This paper presents PSS (Power system stabilizer) design based on optimal fuzzy PID (OFPID). OFPID based PSS design is considered for single-machine power systems. The main motivation for this design is to stabilize or to control low-frequency oscillation on power systems. Firstly, describing the linear PID control then to combine this PID control with fuzzy logic control mechanism. Finally, Fuzzy PID parameters (Kp. Kd, KI, Kupd, Kui) are tuned by Genetic Algorthm (GA) to reach optimal global stability. The effectiveness of the proposed PSS in increasing the damping of system electromechanical oscillation is demonstrated in a one-machine-infinite-bus syste
Power system stabilizers (PSSs) are used to generate supplementary control signals for the excitatio...
Abstract:- This paper presents a Genetic based optimization technique towards the optimum design of ...
This paper presents a systematic approach for the design of power system stabilizer using genetic al...
This paper presents PSS (Power system stabilizer) design based on optimal fuzzy PID (OFPID). OFPID b...
This paper presented PSS (Power system stabilizer) design based on Genetic Algorithm - Fuzzy PID (Pr...
This paper presents an approach for the design of fuzzy logic power system stabilizers using genetic...
A Hybrid Power System Stabilizer (HPSS) is presented. The proposed approach uses genetic algorithms ...
Damping of electro-mechanical oscillations in interconnected power systems is important to guarantee...
In this paper, the application of the fuzzy logic based power systems stabilizer (FLPSS) to damp pow...
Abstract:- This paper presents an approach for the design of fuzzy logic power system stabilizers us...
This paper presents a novel approach to combine genetic algorithms (GA) with fuzzy logic systems to ...
Abstract In power systems, Low Frequency Oscillations (LFO) in the range of 0.1 – 2.5 Hz have been s...
This paper presents an Artificial Bee Colony (ABC) algorithm to tune optimal rule-base of a Fuzzy Po...
This paper presents an improvement in stability in a single machine connected to infinite bus power ...
In this paper, the design of a PID type stabilizer is investigated using Genetic algorithms. The pro...
Power system stabilizers (PSSs) are used to generate supplementary control signals for the excitatio...
Abstract:- This paper presents a Genetic based optimization technique towards the optimum design of ...
This paper presents a systematic approach for the design of power system stabilizer using genetic al...
This paper presents PSS (Power system stabilizer) design based on optimal fuzzy PID (OFPID). OFPID b...
This paper presented PSS (Power system stabilizer) design based on Genetic Algorithm - Fuzzy PID (Pr...
This paper presents an approach for the design of fuzzy logic power system stabilizers using genetic...
A Hybrid Power System Stabilizer (HPSS) is presented. The proposed approach uses genetic algorithms ...
Damping of electro-mechanical oscillations in interconnected power systems is important to guarantee...
In this paper, the application of the fuzzy logic based power systems stabilizer (FLPSS) to damp pow...
Abstract:- This paper presents an approach for the design of fuzzy logic power system stabilizers us...
This paper presents a novel approach to combine genetic algorithms (GA) with fuzzy logic systems to ...
Abstract In power systems, Low Frequency Oscillations (LFO) in the range of 0.1 – 2.5 Hz have been s...
This paper presents an Artificial Bee Colony (ABC) algorithm to tune optimal rule-base of a Fuzzy Po...
This paper presents an improvement in stability in a single machine connected to infinite bus power ...
In this paper, the design of a PID type stabilizer is investigated using Genetic algorithms. The pro...
Power system stabilizers (PSSs) are used to generate supplementary control signals for the excitatio...
Abstract:- This paper presents a Genetic based optimization technique towards the optimum design of ...
This paper presents a systematic approach for the design of power system stabilizer using genetic al...