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Fuzzy Control Strategy for Damping Sub-Synchronous Resonance

  • Qader, M.R. (Deanship of Graduate Studies & Scientific Research, University of Bahrain)
  • Received : 2017.07.08
  • Accepted : 2018.02.11
  • Published : 2018.09.01

Abstract

Sub-Synchronous Resonance (SSR) is a phenomenon that harms turbine generator shafts because the phenomenon induces sub-synchronous wavering in the system. In the study presented in this paper, a dynamic resistance bank is used to mitigate the occurrence of sub-synchronous phenomenon. A fuzzy logic controller using rotor speed deviation and its derivative as inputs is implemented to damp sub-synchronous oscillations more efficiently. An eigenvalue technique is used to analyse the stability of the system, and a simulation in MATLAB is conducted, based on the IEEE Second Benchmark, to validate the effectiveness of the proposed method under a 3-phase fault condition at an infinite bus. The time-domain simulation and eigenvalues are used to observe the proposed method's superior ability to damp sub-synchronous oscillation.

Keywords

References

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