Title :
Adaptive nonlinear speed control of IPMSM with increased linear modulation range for natural sampling
Author :
Schoonhoven, Garin ; Uddin, M. Nasir
Author_Institution :
Lakehead Univ., Thunder Bay, ON, Canada
Abstract :
This paper presents a robust nonlinear control method for interior permanent magnet synchronous motors (IPMSM) based on maximum torque per ampere (MTPA) with harmonic injection. Third harmonic injection is employed for increased utilization of supply potential and reduced motor current harmonic distortion. Global asymptotic stability of the drive is demonstrated through Lyapunov stability criterion and Barbalat´s lemma. Control expressions are derived through adaptive back-stepping technique, with estimation of dynamic load and mechanical coefficient ensuring dynamic operational consistency. The proposed system has been implemented in a co-simulation environment, with control system and machine model implemented in Matlab/Simulink and PSIM, respectively. Simulation results have demonstrated excellent drive performance, harmonic distortion reduction and an increase in the linear modulation range.
Keywords :
Lyapunov methods; adaptive control; angular velocity control; asymptotic stability; control nonlinearities; harmonic distortion; harmonics suppression; machine control; nonlinear control systems; permanent magnet motors; robust control; synchronous motor drives; torque control; Barbalat lemma; IPMSM; Lyapunov stability criterion; MTPA; PSIM; adaptive back-stepping technique; adaptive nonlinear speed control; drive global asymptotic stability; dynamic load estimation; harmonic injection; interior permanent magnet synchronous motor; linear modulation range; maximum torque per ampere; mechanical coefficient; motor current harmonic distortion reduction; natural sampling; Harmonic analysis; Load modeling; MATLAB; Mathematical model; Modulation; Robustness; Torque; IPMSM; Nonlinear control; adaptive back-stepping; parametric estimation; third harmonic injection;
Conference_Titel :
Power Electronics and Drive Systems (PEDS), 2015 IEEE 11th International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/PEDS.2015.7203384