Magnetic Actuator Design Using Level Set Based Topology Optimization

  • Park, Sang-in
  • Min, Seungjae
  • Yamasaki, Shintaro
  • Nishiwaki, Shinji
  • Yoo, Jeonghoon
Citations

WEB OF SCIENCE

38
Citations

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47

초록

This paper presents a novel design methodology for optimum structural design of magnetic actuators using a level set based topology optimization method where the level set method can represent the precise boundary shape of a structure and also deal with complex topological changes during the optimization process. The distribution of ferromagnetic material is represented by introducing a level set function into the definition of the magnetic reluctivity. The optimization problem is defined to obtain optimal configurations that maximize the magnetic energy of actuators under a minimum bound of total volume. The movement of the implicit moving boundaries of the structure is driven by a transformation of design sensitivities of the objective and the constraints into speed functions that govern the level set propagation. The proposed method is applied to the structural design of magnetic actuators, and is confirmed to be useful for achieving optimal configurations that deliver higher performance and lighter weight designs.

키워드

Level set methodmagnetic actuatorstructural boundary designtopology optimizationActuatorsDrop breakupFerromagnetic materialsLevel measurementMagnetismNumerical methodsShape optimizationStructural designStructural optimizationTopology
제목
Magnetic Actuator Design Using Level Set Based Topology Optimization
저자
Park, Sang-inMin, SeungjaeYamasaki, ShintaroNishiwaki, ShinjiYoo, Jeonghoon
DOI
10.1109/TMAG.2008.2002784
발행일
2008-11
유형
Article; Proceedings Paper
저널명
IEEE Transactions on Magnetics
44
11
페이지
4037 ~ 4040