A direct method to find the capacitance requirements for a three phase self-excited reluctance generator under any load or speed is introduced. Expressions for the load angle as well as for the minimum value of the excitation capacitance are derived. It has been found that there is a cut off speed, above which no excitation is possible no matter what the terminal capacitance value. Expressions for the value of this speed under open circuit, resistive and pure inductive loads are also derived and presented.IEE
Dependency of the output voltage and frequency of the isolated self-excited induction generator on t...
These The new design of a permanent magnet reluctance generator claimed to be able to convert the en...
This paper presents an optimization method to determine the excitation requirements of three phase s...
A three-phase reluctance machine can be made to operate as a self-excited generator when its rotor i...
Advanced knowledge of the minimum capacitor value required for self-excitation of an induction gener...
This paper proposes a simple method of determining the size of excitation capacitance required to bu...
Abstract: This paper presents a methodology for accurately predicting the minimum value of capacitan...
This paper presents a practical method for computing the minimum capacitance required to initiate vo...
The concept of a Self-Excited Induction Generator (SEIG) has introduced the concept of the placement...
The self regulating feature of a Self Excited Induction Generator (SEIG) by connecting additional ca...
For an induction generator to be self excited a capacitor with a sufficient value has to be connecte...
Operation of a switched reluctance machine (SRM) as a self-excited generator is focused in this work...
A series-connected induction machine is obtained when the stator and rotor windings of a conventiona...
A steady-state model and a transient model of self-excited synchronous reluctance generator are deve...
The concept of generating electrical power using reluctance generator is yet to be fully exploited, ...
Dependency of the output voltage and frequency of the isolated self-excited induction generator on t...
These The new design of a permanent magnet reluctance generator claimed to be able to convert the en...
This paper presents an optimization method to determine the excitation requirements of three phase s...
A three-phase reluctance machine can be made to operate as a self-excited generator when its rotor i...
Advanced knowledge of the minimum capacitor value required for self-excitation of an induction gener...
This paper proposes a simple method of determining the size of excitation capacitance required to bu...
Abstract: This paper presents a methodology for accurately predicting the minimum value of capacitan...
This paper presents a practical method for computing the minimum capacitance required to initiate vo...
The concept of a Self-Excited Induction Generator (SEIG) has introduced the concept of the placement...
The self regulating feature of a Self Excited Induction Generator (SEIG) by connecting additional ca...
For an induction generator to be self excited a capacitor with a sufficient value has to be connecte...
Operation of a switched reluctance machine (SRM) as a self-excited generator is focused in this work...
A series-connected induction machine is obtained when the stator and rotor windings of a conventiona...
A steady-state model and a transient model of self-excited synchronous reluctance generator are deve...
The concept of generating electrical power using reluctance generator is yet to be fully exploited, ...
Dependency of the output voltage and frequency of the isolated self-excited induction generator on t...
These The new design of a permanent magnet reluctance generator claimed to be able to convert the en...
This paper presents an optimization method to determine the excitation requirements of three phase s...