Title :
Low-frequency signal-demodulation-based sensorless technique for induction motor drives at low speed
Author :
Consoli, Alfio ; Scarcella, Giuseppe ; Bottiglieri, Giovanni ; Scelba, Giacomo ; Testa, Antonio ; Triolo, Domenico Antonino
Author_Institution :
Dept. of Electr., Univ. of Catania, Italy
Abstract :
The paper presents a method to compute the air-gap flux position in induction motors at very low including zero-stator frequency. A low-frequency (50 ÷ 100 Hz) sinusoidal stationary signal is added to the normal stator variables to provide the machine with a suitable permanent excitation. Such an additional excitation modulates the saturation level of the magnetic core of the machine according to the angular position of the air-gap flux. As a result, a new zero-sequence stator-voltage component is generated that contains useful information about the position of the air-gap flux unaffected by load variation. Such a zero-sequence voltage can be easily employed to provide a wide bandwidth measurement of the air-gap flux position. A key feature of the proposed approach is that a low-frequency (0 ÷ 5 Hz) signal is demodulated, thus avoiding any drawback featured by previous sensorless techniques operating with high-frequency signal injection.
Keywords :
air gaps; angular velocity control; demodulation; induction motor drives; machine control; magnetic cores; magnetic flux; stators; air-gap flux; bandwidth measurement; carrier frequency signals; induction motor drives; magnetic core; sensorless control; signal-demodulation; speed control; zero-stator frequency; Air gaps; Bandwidth; Frequency; Induction motor drives; Induction motors; Load management; Magnetic cores; Magnetic modulators; Stator cores; Voltage; Carrier frequency signals; modulation of saturation; sensorless control; zero frequency flux; zero speed control;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2005.862294