DocumentCode :
1260850
Title :
Simultaneous Design Optimization of Permanent Magnet, Coils, and Ferromagnetic Material in Actuators
Author :
Lee, Jaewook ; Dede, Ercan M. ; Nomura, Tsuyoshi
Author_Institution :
Toyota Res. Inst., Toyota Motor Eng. & Manuf. North America, Ann Arbor, MI, USA
Volume :
47
Issue :
12
fYear :
2011
Firstpage :
4712
Lastpage :
4716
Abstract :
This paper presents structural topology optimization of an electro/permanent magnet linear actuator. The optimization goal is to maximize the average magnetic force acting on a plunger that travels over a distance of 20 mm. To achieve this goal, the magnetic field sources (i.e., permanent magnet, positive and negative direction coils), and ferromagnetic material of the yoke are simultaneously co-designed using four design variables for each finite element. The magnetic force is calculated using the Maxwell stress tensor method coupled with finite-element analysis. The optimization sensitivity analysis is performed using the adjoint method, and the optimization problem is solved using a sequential linear programming method. To illustrate the utility of the proposed design approach, linear actuators are designed, and the optimal shapes and locations of the yoke permanent magnet, coils, and ferromagnetic part are provided. In addition, the effects of the PM magnetization direction and the current density strength on design results are described.
Keywords :
coils; current density; electromagnetic actuators; ferromagnetic materials; finite element analysis; linear programming; magnetic field effects; magnetic forces; magnetisation; optimisation; permanent magnets; Maxwell stress tensor method; coils; current density strength; electromagnet linear actuator; ferromagnetic material; finite element analysis; magnetic field sources; magnetic force acting; magnetization direction; optimization problem; optimization sensitivity analysis; permanent magnet linear actuator; sequential linear programming method; simultaneous design optimization; structural topology optimization; yoke permanent magnet; Actuators; Coils; Finite element methods; Magnetic forces; Magnetic materials; Optimization; Permanent magnets; Finite-element method; linear actuators; permanent magnets; structural topology optimization;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2160870
Filename :
5934595
Link To Document :
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