Title :
Digital Sliding-Mode Sensorless Control for Surface-Mounted PMSM
Author :
Rivera DomiÌnguez, Jorge ; Navarrete, Antonio ; Meza, Marco Antonio ; Loukianov, Alexander G. ; Canedo, Jose
Author_Institution :
Dept. of Electron., Univ. de Guadalajara, Guadalajara, Mexico
Abstract :
In this work, a sampled-data model for surface-mounted permanent magnet synchronous motors (SMPMSMs) is proposed based on the symplectic Euler method. Then, based on the obtained model, a digital sliding-mode controller is designed for rotor velocity output tracking. Moreover, for rotor position and velocity and load estimation, a digital observer is designed. A separation principle is introduced in order to verify that the proposed controller can accomplish its task with estimated signals. Open-loop simulations predict that the sampled-data model obtained via the symplectic Euler method performs better than a model obtained with the classical explicit Euler method. Moreover, closed-loop simulations are carried on where the proposed controller is compared with a sampled continuous-time controller, where the controller here designed yields to better results even when the sampling period is increased. Finally, the performance of the proposed controller is verified by experimental tests.
Keywords :
angular velocity control; closed loop systems; control system synthesis; digital control; observers; open loop systems; permanent magnet motors; rotors; sampled data systems; sensorless machine control; surface mount technology; synchronous motors; variable structure systems; classical explicit Euler method; closed loop simulation; digital observer design; digital sliding mode sensorless controller design; load estimation; open loop simulation; permanent magnet synchronous motor; rotor position estimation; rotor velocity estimation; rotor velocity output tracking; sample data model; separation principle; signal estimation; surface mounted PMSM; symplectic Euler method; Digital control; permanent magnet machines; sensorless control; sliding mode control; synchronous motors;
Journal_Title :
Industrial Informatics, IEEE Transactions on
DOI :
10.1109/TII.2013.2262280