Design optimization of a sport shoe sole structure by evolutionary computation and finite element method analysis

Author:

Shimoyama K1,Seo K2,Nishiwaki T3,Jeong S1,Obayashi S1

Affiliation:

1. Institute of Fluid Science, Tohoku University, Sendai, Japan

2. Faculty of Education, Art and Science, Yamagata University, Yamagata, Japan

3. Institute of Sport Science, ASICS Corporation, Kobe, Japan

Abstract

This paper describes the design optimization of a sport shoe sole structure by evolutionary computation coupled with eigenmode analysis based on the finite element method. A genetic algorithm assisted by the Kriging response surface model was used for global and efficient optimization. The present study implemented two optimization cases based on equivalent design problem formulations: the single-objective constrained problem and multi-objective non-constrained problem. The optimization described here provided a midsole structure with optimal material properties, in which the elastic modulus should be reduced in rearfoot→midfoot→forefoot-centre domains sequentially as the midsole weight becomes lighter. In addition, a comparison of the results between the two cases yielded insight into constraint handling for faster convergence in midsole design optimization by evolutionary computation.

Publisher

SAGE Publications

Subject

General Engineering

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