OPTIMAL ALLOCATION AND SIZING OF FACTS CONTROLLERS USING DIFFERENTIAL EVOLUTION ALGORITHM

Vanitha Rajendran and Sudhakaran Mahalingam

References

  1. [1] R.M. Mathur and R.K. Varma, Thyristor – based FACTS controllers for electrical transmission systems (IEEE Press Series on Power Engineering, John Wiley & sons, Inc. Publication, 2012).
  2. [2] G. Madhusudhana Rao, S. Sundeep, and S. Radha KrishnaReddy, Optimal power flow controlling with TCSC using expertsystem, Int. Conf. Sustainable Energy and Intelligent Systems(SEISCON 2011), 2011, 379–383.
  3. [3] M. Karthikeyan and P. Ajay-D-Vimalraj, Optimal locationof shunt devices for power flow control, Int. Conf. EmergingTrends in Electrical and Computer Technology (ICETECT),2011, 154–159.
  4. [4] Rashed Ghamgeen Izat, Sun Yuanzhang, A. Rashed Khalid,and H.I. Shaheen, Optimal location of unified power flow con-troller by differential evolution algorithm considering transmission loss reduction, Int. Conf. Power System Technology(POWERCON), 2012, 1–6.
  5. [5] C. Reis, A. Andrade, and F.P. Maciel, Line stability indices for voltage collapse prediction, Int. Conf. Power Engineering, Energy and Electrical Drives (POWERENG’09), 2009, 239–243.
  6. [6] S. Jaganathan, S. Palanisamy, K. Senthilkumaravel, andB. Rajesh, Application of multi-objective technique to incorporate UPFC in optimal power flow using modified Bacte-rial Foraging Technique, International Journal of ComputerApplications, 13(2), 2011, 18–24.
  7. [7] T. Niknam, M.R. Narimani, J. Aghaei, and R. AzizipanahAbar Ghooee, Improved particle swarm optimization for multi-objective optimal power flow considering the cost, loss, emission and voltage stability index, IET Generation, Transmission and Distribution, 6(6), 2012, 515–527.
  8. [8] M. Malik and D. Srinivasan, Optimal power flow using flexible genetic algorithm model in pratical power systems, 2010 Conference Proceedings, IPEC, 2010, 1146–1151.
  9. [9] S. Sreejith, K. Chandrasekaran, and S.P. Simon, Touring ant colony optimization technique for optimal flow incorporating thyristor controlled series compensator, World Congress on Nature and Biologically inspired Computing, NABIC, 2009, 1127–1132.
  10. [10] M.O. Hassan, S.J. Cheng, and Z.A. Zakaria, Steady state modelling of static synchronous compensator and thyristor controlled series compensator for power flow analysis, Information Technology Journal, 8(3), 2009, 347–353.
  11. [11] M. Noroozian, L. Angquist, M. Ghandhari, and G. Anderson, Use of UPFC for optimal power flow control, IEEE Transactions on Power Delivery, 12(4), 1997, 1629–1634.
  12. [12] M.A. Abido and S.R. Spea, Optimal power flow using differential evolution algorithm, Electric Power systems Research, 80(7), 2010, 878–885.
  13. [13] A. Yazdanpanah-Goharrizi and R. Asghari, A novel line stability index (NLSI) for voltage stability assessment of power systems, 7th WSEAS Int. Conf. Power Systems, Beijing, China, 2007, 15–17.
  14. [14] O. Alsac and B. Stott, Optimal load flow with steady state security, IEEE Transactions on Power Apparatus and Systems, PAS–93, 1974, 745–751.

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