Title :
Investigation of airgap flux density and torque performance of six-phase induction motor with special phase current waveform
Author :
Ai, Y. ; Kamper, M.J. ; Wang, Y.
Author_Institution :
Dept. of E&E Eng., Stellenbosch Univ., South Africa
Abstract :
The airgap flux density, and torque of a double three-phase induction motor using a special phase current waveform are investigated in this paper. The special current waveform proposed by the authors comprises of field and torque current components. The aim of using the special current waveform is to realize torque and field control of the motor separately, instead of using the conventional d-q transformation. Three methods are used to verify the flux density and torque of the motor namely conventional analytical calculation, finite element calculation and practical measurements. The practical measurements include field and torque control by means of two full-bridge converters under DSP current control. The results obtained from these methods show good agreement. The results furthermore show that the field and torque of the induction motor can be controlled effectively and in a very simple way by using the special current waveform.
Keywords :
air gaps; bridge circuits; digital control; electric current control; finite element analysis; induction motors; machine vector control; power convertors; torque control; DSP current control; airgap flux density; double three-phase induction motor; finite element calculation; full-bridge converters; motor field control; six-phase induction motor; special phase current waveform; torque control; torque performance; Africa; Air gaps; Current measurement; Density measurement; Digital signal processing; Finite element methods; Induction motors; Inverters; Torque control; Torque measurement; Finite Element; field current; flux density; six-phase moto; torque current;
Conference_Titel :
Electrical Machines and Systems, 2005. ICEMS 2005. Proceedings of the Eighth International Conference on
Print_ISBN :
7-5062-7407-8
DOI :
10.1109/ICEMS.2005.202493