Title :
Magnetic System Study of a Compound-Structure Permanent-Magnet Synchronous Machine for HEVs
Author :
Yong Liu ; Dansong Cheng ; Yi Sui ; Jingang Bai ; Chengde Tong ; Weiming Tong
Author_Institution :
Sch. of Electr. Eng. & Autom., Harbin Inst. of Technol., Harbin, China
Abstract :
The magnetic coupling problem is discussed for the six topologies of compound-structure permanent-magnet (PM) synchronous machine (CS-PMSM), and the radial-radial flux CS-PMSM is investigated as example. Taking Toyota Prius hybrid system as reference, a radial-radial flux CS-PMSM is designed. Owing to mechanical reason, the thicknesses of the PMs on the outer and inner sides of the outer rotor are quite different, which induces more coupling problem. The magnetic system of CS-PMSM is researched in two aspects: the combination of thicknesses of PM and outer rotor yoke and the effect due to armature reaction. It is concluded that the magnetic coupling problem can be solved by designing an appropriate outer rotor thickness. In order to evaluate the magnetic structure, a downsized radial-radial flux CS-PMSM prototype was designed and manufactured. Back electromotive force (BEMF), relations between torque and current, and efficiency of the prototype were measured, and the experimental results are in good accordance with the calculated results.
Keywords :
hybrid electric vehicles; permanent magnet machines; rotors; synchronous machines; BEMF; HEV; PM thickness; Toyota Prius hybrid system; armature reaction; back electromotive force; compound-structure permanent-magnet synchronous machine; magnetic coupling problem; magnetic system study; radial-radial flux CS-PMSM; rotor thickness; rotor yoke; Air gaps; Armature; Couplings; Magnetic cores; Magnetic flux; Rotors; Saturation magnetization; Armature reaction; compound-structure permanent-magnet (PM) synchronous machine (CS-PMSM); dual mechanical port; hybrid electric vehicle (HEV); magnetic system;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2012.2221451