Title :
Direct torque and flux control of speed sensorless five-phase interior permanent magnet motor based on adaptive sliding mode control
Author :
Shishehgar, Jafar ; Soltani, Jafar ; Tabrizchi, Ali Mohamad ; Abjadi, Navid Reza
Author_Institution :
Islamic Azad Univ., Isfahan, Iran
Abstract :
In this paper, a nonlinear controller is developed based on adaptive sliding mode control (SMC) for direct torque and flux control of a speed sensorless five-phase interior permanent magnet synchronous motors (IPMSM). A sliding mode torque and flux controller is developed to improve the classical direct torque control performance. Having 32 space voltage vectors in space vector modulation (SVM) provides a great flexibility in selecting the inverter switching states. Therefore, the stator flux and torque can be more precisely adjusted. The switching pattern of inverter is designed so that the zero sequence currents are approximately eliminated. An effective method is proposed for motor speed estimation. The novel simple method of maximum torque per ampere (MTPA) will introduce. With the proposed control system, the controlled IPMSM drive possesses the advantage of good transient performance robustness to parametric uncertainties. The proposed control method in this paper is supported by computer simulation results.
Keywords :
adaptive control; angular velocity control; invertors; magnetic flux; nonlinear control systems; permanent magnet motors; sensorless machine control; stators; synchronous motor drives; torque control; transient analysis; variable structure systems; zero current switching; IPMSM drive; MTPA; SMC; SVM; adaptive sliding mode control; direct torque control; inverter switching states; maximum torque per ampere; motor speed estimation; nonlinear controller; sensorless five-phase interior permanent magnet synchronous motors; space vector modulation; space voltage vectors; stator flux control; zero sequence currents; Couplings; Magnetic flux; Pulse width modulation; Robustness; Torque; Adaptive sliding mode control; Direct torque and flux control; MTPA; SVM; five-phase permanent-magnet (IPM) motor;
Conference_Titel :
Power Electronics, Drive Systems and Technologies Conference (PEDSTC), 2014 5th
Conference_Location :
Tehran
DOI :
10.1109/PEDSTC.2014.6799340