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Sequential optimization and reliability assessment for multidisciplinary systems design

机译:多学科系统设计的顺序优化和可靠性评估

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With higher reliability and safety requirements, reliability-based design has been increasingly applied in multidisciplinary design optimization (MDO). A direct integration of reliability-based design and MDO may present tremendous implementation and numerical difficulties. In this work, a methodology of sequential optimization and reliability assessment for MDO is proposed to improve the efficiency of reliability-based MDO. The central idea is to decouple the reliability analysis from MDO with sequential cycles of reliability analysis and deterministic MDO. The reliability analysis is based on the first-order reliability method (FORM). In the proposed method, the reliability analysis and the deterministic MDO use two MDO strategies, the multidisciplinary feasible approach and the individual disciplinary feasible approach. The effectiveness of the proposed method is illustrated with two example problems.
机译:随着对可靠性和安全性的更高要求,基于可靠性的设计已越来越多地应用于多学科设计优化(MDO)中。基于可靠性的设计和MDO的直接集成可能会带来巨大的实现和数值上的困难。在这项工作中,提出了一种针对MDO进行顺序优化和可靠性评估的方法,以提高基于可靠性的MDO的效率。中心思想是将可靠性分析与MDO分离,并与可靠性分析和确定性MDO的顺序循环相结合。可靠性分析基于一阶可靠性方法(FORM)。在提出的方法中,可靠性分析和确定性MDO使用两种MDO策略,即多学科可行方法和个人学科可行方法。通过两个示例问题说明了该方法的有效性。

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