This paper presents the ability of the fuzzy logic-based stabilizer used to generate the supplementary voltage control signal of the SVC to improve the damping of the inter-area mode oscillation in the power system. The base system is symmetrical, consisting of two identical areas connected by a relatively weak tie line. The SVC is chosen to be installed at the tie line midpoint. The active power of the local line will be used as an input signal for the stabilizer. The additional signal is calculated using fuzzy membership function to determine the quantity of reactive power supplied absorbed by SVC. The system oscillation is indicated by a 3-phase-to-ground short circuit occurring at 0.2s of the simulation and subsequently clearing after 1...
Transient Stability is the capability of a system to be able to return to its normal state after exp...
As every power system is constantly being subjected to disturbances, we should see that these distur...
As every power system is constantly being subjected to disturbances, we should see that these distur...
This paper presents the ability of the fuzzy logic-based stabilizer used to generate the supplementa...
Abstract: Problem statement: The disturbance in power system is unavoidable situation. It causes in...
In general, power system oscillations are damped out using power system stabilizer (PSS). Conventio...
Power system stabilizers (PSS) are added to excitation system to enhance the damping during low freq...
Modern power systems consist of several generators working synchronously to meet the Power demand. ...
Power systems stability is a complex problem which was first recognised in 1920 and has been widely ...
A reliable and continuous supply of electric energy is essential for the functioning of today's comp...
Abstract: This paper presents an approach for designing a fuzzy logic-based adaptive SVC damping In ...
Static Var Compensator (SVC) is a shunt type FACTS device which is used in power system primarily fo...
Electro-mechanical oscillations are created, in the machines of an interrelated power network, follo...
The supplementary control of the UPFC can significantly enhance the damping of interconnect power sy...
Static VAR Compensator (SVC) has been used as a supplementary controller to improve transient stabil...
Transient Stability is the capability of a system to be able to return to its normal state after exp...
As every power system is constantly being subjected to disturbances, we should see that these distur...
As every power system is constantly being subjected to disturbances, we should see that these distur...
This paper presents the ability of the fuzzy logic-based stabilizer used to generate the supplementa...
Abstract: Problem statement: The disturbance in power system is unavoidable situation. It causes in...
In general, power system oscillations are damped out using power system stabilizer (PSS). Conventio...
Power system stabilizers (PSS) are added to excitation system to enhance the damping during low freq...
Modern power systems consist of several generators working synchronously to meet the Power demand. ...
Power systems stability is a complex problem which was first recognised in 1920 and has been widely ...
A reliable and continuous supply of electric energy is essential for the functioning of today's comp...
Abstract: This paper presents an approach for designing a fuzzy logic-based adaptive SVC damping In ...
Static Var Compensator (SVC) is a shunt type FACTS device which is used in power system primarily fo...
Electro-mechanical oscillations are created, in the machines of an interrelated power network, follo...
The supplementary control of the UPFC can significantly enhance the damping of interconnect power sy...
Static VAR Compensator (SVC) has been used as a supplementary controller to improve transient stabil...
Transient Stability is the capability of a system to be able to return to its normal state after exp...
As every power system is constantly being subjected to disturbances, we should see that these distur...
As every power system is constantly being subjected to disturbances, we should see that these distur...