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首页> 外文期刊>Engineering Optimization >RELIABILITY BASED DESIGN OPTIMIZATION USING RESPONSE SURFACES IN APPLICATION TO MULTIDISCIPLINARY SYSTEMS
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RELIABILITY BASED DESIGN OPTIMIZATION USING RESPONSE SURFACES IN APPLICATION TO MULTIDISCIPLINARY SYSTEMS

机译:基于响应曲面的可靠性设计优化在多学科系统中的应用

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摘要

Traditionally, reliability based design optimization (RBDO) is formulated as a nested optimization problem. For these problems the objective is to minimize a cost function while satisfying the reliability constraints. The reliability constraints are usually formulated as constraints on the probability of failure corresponding to each of the failure modes or a single constraint on the system probability of failure. The probability of failure is usually estimated by performing a reliability analysis. The difficulty in evaluating reliability constraints comes from the fact that modern reliability analysis methods are themselves formulated as an optimization problem. Solving such nested optimization problems is extremely expensive for large scale multidisciplinary systems which are likewise computationally intensive. In this research, a framework for performing reliability based multidisciplinary design optimization using approximations is developed. Response surface approximations (RSA) of the limit state functions are used to estimate the probability of failure. An outer loop is incorporated to ensure that the approximate RBDO converges to the actual most probable point of failure. The framework is compared with the exact RBDO procedure. In the proposed methodology, RSAs are employed to significantly reduce the computational expense associated with traditional RBDO. The proposed approach is implemented in application to multidisciplinary test problems, and the computational savings and benefits are discussed.
机译:传统上,基于可靠性的设计优化(RBDO)被表述为嵌套的优化问题。对于这些问题,目的是在满足可靠性约束的同时最小化成本函数。可靠性约束通常被表述为对与每个故障模式相对应的故障概率的约束,或者对系统故障概率的单个约束。通常通过执行可靠性分析来估计故障的可能性。评估可靠性约束的困难来自于这样一个事实,即现代可靠性分析方法本身被公式化为一个优化问题。对于同样计算量大的大规模多学科系统,解决这样的嵌套优化问题非常昂贵。在这项研究中,开发了一种使用逼近来执行基于可靠性的多学科设计优化的框架。极限状态函数的响应面近似(RSA)用于估计故障概率。并入了一个外环,以确保近似的RBDO收敛到实际最可能的故障点。该框架与确切的RBDO程序进行了比较。在所提出的方法中,使用了RSA来显着减少与传统RBDO相关的计算费用。将所提出的方法应用于多学科测试问题,并讨论了计算的节省和收益。

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