DocumentCode
1549119
Title
Three-phase VSCF induction generator synchronised by a single-phase supply through a passive single-element phase converter
Author
Phillipson, C. ; Kansara, M. ; Holmes, P.G.
Author_Institution
Lincoln Centre, North Lincolnshire Coll., Lincoln, UK
Volume
146
Issue
3
fYear
1999
fDate
5/1/1999 12:00:00 AM
Firstpage
153
Lastpage
158
Abstract
A passive single-element phase converter connected between phases of a 3-phase cage-induction machine and a single-phase supply connected to the combination sets up a synchronously rotating field in the machine airgap. The rotor is driven supersynchronously by a prime mover and balanced 3-phase power is generated. For small slips the machine is a variable-speed constant-frequency (VSCF) generator. In remote areas capacitor self-excited stand-alone induction generators are often used. Where single-phase supply is available, the system presented eliminates the need for capacitors, and the torque on the turbine is maintained constant by dissipation in the resistive element of the phase converter. Variation of the phase-converter parameters as a function of slip maintains output phase balance. Symmetrical component analysis gives the power balance of the generating system. The range of possible supersynchronous operation is defined by the operational range of the phase converter. It is shown that, for certain operating slips, no dissipation occurs in the phase converter. Verification of operation is presented by MATHCAD simulation and laboratory experimentation with a resistive load. A simple nonvoltage-distorting 3-phase output VSCF generating system with single-phase synchronising source and passive phase conversion at small negative slips is presented
Keywords
asynchronous generators; phase convertors; slip (asynchronous machines); 3-phase cage-induction machine; MATHCAD simulation; balanced 3-phase power; fixed torque; machine air gap; passive single-element phase converter; prime mover; single-phase supply; slip dependence; small negative slips; supersynchronously driven rotor; synchronously rotating field; three-phase VSCF induction generator; variable-speed constant-frequency generator;
fLanguage
English
Journal_Title
Science, Measurement and Technology, IEE Proceedings -
Publisher
iet
ISSN
1350-2344
Type
jour
DOI
10.1049/ip-smt:19990169
Filename
785312
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