Metamodel-based multi-objective robust design optimization of structures

Jesús Martínez‐Frutos, Pascual Martí-Montrull · WIT transactions on the built environment · 2012

Multi-objective robust optimization (MORO) is a highly demanding computational task because of the direct nesting of the uncertainty quantification within optimization.This work presents an approach based on Kriging models to efficiently include the uncertainty quantification in the optimization procedures.In the proposed approach the metamodels appear both at optimization level as well as at uncertainty quantification level.The proposed methodology allows us to: (1) assess the robustness of each design using a reduced number of simulator runs, as compared with conventional approach procedures; and (2) to decouple the uncertainty quantification of the optimization, allowing us to solve the problem with a lower computational cost compared to the nested approach.A benchmark problem has been considered using different approaches in order to compare their relative merits.The results show that the proposed method has potential to obtain solutions with reasonable accuracy and a considerably lower number of function calls than required by conventional methods.

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