with STATCOM Abstract — This paper investigates the effect of Static Synchronous Compensator (STATCOM) on the voltage sag in a distributed generation system. For this purpose, the DG system of an integrated steel plant, which is connected to 132 KV grid, is taken under study. The entire system is modelled with STATCOM based Voltage Source Converter (VSC) PWM technique. The voltage sag improvement of the DG system is compared with and without STATCOM. Power System Computer Aided Design/Electromagnetic Transients including DC (PSCAD/EMTDC) is used to carry out simulation of the system under study and detailed results are shown to access the performance of STATCOM based Voltag
Wide-scale penetration of distributed-generation (DG) units into a weakly meshed distribution system...
This paper investigates the effects of Static Synchronous Compensator (STATCOM) on voltage stability...
With the ongoing growth of technologies, maintaining the stability and reliability of power distribu...
This paper presents a novel method of realizing one of the custom power controllers, the distributio...
This paper presents the design of a prototype distribution static compensator (D-STATCOM) for voltag...
The Indian economy has been growing at a fast pace since the beginning of this millennium. Due to co...
Abstract-- The renewable energy resources based distributed system in the power system suffers due t...
Development of a FACTS device model for mitigating voltage sag is presented. It deals with a static ...
This paper presents the design of a prototype distribution static compensator (D-STATCOM) for load c...
Compensator) is used for compensation of reactive power and unbalance caused by various loads in dis...
This paper presents the implementation of Sinusoidal Pulse width modulation (SPWM) technique to miti...
The importance of Distributed Generation (DG) is a well known fact for power system engineers. The p...
A static compensator (STATCOM), also known as static synchronous compensator, is a member of the fle...
This paper presents the design of a prototype distribution static compensator (D-STATCOM) for load c...
Distribution system, as the name suggest, is the medium through which power is distributed among the...
Wide-scale penetration of distributed-generation (DG) units into a weakly meshed distribution system...
This paper investigates the effects of Static Synchronous Compensator (STATCOM) on voltage stability...
With the ongoing growth of technologies, maintaining the stability and reliability of power distribu...
This paper presents a novel method of realizing one of the custom power controllers, the distributio...
This paper presents the design of a prototype distribution static compensator (D-STATCOM) for voltag...
The Indian economy has been growing at a fast pace since the beginning of this millennium. Due to co...
Abstract-- The renewable energy resources based distributed system in the power system suffers due t...
Development of a FACTS device model for mitigating voltage sag is presented. It deals with a static ...
This paper presents the design of a prototype distribution static compensator (D-STATCOM) for load c...
Compensator) is used for compensation of reactive power and unbalance caused by various loads in dis...
This paper presents the implementation of Sinusoidal Pulse width modulation (SPWM) technique to miti...
The importance of Distributed Generation (DG) is a well known fact for power system engineers. The p...
A static compensator (STATCOM), also known as static synchronous compensator, is a member of the fle...
This paper presents the design of a prototype distribution static compensator (D-STATCOM) for load c...
Distribution system, as the name suggest, is the medium through which power is distributed among the...
Wide-scale penetration of distributed-generation (DG) units into a weakly meshed distribution system...
This paper investigates the effects of Static Synchronous Compensator (STATCOM) on voltage stability...
With the ongoing growth of technologies, maintaining the stability and reliability of power distribu...