Blaabjerg, “Voltage recovery of grid-connected wind turbines with DFIG after a short-circuit fault,” IEEE 35th Annual PESC, vol. 3, pp. 1991–97, 20–25 June 2004.

M. Molinas, S. Vazquez, T. Takaku, J.M. Carrasco, R. Shimada, T. Undeland, “Improvement of transient stability margin in power systems with integrated wind generation using a STATCOM: An experimental verification,” ICSECS, 16–18 Nov. 2005.

E. Muljadi, C.P. Butterfield, “Wind Farm Power System Model Development,” World Renewable Energy Congress VII, Colorado, Aug.–Sept. 2004.

S.M. Muyeen, M.A. Mannan, M.H. Ali, R. Takahashi, T. Murata, J. Tamura, “Stabilization of Grid Connected Wind Generator by STATCOM,” IEEE PEDES, Vol. 2, 28–01 Nov. 2005.

Z. Saad-Saoud, M.L. Lisboa, J.B. Ekanayake, N. Jenkins, G. Strbac, “Application of STATCOMs to wind farms,” IEB Proceedings – GTD, vol. 145, pp.1584–1589, 1998.

L. Chun, J. Qirong, X. Jianmin, “Investigation of Voltage Regulation Stability of Static Synchronous Compensator in Power System,” IEEE PESWM, vol. 4, pp.2642–47, 23–27 Jan. 2000.

E. Muljadi, C.P. Butterfield, A. Ellis, J. Mechenbier, J. Hochheimer, R. Young, N. Miller, D. Delmerico, R. Zavadil, J.C. Smith, “Equivalencing the Collector System of a Large Wind Power Plant,” IEEE Power Engineering Society General Meeting, 18–22 June 2006.

F.G. Sinoimeri, W.L. Kling, “Modelling of Power Systems with Large Wind Farms,” IEEE Power Engineering Society Summer Meeting, vol. 1, 2003.

J. M. Carrasco, L. G. Franquelo, J. T. Bialasiewicz, E. Galvan, R. C. P. Guisado, M. A. M. Prats, J. I. Leon, N. Moreno-Alfonso, “Power-electronic systems for the grid integration of renewable energy sources: A survey,” IEEE Transactions on Industrial Electronics, Vol. 53, Issue 4, Aug. 2006.

E. Muljadi, J. Butterfield, A. Ellis, “Effect of Variable Speed Wind Turbine Generator on Stability of a Weak Grid,” IEEE Trans. Energy Conversion, vol. 22, no. 1, pp. 29–36, Mar. 2007.

E. Muljadi, D. Yildirim, T. Batan, “Power quality issues in a hybrid power system,” IEEE Industry Applications Conference, 2000, pp. 1696–1703.

B. Iced, “A novel control scheme for a Doubly-fed induction wind generator under unbalanced grid voltage conditions,” CEME Tele seminar, April 2007.

Dr. Srinivasa Rao Kasiossmayajula, “Compressive Study on Importance of Wind Power in India”, AJER, Vol.2, Issue.1, 2013.

Vladislav, “Analysis of dynamic behavior of electric power systems with large amount of wind power,” a dissertation submitted to Electric Power Engineering, Technical University of Denmark, April 2003.

E. Chen, “Wind parks as power plants,” IEEE PES General Meeting, 2006.

J. Machowski, J. Bialek, J.R. Bumby, Power Systems Dynamics - Stability & Control, 2008.

Y.X. Zhang, C. Rehtanz, B. Pal, Flexible AC Transmission Systems: Modelling & Control, Springer-VBH, New York, 2006.

Wangyuan Zhang, “Optimal sizing and location of static & dynamic reactive power compensation,” Knoxville, Dec. 2007.

N.G. Hingorani, L. Gyugyi, Understanding FACTS: Concepts & Technology of Flexible AC Transmission Systems, Wiley-IEEE Press, 1999, New York.

J.P. Aditya, A. Nikhil, B.H. Chowdhury, “Application of STATCOM for improved reliability of power grid containing a wind turbine,” 2008 IEEE Power Engineering Society General Meeting, July 2008.

M.S. Elmoursi, A.M. Sharaf, “Novel STATCOM Controllers for Voltage Stabilization of S8t Alone Hybrid (Wind/Small Hydro) Schemes,” International Journal of Emerging Electric Power Systems, Vol. 7, Issue 3, Article 5, 2006.

K. Johnsen, B. Eliasson, “SIMULINK Implementation of Wind Farm Model for use in Power System Studies,” Nordic Wind Power Conference, Chalmers University of Technology, March 2004.

Downloads

How to Cite

Abhijeet, Abhishek Dubey. (2022). A Review on the Fact Device Comparison between UPFC and STATCOM. International Journal of Research & Technology, 10(1), 99–104. Retrieved from https://ijrt.org/j/article/view/456