The paper present the experimental experience on specially designed two winding single phase Self Excited Induction Generator (SEIG). That projects some new and interesting physical phenomenon observed therein. The paper present some results on effects of speed, load and load power factor on THD in voltage and current, capacitive VAr requirement for desired voltage, voltage buildup time both under no load and loaded conditions. Some useful observations on series compensated single phase SEIG, magnitude of surge current during terminal short circuiting and voltage collapse phenomenon are also discussed in the paper. These results may help in improved design of such SEIG systems under variable speed and no load conditions encountered in pract...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
The paper present the experimental experience on specially designed two winding single phase Self Ex...
This article deals with the performance prediction and analysis of the two winding single-phase self...
A comprehensive and general analytical method supported by computer software for design of single-ph...
A comprehensive and general analytical method supported by computer software for design of single-ph...
This paper presents an in-depth comparison of two possible schemes to supply 1-phase loads from self...
This paper presents an in-depth comparison of two possible schemes to supply 1-phase loads from self...
This study presents a novel approach to determine the steady-state performance of a self-excited ind...
Improvements of voltage regulation characteristics of self-excited induction generators (SEIGs) are ...
Improvements of voltage regulation characteristics of self-excited induction generators (SEIGs) are ...
This paper deals with the design and development of a novel single-phase two winding self-excited sq...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
The paper present the experimental experience on specially designed two winding single phase Self Ex...
This article deals with the performance prediction and analysis of the two winding single-phase self...
A comprehensive and general analytical method supported by computer software for design of single-ph...
A comprehensive and general analytical method supported by computer software for design of single-ph...
This paper presents an in-depth comparison of two possible schemes to supply 1-phase loads from self...
This paper presents an in-depth comparison of two possible schemes to supply 1-phase loads from self...
This study presents a novel approach to determine the steady-state performance of a self-excited ind...
Improvements of voltage regulation characteristics of self-excited induction generators (SEIGs) are ...
Improvements of voltage regulation characteristics of self-excited induction generators (SEIGs) are ...
This paper deals with the design and development of a novel single-phase two winding self-excited sq...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...
This paper presents a new transient model of a stand alone (isolated) self excited induction generat...