Experimental Verification of Critical-Speed Increase of Single-Phase Induction Machines via Winding Reconfiguration With Solid-State Switches

The concept of online electronic switching of windings will be applied to a single-phase induction motor with two separate windings with different pole numbers p 1 = 4 and p 2 = 6 and an auxiliary winding required for starting. During switchover from the low-speed winding to the high-speed winding,...

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Veröffentlicht in:IEEE transactions on energy conversion 2008-06, Vol.23 (2), p.460-465
Hauptverfasser: Schraud, J., Fuchs, E.F., Fuchs, H.A.
Format: Artikel
Sprache:eng
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Zusammenfassung:The concept of online electronic switching of windings will be applied to a single-phase induction motor with two separate windings with different pole numbers p 1 = 4 and p 2 = 6 and an auxiliary winding required for starting. During switchover from the low-speed winding to the high-speed winding, and vice versa, lasting less than a few milliseconds, small electrical torque and speed transients occur. Relying on closed-loop speed control, a smooth speed response is measured. This concept is, therefore, applicable to variable-speed drives, where a large speed range is desirable. Test data indicate that a speed-control range from 600 to 4000 r/min is obtainable with a single-phase induction motor.
ISSN:0885-8969
1558-0059
DOI:10.1109/TEC.2008.921476