Shape Optimization of Electromagnetic Devices using High Order Derivativ

고차민감도를 이용한 전기기기 형상 최적화

  • 안영우 (서울대학교 전기공학과) ;
  • 곽인구 (서울대학교 전기공학과) ;
  • 한송엽 (서울대학교 전기공학과) ;
  • 박일한 (성균관대학교 전기전자및컴퓨터공학부)
  • Published : 1998.07.20

Abstract

This paper describes a new method for the faster shape optimization of the electromagnetic devices. In a conventional iterative method of shape design optimization using design sensitivity based on a finite element method, meshes for a new shape of the model are generated and a discretized system equation is solved using the meshes in each iteration. They cause much design time. To save this time, a polynomial approximation of the finite element solution with respect to the geometric design parameters using Taylor expansion is constructed. This approximate state variable expressed explicitly in terms of design parameters is employed in a gradient-based optimization method. The proposed method is applied to the shape design of quadrupole magnet.

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