Title :
Coupled Electromagnetic-Thermal-Mechanical Analysis for Accurate Prediction of Dual-Mechanical-Port Machine Performance
Author :
Xikai Sun ; Ming Cheng ; Sa Zhu ; Jianzhong Zhang
Author_Institution :
Sch. of Electr. Eng., Southeast Univ., Nanjing, China
Abstract :
The performance of an electrical machine depends not only on electromagnetic (EM) parameters but also on the cooling system, the mechanical deformation, and the control system, which are closely coupled with each other. In this paper, a coupled EM-thermal-mechanical analysis for accurate prediction of dual-mechanical-port (DMP) machine performance is proposed. A unified model for the coupled analysis with the same mesh is built, in which the material properties are nonlinear and adjusted on the basis of temperature distribution. Two-dimensional EM finite-element analysis is carried out with the temperature feedback from thermal analysis. The detailed temperature distribution is derived from the losses in the EM analysis. Then, with the force and temperature distributions, mechanical analysis of the surface-mounted permanent-magnet outer rotor with glass fiber is implemented to examine the mechanical deformation and testify the mechanical strength under rated working condition. Finally, with the coupled analysis, a prototype DMP machine is designed, fabricated, and tested in the laboratory. Experimental results are given to verify the accuracy of the proposed analysis.
Keywords :
cooling; deformation; electromagnetic coupling; finite element analysis; glass fibres; losses; mechanical strength; permanent magnet machines; rotors; surface mount technology; temperature distribution; thermal analysis; thermomechanical treatment; 2D EM analysis; DMP machine; control system; cooling system; coupled electromagnetic thermal-mechanical analysis; dual mechanical port machine performance prediction; finite element analysis; glass fiber; losses; mechanical analysis; mechanical deformation; mechanical strength; surface mounted permanent magnet outer rotor; temperature distribution; temperature feedback; thermal analysis; Air gaps; Iron; Rotors; Stator windings; Temperature distribution; Thermal analysis; Coupled analysis; dual-mechanical-port (DMP) machine; electromagnetic (EM); mechanical; thermal;
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2012.2226859