영구자석전동기의 코깅토오크저감을 위한 민감도에 의한 형상최적화

Shape Optimization for Reduction of Cogging Torque in Permanent Magnet Motor by Sensitivity Analysis

  • 발행 : 1990.11.17

초록

In this paper, in order to reduce the cogging torque in a permanent motor, a method to optimize the shape of permanent magnet and iron pole is presented. Because the cogging torque comes from the irregular system energy variation according to the rotor position, system energy variation is taken as object function and the object function is minimized to optimize the shape. The positions of permanent magnet surface and iron pole surface are chosen as design parameters and sensitivity of object function with respect to design parameter is calculated. The shape is changed according to sensitivity. Sensitivity can be generated by methods that exploit the FEM formulation. A numerical example shows that about 90% of the original cogging torque is reduced.

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