Optimal Design of Machine Tool Structure for Static Loading Using a Genetic Algorithm

유전자 알고리듬을 이용한 공작기계 구조물의 정역학적 최적설계

  • Park, Jong-Kweon ;
  • Seong, Hwal-Gyeong
  • 박종권 (한국기계연구원 공작기계그룹) ;
  • 성활경 (국립 창원대학교 기계공학과)
  • Published : 1997.02.01

Abstract

In many optimal methods for the structural design, the structural analysis is performed with the given design parameters. Then the design sensitivity is calculated based on its structural anaysis results. There-after, the design parameters are changed iteratively. But genetic algorithm is a optimal searching technique which is not depend on design sensitivity. This method uses for many design para- meter groups which are generated by a designer. The generated design parameter groups are become initial population, and then the fitness of the all design parameters are calculated. According to the fitness of each parameter, the design parameters are optimized through the calculation of reproduction process, degradation and interchange, and mutation. Those are the basic operation of the genetic algorithm. The changing process of population is called a generation. The basic calculation process of genetic algorithm is repeatly accepted to every generation. Then the fitness value of the element of a generation becomes maximum. Therefore, the design parameters converge to the optimal. In this study, the optimal design pro- cess of a machine tool structure for static loading is presented to determine the optimal base supporting points and structure thickness using a genetic algorithm.

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