Title :
Investigation of Torque Characteristics in a Novel Permanent Magnet Flux Switching Machine With an Outer-Rotor Configuration
Author :
Weizhong Fei ; Luk, Patrick Chi Kwong ; Dong-Min Miao ; Jian-Xin Shen
Author_Institution :
Cranfield Univ., Cranfield, UK
Abstract :
This paper comprehensively investigates the torque characteristics of a novel permanent magnet flux switching (PMFS) machine with outer-rotor configuration. Due to the nature of severe magnetic saturations in the machine, it is of particular interest to ascertain the extent of impact of the load conditions on the overall torque output as well as its component parts. The frozen permeability techniques are implemented in finite element analysis (FEA) to segregate the output torque of the outer-rotor PMFS machine into three parts: cogging torque, reluctance torque, and permanent magnet torque. 2-D FEA is first employed to reveal the effects of phase current amplitudes and angles on those three torque components as well as the overall torque, while the 3-D FEA is carried out to further uncover the influences of end effects on the torque characteristics of the machine. Finally, experimental tests on a prototype machine are performed to validate the torque characteristic predictions by FEA.
Keywords :
finite element analysis; magnetic flux; magnetic permeability; permanent magnet machines; permanent magnets; rotors; torque; 2D finite element analysis; 3D finite element analysis; cogging torque; frozen permeability techniques; load conditions; outer-rotor configuration; overall torque output; permanent magnet flux switching machine; permanent magnet torque; phase angle effect; phase current amplitude effect; reluctance torque; severe magnetic saturation nature; torque characteristic predictions; torque components; Forging; Magnetic flux; Permeability; Rotors; Saturation magnetization; Stators; Torque; Cogging torque; end effect; finite element analysis; flux switching; frozen permeability; magnetic saturation; outer-rotor; outerrotor; permanent magnet torque; reluctance torque; torque ripple;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2013.2288219