DocumentCode :
1330411
Title :
Optimal Design of a Ferromagnetic Yoke for Reducing Crosstalk in Optical Image Stabilization Actuators
Author :
Jung-Hyun Woo ; Jun-Ho Yoon ; Young Jun Hur ; No-Cheol Park ; Young-Pil Park ; Kyoung-Su Park
Author_Institution :
Sch. of Mech. Eng., Yonsei Univ., Seoul, South Korea
Volume :
47
Issue :
10
fYear :
2011
Firstpage :
4298
Lastpage :
4301
Abstract :
In this study, we propose the optimal shape of a ferromagnetic yoke intended to reduce the crosstalk that occurs because of fringe effects at the edge of the magnet used in optical image stabilization (OIS) actuators. Topology optimization was performed with finite element (FE) analysis to determine the optimal shape of the ferromagnetic yoke without degrading the performance of the actuator. To promote the effective use of the topology optimization, the problem was simplified into a 2-D FE analysis, and finite difference approximation was used in the sensitivity analysis. The closest objective function to the special reference value was defined to minimize both the standard deviation and the average magnetic flux density in the y-direction for the Hall effect sensor. Consequently, the optimal shape of the ferromagnetic yoke, obtained by using topology optimization under various volume fraction constraints, was verified using 3-D FE analysis. The results demonstrate that the suggested design method is useful and effective.
Keywords :
Hall effect; crosstalk; electromagnetic actuators; ferromagnetic materials; finite difference methods; finite element analysis; image restoration; image sensors; optical sensors; sensitivity analysis; 2D FE analysis; 3D FE analysis; Hall effect sensor; OIS actuators; average magnetic flux density; crosstalk reduction; ferromagnetic yoke optimal design; finite difference approximation; finite element analysis; fringe effects; optical image stabilization actuators; sensitivity analysis; special reference value; standard deviation; topology optimization; volume fraction constraints; Actuators; Crosstalk; Iron; Magnetic domains; Magnetic resonance imaging; Optimization; Topology; Crosstalk; finite element (FE) analysis; optical image stabilization (OIS); topology optimization; voice-coil actuator;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2146237
Filename :
6027778
Link To Document :
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