Title :
Flatness based sensorless control of PMSM using test current signal injection and compensation for differential cross-coupling inductances at standstill and low speed range
Author :
Ebersberger, Sebastian ; Seilmeier, Markus ; Piepenbreier, Bernhard
Author_Institution :
Electr. Drives & Machines, Univ. of Erlangen-Nuremberg, Erlangen, Germany
Abstract :
This paper presents a novel flatness based two-degree-of-freedom (2DoF) sensorless control scheme for PMSM at standstill and for low speed range using test current signal injection in the estimated d-axis of the field oriented dq-coordinate system. Asymmetrical winding and saturation might cause the occurrence of differential cross-coupling inductances and as a result the estimated rotor position deviates from the real value. The differential cross-coupling inductances have to be compensated for to overcome this problem. For that a flatness based dynamic feed-forward control is proposed. The control error due to model uncertainties is minimized using a controller that fulfills the internal model principle. The control signal of the high frequency controller in the q-axis is demodulated and afterwards used as the input signal of a tracking-observer to estimate the rotor position.
Keywords :
angular velocity control; demodulation; feedforward; frequency control; inductance; observers; permanent magnet machines; position measurement; rotors; sensorless machine control; synchronous machines; uncertain systems; PMSM; asymmetrical saturation; asymmetrical winding; differential cross-coupling inductance compensation; dynamic feedforward control; field oriented dq-coordinate system; flatness based 2DoF sensorless control scheme; flatness based two-degree-of-freedom sensorless control scheme; internal model principle; test current signal injection; tracking-observer; Current control; Estimation; Hafnium; Rotors; Sensorless control; Trajectory; Windings; Inductances; Permanent magnet machines; Sensorless control; State-space methods;
Conference_Titel :
Sensorless Control for Electrical Drives and Predictive Control of Electrical Drives and Power Electronics (SLED/PRECEDE), 2013 IEEE International Symposium on
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0680-2
DOI :
10.1109/SLED-PRECEDE.2013.6684510