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An enhanced fractional-order fuzzy controller design for an integrated power system using a counteractive control action

Author

Listed:
  • Devbrat Gupta
  • Jitendra Kumar
  • Vishal Goyal

Abstract

This research article reports an efficient control of the integrated power system (IPS) using a fractional-order fuzzy proportional and derivative (FOFPD) controller combined with a fractional-order integral and derivative (FOID) controller in order to overcome the sudden variation in microgrid frequency problem. The novelty of the anticipated control strategy lies in the use of FOID control action, which generates the counteractive action to improve the control performance. The controller's gains are optimised by an optimisation algorithm called spider-monkey optimisation (SMO). The objective function is considered as the sum of the integral of the squared deviation of the microgrid frequency (ISFD). The proposed controller's response is then compared with the integer-order counterparts to investigate the effectiveness of the suggested controller. The detailed simulation results demonstrate the robust behaviour of the proposed control scheme and establish its superiority over other investigated control structures.

Suggested Citation

  • Devbrat Gupta & Jitendra Kumar & Vishal Goyal, 2025. "An enhanced fractional-order fuzzy controller design for an integrated power system using a counteractive control action," International Journal of Industrial and Systems Engineering, Inderscience Enterprises Ltd, vol. 49(4), pages 442-477.
  • Handle: RePEc:ids:ijisen:v:49:y:2025:i:4:p:442-477
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