DocumentCode
745082
Title
A novel stand-alone dual stator-winding induction generator with static excitation regulation
Author
Wang, Dong ; Ma, Weiming ; Xiao, Fei ; Zhang, Botao ; Liu, Dezhi ; Hu, An
Author_Institution
Res. Inst. of Power Electron. Technol., Navy Univ. of Eng., Wuhan, China
Volume
20
Issue
4
fYear
2005
Firstpage
826
Lastpage
835
Abstract
On the basis of the new idea of electric power integration, a novel stand-alone dual stator-winding induction generator (DWIG) system is built. In this generator, there are two sets of windings to be embedded in the stator slots. One, referred to as the 12-phase power winding, supplies power to the dc load via a 12-phase bridge rectifier, and the other, called the 3-phase excitation winding, is connected to a pulsewidth modulation (PWM) voltage source static excitation regulator (SER). A solid iron squirrel cage rotor is suitable for high speed generation. Experiments and simulations show the ac capacitors can reduce the inductance of rectifier loads and help to reduce the capacitance of the SER. A simple control methodology based on stator voltage orientation (SVO) is presented to regulate the output voltage of the 12-phase bridge rectifier in this paper. Moreover, the electric energy quality and the relative influence factors are studied by detailed experiments and analyses. The proposed system is especially suitable for self contained electrical systems, such as those found on electric vehicles, ships, and aircraft, where high performance and compact size are essential.
Keywords
PWM rectifiers; asynchronous generators; bridge circuits; machine control; power capacitors; power supply quality; squirrel cage motors; stators; voltage control; voltage regulators; 12-phase bridge rectifiers; 3-phase excitation windings; PWM voltage source static excitation regulators; aircraft; electric energy quality; electric power integration; electric vehicles; pulsewidth modulation; ships; solid iron squirrel cage rotors; stand-alone dual stator winding induction generators; static excitation regulation; stator slots; stator voltage orientation; Bridge circuits; Distributed power generation; Induction generators; Pulse width modulation; Pulsed power supplies; Rectifiers; Regulators; Space vector pulse width modulation; Stator windings; Voltage; 12-phase bridge rectifier; AC capacitors; dual stator-winding induction generator; electric energy quality; electric power integration; high speed generation; self-contained; stator voltage orientation;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/TEC.2005.853744
Filename
1546075
Link To Document