반응표면법 및 다목적 최적화를 이용한 철근콘크리트 건물모델의 모델 개선

Model Updating of a RC Frame Building using Response Surface Method and Multiobjective Optimization

초록

In this paper, a model updating procedure based on the response surface method combined with the multi-objective optimization was proposed and applied for updating of the FE models representing a low-rise reinforced concrete building before and after the seismic retrofit. The dynamic properties to be matched were obtained from vibration tests using a small shaker system. By varying the structural parameters according to the central composite design, analysis results from the initial FE model using a commercial software were collected and used to produce two regression functions each of which representing the errors in the natural frequencies and mode shapes. The two functions were used as the objective functions for multi-objective optimization. Final solution was determined by examining the Pareto solutions with one iteration. The parameters representing the stiffnesses of existing concrete, masonry, connection stiffness in expansion joint, new concrete, retrofitted members with steel section jacketing were selected and identified.

키워드

FE model updatingresponse surface methodmulti-objective optimizationvibration testsystem identificationseismic retrofit유한요소모델개선반응표면법다목적최적화진동실험시스템 식별내진보강
제목
반응표면법 및 다목적 최적화를 이용한 철근콘크리트 건물모델의 모델 개선
제목 (타언어)
Model Updating of a RC Frame Building using Response Surface Method and Multiobjective Optimization
저자
이상현유은종
DOI
10.7734/COSEIK.2017.30.1.39
발행일
2017-02
저널명
한국전산구조공학회논문집
30
1
페이지
39 ~ 46

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