Title :
Position Sensorless Control of PM Synchronous Motors Based on Zero-Sequence Carrier Injection
Author :
Leidhold, Roberto
Author_Institution :
Dept. of Power Electron. & Control of Drives, Tech. Univ. Darmstadt, Darmstadt, Germany
Abstract :
A position sensorless control method for PM synchronous motors is proposed in this paper. It relies on the magnetic saliencies to estimate the position of the rotor. In usual sensorless methods, a signal is injected in the αβ or dq components. In the proposed method, the signal is injected in the zero-sequence component. The high-frequency inherent zero-sequence component produced by a space-vector pulsewidth modulator (PWM) is used. In this way, no modification is required in the PWM, even at zero voltage, and the injected signal does not interact with the current controller. The response to the injected signal is obtained by a simple current derivative sensor. With this method, the position can be evaluated with high dynamics and with a high signal-to-noise ratio. The performance of the proposed method is evaluated with an experimental setup, using standard industrial servomotors with surface-mounted magnets.
Keywords :
machine control; permanent magnet motors; position control; rotors; servomotors; synchronous motors; PM synchronous motors; industrial servomotors; magnetic saliencies; position sensorless control; rotor position; signal-to-noise ratio; simple current derivative sensor; space-vector pulsewidth modulator; surface-mounted magnets; zero-sequence carrier injection; zero-sequence component; Inductance; Pulse width modulation; Sensorless control; Space vector pulse width modulation; Synchronous motors; Time frequency analysis; Electrical drives; estimation techniques; permanent magnet machines; sensorless methods;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2011.2112323