This article delves into the implementation of a cutting-edge tilt integral derivative controller (TID) within a three-area AGC system. Through the solicitation of innovative Mayfly optimization techniques, the controller and various system parameters have undergone optimization. The dominance of the projected TID controller is evidenced by its outperformance in terms of settling time, and over and under shoots when compared to traditional controllers. Furthermore, the proposed algorithm's advantages are demonstrated through a convergence curve, showcasing its efficacy compared to firefly and particle swarm techniques. Additionally, the sturdiness of the TID controller is substantiated through sensitivity analysis under various loading scenarios.

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Application of Mayfly-Based Optimized TID Controller in a Three-Area Automatic Generation Control System

  • Naladi Ram Babu,
  • Anarpathi Lakshmi Ravi Teja,
  • Saripalli Chakradhar Satya Murthy,
  • Shaik Abdul Subha Fazil,
  • Pabbu Ravisai,
  • Krovvidi Siva Sree,
  • Abhishek Thakur,
  • Tirumalasetty Chiranjeevi

摘要

This article delves into the implementation of a cutting-edge tilt integral derivative controller (TID) within a three-area AGC system. Through the solicitation of innovative Mayfly optimization techniques, the controller and various system parameters have undergone optimization. The dominance of the projected TID controller is evidenced by its outperformance in terms of settling time, and over and under shoots when compared to traditional controllers. Furthermore, the proposed algorithm's advantages are demonstrated through a convergence curve, showcasing its efficacy compared to firefly and particle swarm techniques. Additionally, the sturdiness of the TID controller is substantiated through sensitivity analysis under various loading scenarios.