OPTIMAL POWER FLOW BY IPFC USING FUZZY LOGIC CONTROLLER

Mohamed Moudjahed and Mohamed Boudiaf

References

  1. [1] N.G. Hingorani and L. Gyugyi, Understanding FACTS, con-cepts and technology of flexible AC transmission systems (New York: IEEE Press, 2000).
  2. [2] R. Bharathi and C.C.A Rajan, An advanced FACTS controller for power flow management in transmission system using IPFC, International Conference on Process Automation, Control and Computing (PACC), 20–22 July, Coimbatore, India, 1–6.
  3. [3] A.M. Parimi, I. Elamvazuthi, and N. Saad, Fuzzy logic control for IPFC for damping low frequency oscillations, International Conference on Intelligent and Advanced Systems (ICIAS), 15–17 June 2010, Kuala Lumpur, Malaysia, 1–5.
  4. [4] Prechanon Kumkratug, Application of interline power flowcontroller to increase transient stability of power system,Journal of Computer Science, 6(12), 2010, 1490–1493.
  5. [5] A.M. Parimi, N.C. Saho, I. Elamvazuthi, and N. Saad, Transient stability enhancement and power flow control in a multi-machine power system using interline power flow controller, International Conference on Energy, Automation, and Signal (ICEAS), 28–30 Dec. 2011, Bhubaneswar, India, 1–6.
  6. [6] A.V. Naresh Babu, S. Sivanagaraju, Ch. Padmanabharaju,and T. Ramana, Multi-line power flow control using interlinepower flow controller (IPFC) in power transmission systems,International Journal of Electrical and Electronics Engineering, 4(7), 2010, 492–496.
  7. [7] Ali Ajami and Abdel Rahim Kami, Modeling and controlling of IPFC based current-source converter, Second International Conference on Computer and Electrical Engineering, IEEE Computer Society, 1, 2009, 353–357.
  8. [8] Roozbeh Asad and Ahad Kazemi, A new approach for control of IPFC for power flow management, Leonardo Electronic Journal of Practices and Technologies, 9(16), 2010, 21–32.
  9. [9] S. Tecrathana, A. Yokoyama, Y. Nakachi, and M. Yasumatsu, An optimal power flow control method of power system by interline power flow controller (IPFC), The 7th International Power Engineering Conference, 2, 2005, Singapore, 1075–1080.
  10. [10] J. Veeramalla and R. Sreerama Kumar, Application of inter-line power flow controller (IPFC) for damping low frequency oscillations in power systems modern electric power systems (MEPS), Proceedings of the International Symposium, 20–22 Sept. 2010, Wroclaw, 1–6.
  11. [11] M.R. Banaei and A. Kami, Interline power flow controller (IPFC) based damping recurrent neural network controllers for enhancing stability, Energy Conversion and Management, 52, 2011, 2629–2636.
  12. [12] E. Kamal, A. Aitouche, R. Ghorbani, and M. Bayart, Robust fuzzy logic control of wind energy conversion systems with unknown inputs, International Journal of Power and Energy Systems, 32(2), 2012, 71–81.
  13. [13] C. Venkaiah and D.M. Vinod Kumar, Static security based available transfer capability using adaptive neuro fuzzy inference system, International Journal of Power and Energy Systems, 30(3), 2010, 219–228.
  14. [14] L. Saribulut, M. Tumay, and -D. Eker, Performance analysis of fuzzy logic based unified power flow controller, World Academy of Science, Engineering and Technology, 45, 2008, 320–325.
  15. [15] P.M. Anderson and A.A. Fouad, Power System Stability(AMES, IA: The Iowa State University Press, 1977).
  16. [16] A. El-Zonkoly, Optimal sizing of SSSC controllers to minimize transmission loss and a novel model of SSSC to study transient response, Electric Power Systems Research, 78, 2008, 1856–1864.
  17. [17] C. Jianhong, T.T. Lie, D.M. Vilathgamuwa, Basic control of Interline power flow controller, Proceedings of the IEEE Power Engineering Society Winter Meeting, 1, 2002, pp. 521–525.
  18. [18] A.P. Usha Rani and B.S. Rama Reddy, Modeling and digital simulation of interline power flow controller system, International Journal of Computer and Electrical Engineering, 2(3), 2010, 441–446.
  19. [19] T.-T. Ma, P–Q decoupled control schemes using fuzzy neural networks for the unified power flow controller, Electrical Power and Energy Systems, 29, 2007, 748–758.
  20. [20] G. Radhakrishnan and M. Rathika, Application of IPFC scheme in power system transients and analysed using fuzzy technology, International Journal of Computer Applications, 25(5), 2011, 24–29.
  21. [21] D. Menniti, A. Pinnarelli, and N. Sorrentino, A fuzzy logic controller for interline power flow controller model implemented by ATP-EMTP, Proceedings of the Power System Technology, 3, 2002, 1898–1903.
  22. [22] I. Kocaarslan and E. Cam, Fuzzy logic controller in inter-connected electrical power systems for load-frequency control, Electrical Power and Energy Systems, 27, 2005, 542–549.
  23. [23] C.C. Lee, Fuzzy logic in control systems: Fuzzy logic controller I, IEEE Transactions on Systems, Man and Cybernetics, 20(2), 1990, 404–418.
  24. [24] C.C. Lee, Fuzzy logic in control systems: Fuzzy logic controller II, IEEE Transactions on Systems, Man and Cybernetics, 20(2), 1990, 419–435.
  25. [25] H.-X. Li, L. Zhang, K.-Y. Cai and G. Chen, An improvedrobust fuzzy-PID controller with optimal fuzzy reasoning, IEEE Transactions on Systems, Man, and Cybernetics – Part b: Cybernetics, 35(6), 2005, 1283–1294.
  26. [26] B. Amarendra Reddy and K. Ram Charan, Control of non-linear systems using parallel structure of fuzzy I+PD controller, International Journal of Engineering Science and Technology, 2(8), 2010, 3422–3433.

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