Title :
Multidisciplinary Design Analysis and Optimization of a PM Transverse Flux Machine With Soft Magnetic Composite Core
Author :
Gang Lei ; Chengcheng Liu ; Youguang Guo ; Jianguo Zhu
Author_Institution :
Sch. of Electr., Mech. & Mechatron. Syst., Univ. of Technol. at Sydney, Sydney, NSW, Australia
Abstract :
This paper presents a multidisciplinary analysis and a design optimization approach for a permanent magnet (PM) transverse flux machine (TFM) with a soft magnetic composite (SMC) core. First of all, electromagnetic, thermal, and modal analyses, and the manufacturing method of the SMC cores, are investigated for this machine. Meanwhile, a lumped 3-D thermal network model is developed for the thermal analysis. Then, a multidisciplinary optimization design model is proposed to minimize the material cost and to maximize the output power based on the proposed multidisciplinary analysis models. The numerical solutions obtained from electromagnetic and thermal analyses are validated by comparing them with the previous experimental results. As shown, the performance of this PM-SMC TFM can be improved greatly using the proposed approach. Finally, a finite-element model is employed to verify the performances obtained from optimal results in terms of thermal and modal analyses.
Keywords :
finite element analysis; magnetic cores; optimisation; permanent magnet machines; soft magnetic materials; thermal analysis; PM transverse flux machine; electromagnetic analysis; finite element model; lumped 3D thermal network; modal analysis; multidisciplinary analysis model; multidisciplinary design analysis; multidisciplinary optimization design; permanent magnet transverse flux machine; soft magnetic composite core; thermal analysis; Analytical models; Finite element analysis; Magnetic cores; Rotors; Stator cores; Thermal analysis; Finite element analysis; Finite-element analysis; multidisciplinary design optimization; multidisciplinary design optimization (MDO); soft magnetic composite; soft magnetic composite (SMC); transverse flux machine; transverse flux machine (TFM);
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2015.2440429