This article presents the implementation of a new voltage controller for a single-phase two-winding self-excited induction generator that is suitable for renewable energy applications, such as bio energy and diesel engine. The proposed voltage controller regulates the terminal voltage within ±5% at varying resistive, inductive, and dynamic loads. The proposed voltage controller uses only one shunt capacitor (Csh) controlled using back-to-back connected thyristors to vary the reactive power for voltage control of the self-excited induction generator. The power loss in this shunt capacitor (Csh) is 2 W for a 5-kW self-excited induction generator, which is much less compared to its counterparts, such as the static compensator. The proposed con...
An induction generator is a good option for low power stand-alone, nonconventional energy generation...
This paper proposes a Self-Excited Induction Generator voltage regulation scheme by using Arduino Me...
The generation of electric power using self excited induction generation (SEIG) is a viable option i...
The self excited induction generator has been used in rural areas, answering the calls for more usag...
Reactive compensation is required to maintain terminal voltage of induction generator under varying ...
Abstract: This paper presents the design of a low cost voltage controller of a single phase Self-Exc...
This article describes a controller for voltage and frequency control of self-excited induction gene...
The paper deals with a variable speed, constant voltage controller for induction generator operating...
Micro-hydro generator schemes are an attractive choice for electricity generation in remote location...
Single-phase induction generator is very suitable to be used in the typical loads which only need a ...
The squirrel-cage induction machine is very attractive for small and medium power generation schemes...
This paper presents the regulation of the voltage and frequency of a stand-alone fixed-pitch wind en...
This article proposes a new control scheme for a distributed cogeneration (microcogeneration) plant ...
Induction generators are widely used in nonconventional power generation. Self-excited, squirrel cag...
Reactive compensation is required to maintain terminal voltage of induction generator under varying ...
An induction generator is a good option for low power stand-alone, nonconventional energy generation...
This paper proposes a Self-Excited Induction Generator voltage regulation scheme by using Arduino Me...
The generation of electric power using self excited induction generation (SEIG) is a viable option i...
The self excited induction generator has been used in rural areas, answering the calls for more usag...
Reactive compensation is required to maintain terminal voltage of induction generator under varying ...
Abstract: This paper presents the design of a low cost voltage controller of a single phase Self-Exc...
This article describes a controller for voltage and frequency control of self-excited induction gene...
The paper deals with a variable speed, constant voltage controller for induction generator operating...
Micro-hydro generator schemes are an attractive choice for electricity generation in remote location...
Single-phase induction generator is very suitable to be used in the typical loads which only need a ...
The squirrel-cage induction machine is very attractive for small and medium power generation schemes...
This paper presents the regulation of the voltage and frequency of a stand-alone fixed-pitch wind en...
This article proposes a new control scheme for a distributed cogeneration (microcogeneration) plant ...
Induction generators are widely used in nonconventional power generation. Self-excited, squirrel cag...
Reactive compensation is required to maintain terminal voltage of induction generator under varying ...
An induction generator is a good option for low power stand-alone, nonconventional energy generation...
This paper proposes a Self-Excited Induction Generator voltage regulation scheme by using Arduino Me...
The generation of electric power using self excited induction generation (SEIG) is a viable option i...