In this work Artificial Intelligence (AI) techniques like Fuzzy logic, Genetic Algorithms and Particle Swarm Optimization have been used to improve the performance of the Automatic Generation Control (AGC) system. Instead of applying Genetic Algorithms and Particle swarm optimization independently for optimizing the parameters of the conventional AGC with PI controller, an intelligent tuned Fuzzy logic controller (acting as the secondary controller in the AGC system) has been designed. The controller gives an improved dynamic performance for both hydrothermal and thermal-thermal power systems under a variety of operating conditions
— In a large inter-connected system, large and small generating stations are synchronously connected...
The PID controller still remains a widely used and very effective means of achieving stability in co...
This paper deals with the application of genetic algorithms for optimizing the automatic generation ...
Optimization have been used to improve the performance of the Automatic Generation Control (AGC) sys...
This paper deals with the tuning of parameters for Automatic Generation Control (AGC). A two area in...
This paper presents a new Hybrid Fuzzy (HF) PID type controller based on Genetic Algorithms (GA-s) f...
International audienceThis paper presents a novel approach in addressing a critical power system iss...
Abstract: In this paper, the parameters of PID controller for Automatic Generation Control (AGC) is ...
AbstractIn this paper, a meta-heuristic optimization algorithm has been applied to interconnected Hy...
Abstract:- This paper presents an approach for the design of fuzzy logic power system stabilizers us...
This paper deals with the tuning of AGC of an interconnected power system using genetic algorithms (...
This study addresses the design procedure of an optimized fuzzy fine-tuning (OFFT) approach as an in...
This paper presents an approach for the design of fuzzy logic power system stabilizers using genetic...
Abstract Expert, intelligent and robust automatic generation control (AGC) scheme is requisite for s...
This work addresses the control of load frequency where the chosen arena is the two area thermal-the...
— In a large inter-connected system, large and small generating stations are synchronously connected...
The PID controller still remains a widely used and very effective means of achieving stability in co...
This paper deals with the application of genetic algorithms for optimizing the automatic generation ...
Optimization have been used to improve the performance of the Automatic Generation Control (AGC) sys...
This paper deals with the tuning of parameters for Automatic Generation Control (AGC). A two area in...
This paper presents a new Hybrid Fuzzy (HF) PID type controller based on Genetic Algorithms (GA-s) f...
International audienceThis paper presents a novel approach in addressing a critical power system iss...
Abstract: In this paper, the parameters of PID controller for Automatic Generation Control (AGC) is ...
AbstractIn this paper, a meta-heuristic optimization algorithm has been applied to interconnected Hy...
Abstract:- This paper presents an approach for the design of fuzzy logic power system stabilizers us...
This paper deals with the tuning of AGC of an interconnected power system using genetic algorithms (...
This study addresses the design procedure of an optimized fuzzy fine-tuning (OFFT) approach as an in...
This paper presents an approach for the design of fuzzy logic power system stabilizers using genetic...
Abstract Expert, intelligent and robust automatic generation control (AGC) scheme is requisite for s...
This work addresses the control of load frequency where the chosen arena is the two area thermal-the...
— In a large inter-connected system, large and small generating stations are synchronously connected...
The PID controller still remains a widely used and very effective means of achieving stability in co...
This paper deals with the application of genetic algorithms for optimizing the automatic generation ...