The stability control of nominal frequency and terminal voltage in an interconnected power system (IPS) is always a challenging task for researchers. The load variation or any disturbance affects the active and reactive power demands, which badly influence the normal working of IPS. In order to maintain frequency and terminal voltage at rated values, controllers are installed at generating stations to keep these parameters within the prescribed limits by varying the active and reactive power demands. This is accomplished by load frequency control (LFC) and automatic voltage regulator (AVR) loops, which are coupled to each other. Due to the complexity of the combined AVR-LFC model, the simultaneous control of frequency and terminal voltage i...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
Frequency, voltage, and power flow between different control zones in an interconnected power system...
Abstract: For interconnection of two or more areas in power system, frequency should be maintained w...
The frequency and voltage challenges when subjected to load disturbance in an interconnected power s...
Abstract — This paper presents a practical model for load frequency control (LFC) of two-area interc...
This paper, deals with tuning of PID controller for the Load Frequency Control (LFC) system of an in...
The random load variation in complex power system affects the desired frequency and voltage.In order...
AbstractA new design of decentralized load-frequency controller for interconnected power systems wit...
A novel design of a robust decentralized load frequency control (LFC) algorithm is proposed for an i...
Power system control and stability have been an area with different and continuous challenges in or...
Power system control and stability have been an area with different and continuous challenges in or...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
Power system control and stability have been an area with different and continuous challenges in or...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
Frequency, voltage, and power flow between different control zones in an interconnected power system...
Abstract: For interconnection of two or more areas in power system, frequency should be maintained w...
The frequency and voltage challenges when subjected to load disturbance in an interconnected power s...
Abstract — This paper presents a practical model for load frequency control (LFC) of two-area interc...
This paper, deals with tuning of PID controller for the Load Frequency Control (LFC) system of an in...
The random load variation in complex power system affects the desired frequency and voltage.In order...
AbstractA new design of decentralized load-frequency controller for interconnected power systems wit...
A novel design of a robust decentralized load frequency control (LFC) algorithm is proposed for an i...
Power system control and stability have been an area with different and continuous challenges in or...
Power system control and stability have been an area with different and continuous challenges in or...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
Power system control and stability have been an area with different and continuous challenges in or...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...
In this paper, Proportional Integral Derivative (PID) controller is designed using Differential Evol...