Stator Slot Shape Optimization of Induction Motors for Iron Loss Reduction

철손 저감을 위한 유도전동기 고정자 슬롯 형상 최적화

  • Park, S.B. (Dept. of Electrical Eng. Seoul National University) ;
  • Lee, H.B. (Dept. of Electrical Eng. Seoul National University) ;
  • Park, I.H. (Dept. of Electrical Eng. Soongsil University) ;
  • Chung, T.K. (Dept. of Electrical Eng. Chungang University) ;
  • Hahn, S.Y. (Dept. of Electrical Eng. Seoul National University)
  • Published : 1994.07.21

Abstract

In this paper, the optimum shape design of stator slot of induction motors for iron loss reduction is proposed. To obtain the flux distribution in induction motors, 2-D finite element method with voltage source is employed. The iron loss is calculated from the iron loss data given by the iron manufacturer. To calculate the sensitivity of iron loss to shape variation, the sensitivity analysis of discrete approach is used. The proposed algorithm is applied to a 3-phase squirrel cage induction motor. The nodes at stator slot boundary of the induction motor are defined as design parameters. By controlling these parameters under the constant volume of iron, we can minimize the iron loss. Furthermore, the stator copper loss is reduced by increasing the slot area. So the stator slot area is determined at the point that the summation of iron loss and copper loss of stator is minimized. Since the constraint of constant volume of iron is nonlinear to the design parameters, the Gradient Projection method is used as an optimization algorithm.

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