MODELLING AND SIMULATION OF A STAND-ALONE HYBRID POWER GENERATION SYSTEM INCORPORATING REDOX FLOW BATTERY STORAGE SYSTEM

S.A. Lone∗ and M.D. Mufti∗

References

  1. [1] T. Kaizuka & T. Sasaki, Evaluation of control maintainingelectric power quality by use of rechargeable battery system,Proc. IEEE PES Winter Meeting, Columbus, Ohio, USA, 2001,pp. 88–93.
  2. [2] T. Sasaki, T. Kadoya, & K. Enomoto, Study on load frequencycontrol using redox flow batteries, IEEE Transactions on PowerSystems, 19 (1), 2004, 660–667.
  3. [3] S.A. Lone & M.D. Mufti, Redox flow batteries : modelled forpower quality improvements in autonomous wind–diesel powersystems, Wind Engineering, 28 (5), 2004, 577–586.
  4. [4] G.S. Stavrakakis & G.N. Kariniotakis, A general simulation al-gorithm for accurate assessment of isolated diesel–wind turbinesystem integration, IEEE Transactions on Energy Conversion,10 (3), 1995, 577–590.
  5. [5] M.D. Mufti, R. Balasubramanian, S.C. Tripathy, & S.A. Lone,Modelling and control of weak power systems supplied fromdiesel and wind, International Journal of Power and Energysystems, 23 (1), 2003, 24–36.
  6. [6] K. Enomoto, T. Sasaki, T. Shigematsu, & H. Deguchi, Eval-uation study about redox flow battery response and mod-elling, IEEJ Transactions of Power Engineering, 122-B, 2002,554–560.
  7. [7] A.M. Trzynadlowski, Introduction to modern power electronics(New York: John Wiley, 1998).
  8. [8] T. J. Ross, Fuzzy logic with engineering applications (McGraw-Hill International, 2004).
  9. [9] M.D. Mufti, R. Balasubramanian, & S.C. Tripathy, Fuzzy logiccontrollers for wind-diesel systems, Proc. IASTED Int. Conf.Power and Energy Systems, Marbella, Spain, 2000, 683–687.
  10. [10] T. Ise, K. Misanori, & T. Akira, A hybrid energy storage witha SMES and secondary battery, IEEE Transactions on AppliedSuperconductivity, 15 (2), 2005, 1915–1918.345

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