100
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Effect of TCSC on Chaotic Ferroresonant Oscillations in Voltage Transformer

, , &

REFERENCES

  • Z. Emin, and Y. K. Tong, “Ferroresonance experience in UK: Simulations and measurements,” in International Conference on Power Systems Transients (IPST), Rio de Janeiro, Brazil, Jun. 2001.
  • H. Abbasi, A. Gholami, A. Abbasi, and S. H. Fathi, “Effect of metal oxide arrester on the chaotic oscillations in the voltage transformer with nonlinear core loss model using chaos theory,” Chin. Phys. B, Vol. 23, no. 1, pp. 1–9, Jan. 2014.
  • A. Abbasi, S. H. Fathi, G. B. Gharehpatian, A. Gholami, and H. Abbasi, “Voltage transformer ferroresonance analysis using multiple scales method and chaos theory,” Complexity J., Vol. 18, no. 6, pp. 34–45, Jun. 2013.
  • S. K. Chakravarthy, and C. V. Nayar, “Frequency-locked and quasi periodic (QP) oscillations in power systems,” IEEE Trans. Power Deliv., Vol. 13, no. 2, pp. 560–9, Apr. 1998.
  • D. A. N. Jacobson, “Examples of ferroresonance in a high voltage power system,” in Proceedings of the IEEE Power & Energy Society General Meeting, Vol. 2, 2003, pp. 1206–12.
  • H. Abbasi, A. Gholami, A. Abbasi, and S. H. Fathi, “Chaotic oscillations control in the voltage transformer including nonlinear core loss model by a nonlinear robust adaptive controller,” Electr. Power Energy Syst., Vol. 47, pp. 280–94, Nov. 2013.
  • A. Tokic, V. Madzarevic, and I. Uglesic, “Numerical calculations of three phase transformer transients,” IEEE Trans. Power Deliv., Vol. 20, no. 4, pp. 2493–500, 2005.
  • K. Okumura, “Nonlinear oscillation of three-phase circuit,” Electr. Eng. Japan, Vol. 96, pp. 106–12, Oct. 2005.
  • K. Laohacharoensombat, K. Tuitemwong, S. Jaruwattanadilok, C. Wattanasakpubal, and K. Kleebmek, “Case study of ferroresonance in 33 kV distribution network of PEA Thailand,” in Proceedings of the IEEE Region 10 Conference (TENCON), Vol. C, 2004, pp. 417–20.
  • P. E. Sutherland, and R. Manning, “Ferroresonance in a 13.8 kV distribution line,” in Proceedings of the 41st IAS Annual Meeting IEEE Industry Applications Conference, 2006, pp. 2238–41.
  • T. Tsao, and C. Ning, “Analysis of ferroresonant overvoltages at Maanshan Nuclear Power Station in Taiwan,” IEEE Trans. Power Deliv., Vol. 21, no. 2, pp. 1006–12, Apr. 2006.
  • V. Simha, and W. Lee, “The jump phenomena,” IEEE Ind. Appl. Mag., Vol. 14, no. 5, pp. 53–9, Oct. 2008.
  • A. Clerici, and C. H. Didriksen, “Dynamic overvoltages and ferroresonance found in switching surge studies for Iran 400 kV system,” IEEE Trans. Power Appar. Syst., Vol. PAS-91, no. 1, pp. 195–203, Jan. 1972.
  • D. R. Crane, and G. W. Walsh, “Large mill power outages caused by potential transformer ferroresonance,” IEEE Trans. Ind. Appl., Vol. 24, no. 4, pp. 635–40, Jul./Aug. 1988.
  • M. R. Iravani, A. K. S. Chaudhary, W. J. Giesbrecht, I. E. Hassan, A. J. F. Keri, K. C. Lee, J. A. Martinez, A. S. Morched, B. A. Mork, M. Parniani, A. Sharshar, D. Shirmohammadi, R. A. Walling, and D. A. Woodford, “Modeling and analysis guidelines for slow transients – Part III. The study of ferroresonance,” IEEE Trans. Power Deliv., Vol. 15, no. 1, pp. 255–65, Jan. 2000.
  • P. Ferracci, “Ferroresonance,” Group Schneider: Cah. No. 190, pp. 1–28, Mar. 1998.
  • H. Lamba, M. Grinfeld, S. McKee, and R. Simpson, “Subharmonic ferroresonance in an LCR circuit with hysteresis,” IEEE Trans. Magn., Vol. 33, no. 4, pp. 2495–500, Jul. 1997.
  • A. Rezaei-Zare, R. Iravani, and M. Sanaye-Pasand, “Impacts of transformer core hysteresis formation on stability domain of ferroresonance modes,” IEEE Trans. Power Deliv., Vol. 24, no. 1, pp. 177–86, Jan. 2009.
  • C. Hayashi, Nonlinear Oscillations in Physical Systems. New York, NY: McGraw-Hill, 1964.
  • R. Rudenberg, Transient Performance of Electric Power Systems. New York, NY: McGraw-Hill, 1950.
  • C. Kieny, “Application of the bifurcation theory in studying and understanding the global behavior of a ferroresonant electric power circuit,” IEEE Trans. Power Deliv., Vol. 6, no. 2, pp. 866–72, Apr. 1991.
  • B. A. Mork, and D. L. Stuehm, “Application of nonlinear dynamics and chaos to ferroresonance in distribution systems,” IEEE Trans. Power Deliv., Vol. 9, no. 2, pp. 1009–17, Apr. 1994.
  • S. K. Chakravarthy, and C. V. Nayar, “Parallel (quasi-periodic) ferroresonant oscillations in electrical power systems,” IEEE Trans. Circuits Syst. I: Fundam. Theory Appl., Vol. 42, no. 9, pp. 530–4, Sep. 1995.
  • D. A. N. Jacobson, P. W. Lehn, and R. W. Menzies, “Stability domain calculations of period-1 ferroresonance in a nonlinear resonant circuit,” IEEE Trans. Power Deliv., Vol. 17, no. 3, pp. 865–71, Jul. 2002.
  • L. Yunge, S. Wei, and L. Furong, “Novel analytical solution to fundamental ferroresonance-part I: Power frequency excitation characteristic,” IEEE Trans. Power Syst., Vol. 21, no. 2, pp. 788–93, Apr. 2006.
  • L. Yunge, S. Wei, and L. Furong, “Novel analytical solution to fundamental ferroresonance – Part II: Criterion and elimination,” IEEE Trans. Power Deliv., Vol. 21, no. 2, pp. 794–800, Apr. 2006.
  • W. Piasecki, M. K. Florkowski, M. Fulczyk, and W. Nowak. “Mitigating ferroresonance in voltage transformers in ungrounded MV networks,” IEEE Trans. Power Deliv., Vol. 22, no. 4, pp. 2362–9, Oct. 2007.
  • P. Picher, L. Bolduc, B. Girard, and V. N. Nguyen, “Mitigation of ferroresonance induced by single-phase opening of a three-phase transformer feeder,” in Proceedings of the Canadian Conference on Electrical and Computer Engineering (CCECE), 2006, pp. 482–5.
  • M. Sanaye-Pasand, A. Rezaei-Zare, H. Mohseni, S. Farhangi, and R. Iravani, “Comparison of performance of various ferroresonance suppressing methods in inductive and capacitive voltage transformers,” Presented at the IEEE Power India Conference, New Delhi, India, 2006.
  • Y. Yu, and H. Zhou, “Study on simulation of ferroresonance elimination in 10 kV power system,” in Proceedings of the IEEE/PES Transmission and Distribution Conference & Exhibition: Asia Pacific, 2005, pp. 1–7.
  • L. Yunge, S. Wei, Q. Rui, and Y. Jilin, “A systematical method for suppressing ferroresonance at neutral-grounded substations,” IEEE Trans. Power Deliv., Vol. 18, no. 3, pp. 1009–14, Jul. 2003.
  • A. Abbasi, H. Radmanesh, M. Rostami, and H. Abbasi, “Elimination of chaotic ferroresonance in power transformers including nonlinear core losses applying of neutral resistance,” in EEEIC09, IEEE Conference, Poland, 2009.
  • L. A. Neves, and H. Dommel, “On modeling iron core nonlinearities”, IEEE Trans. Power Syst., Vol. 8, no. 2, pp. 417–25, May 1993.
  • J. M. T. Thompson, and H. B. Stewart, Nonlinear Dynamics and Chaos: Geometrical Methods for Engineers and Scientists. West Sussex: Wiley, 1986.
  • F. Wornle, D. K. Harrison, and Z. Chengke, “Analysis of a ferroresonant circuit using bifurcation theory and continuation techniques,” IEEE Trans. Power Deliv., Vol. 20, no. 1, pp. 191–6, Jan. 2005.
  • A. Ben-Tal, D. Shein, and S. Zissu, “Studying ferroersonance in actual power systems by bifurcation diagram”, Electr. Power Syst. Res., Vol. 49, pp. 175–83, April. 1999.
  • A. H. Nayfeh, Applied Nonlinear Dynamics Analytical, Computational and Experimental Methods. Wiley-VCH Verlag GmbH & Co. KGaA, 2004.
  • M. A. Hudges, “Distance relay performance as affected by capacitor voltage transformers”, Proc. Inst. Electr. Eng., Vol. 121, no. 12, pp. 1557–66, Dec. 1974.
  • M. Davarpanah, M. Sanaye-Pasand, and F. Badrkhani Ajaei, “Compensation of CVT increased error and its impacts on distance relays”, IEEE Trans. Power Deliv., Vol. 27, no. 3, pp. 1670–7, Jul. 2012.
  • D. Hou, and J. Roberts, “Capacitive voltage transformers – transient overreach concerns and solution for distance relaying”, in Proceedings of the 22nd Annual Western Protective Relay Conference, Canada, Vol. 1, 1996, pp. 119–25.
  • H. J. Vermeulen, L. R. Dann, and J. van Roojen, “Equivalent circuit modeling of a capacitive voltage transformer for power system harmonic frequencies,” IEEE Trans. Power Deliv., Vol. 10, no. 4, pp. 1743–9, Oct. 1995.
  • D. Chatterjee, and A. Ghosh, “TCSC control design for transient stability improvement of a multimachine power system using trajectory sensitivity”, Electr. Power Syst. Res., Vol. 77, no. 5–6, pp. 470–83, Apr. 2007.
  • S. G. Jalali, R. A. Hedin, M. Pereira, and K. Sadek, “A stability model for the advanced series compensator (ASC)”, IEEE Trans. Power Deliv., Vol. 11, no. 2, pp. 1128–37, Apr. 1996.
  • N. G. Hingorani, and L. Gyugyi, “Understanding FACTS concepts and technology of flexible AC transmission systems”, Electr. Insul. Mag. IEEE, Vol. 18, no. 1, pp. 1–46, Feb. 2002.
  • R. M. Mathur, and R. K. Varma, Thyristor Based FACTS Controllers for Electrical Transmission Systems. John Wiley & Sons Inc.
  • C. R. Fuerte-Esquivel, E. Acha, and H. Ambriz-PBrez, “A thyristor controlled series compensator model for the power flow solution of practical power networks”, IEEE Trans. Power Syst., Vol. 15, no. 1, pp. 58–64, Feb. 2000.
  • G. Juncheng, T. Luyuan, W. Zhonghong, and G. Jun, “Mathematical model for describing characteristics of TCSC”, in International Conference on Power System Technology IEEE Conference, Vol. 3, 2002, pp. 1498–502.
  • L. F. W. de Souza, E. H. Watanabe, J. E. R. Alves, and L. A. S. Pilotto, “Thyristor and gate controlled series capacitors comparison of components rating”, in Power Engineering Society General Meeting IEEE Conference, Vol. 4, 2003, pp. 2542–7.
  • P. S. Moses, M. A. S. Masoum, and H. A. Toliyat, “Impacts of hysteresis and magnetic couplings on the stability domain of ferroresonance in asymmetric three-phase three-leg transformers”, IEEE Trans. Energy Convers., Vol. 26, no. 2, pp. 581–92, Jun. 2011.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.