A global robust optimization using kriging based approximation model
- Authors
- Lee, Kwon-Hee; Park, Gyung-Jin
- Issue Date
- Sep-2006
- Publisher
- Japan Society of Mechanical Engineers/Nihon Kikai Gakkai
- Keywords
- robust optimization; kriging; robustness; uncertainties; microgyroscope
- Citation
- JSME International Journal, Series C: Mechanical Systems, Machine Elements and Manufacturing, v.49, no.3, pp 779 - 788
- Pages
- 10
- Indexed
- SCIE
SCOPUS
- Journal Title
- JSME International Journal, Series C: Mechanical Systems, Machine Elements and Manufacturing
- Volume
- 49
- Number
- 3
- Start Page
- 779
- End Page
- 788
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/44698
- DOI
- 10.1299/jsmec.49.779
- ISSN
- 1344-7653
- Abstract
- The current trend of design methodologies is to make engineers objectify or automate the decision-making process. Numerical optimization is an example of such technologies but it may produce uncontrollable uncertainties. To increase m. anageability of such uncertainties, the Taguchi method, reliability-based optimization and robust optimization are commonly being used. The main functional requirement of a mechanical system is to obtain the target performance with maximum robustness. In this research, a design procedure for global robust optimization is developed using kriging and global optimization approaches. Robustness is determined by kriging model to reduce a number of real functional calculations. The simulated annealing algorithm of global optimization methods is adopted to determine the global robust optimum of a surrogate model. As the postprocess, the global optimum is further refined by applying the first-order second-moment approximation method. Mathematical problems and the MEMS design problem are investigated to show the validity of the proposed method.
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