Probabilistic Design under Uncertainty using Response Surface Methodology and Pearson System

반응표면방법론과 피어슨 시스템을 이용한 불확실성하의 확률적 설계

  • 백석흠 (동아대학교 대학원 기계공학과) ;
  • 조석수 (강원대학교 자동차공학과) ;
  • 주원식 (동아대학교 기계공학과)
  • Published : 2006.04.01

Abstract

System algorithms estimated by deterministic input may occur the error between predicted and actual output. Especially, actual system can't predict the exact outputs due to uncertainty and tolernce of input parameters. A single output to a set of inputs has a limited value without the variation. Hence, we should consider various scatters caused by the load assessment, material characteristics, stress analysis and manufacturing methods in order to perform the robust design or etimate the reliability of structure. The system design with uncertainty should perform the probabilistic structural optimization with the statistical response and the reliability. This method calculated the probability distributions of the characteristics such as stress by combining stress analysis, response surface methodology and Monte Carlo simulation and got the probabilistic sensitivity. The sensitivity of structural response with respect to in constant design variables was estimated by fracture probability. Therefore, this paper proposed the probabilistic reliability design method for fracture of uncorved freight end beam and the design criteria by fracture probability.

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