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A Concurrent Approach for a Reliability-Based Optimization Design Problem

机译:基于可靠性的优化设计问题的并行方法

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A concurrent approach, which considers variability in design parameters, is proposed for a reliability-based design optimization (RBDO) problem. The RBDO is reformulated as a system with a bi-level structure, consisting of upper and lower levels. The upper level has one sub-system, while the lower level includes two sub-systems. Two major calculations in the RBDO, the reliability analysis (RA) and the deterministic optimization (DO), are decoupled via two sets of pseudo-linking variables, which are copies of the responses in both levels. The objective of the upper level is to minimize the difference in the pseudo-linking variables between the two levels. The main tasks in the lower level are to execute the DO and RA concurrently. The proposed procedure prevents the RBDO from performing the inherited double-loop calculation and improves the computational efficiency. Another benefit is that the RBDO can be solved by any individual RA and DO software. Convergence of the proposed bi-level approach is discussed through the concept of overlapping coordination methodology. Details of a RBDO problem that was solved by the bi-level algorithm are revealed through three numerical examples.
机译:针对基于可靠性的设计优化(RBDO)问题,提出了一种考虑设计参数可变性的并发方法。 RBDO被重新构造为具有上下两层结构的双层结构的系统。上级包含一个子系统,而下级包含两个子系统。 RBDO中的两个主要计算,即可靠性分析(RA)和确定性优化(DO),通过两组伪链接变量解耦,它们是两个级别响应的副本。较高级别的目标是最小化两个级别之间的伪链接变量之间的差异。下层的主要任务是同时执行DO和RA。所提出的过程防止了RBDO执行继承的双循环计算,并提高了计算效率。另一个好处是,RBDO可以通过任何单独的RA和DO软件来解决。通过重叠协调方法的概念讨论了所提出的双层方法的收敛性。通过三个数值示例,揭示了由双层算法解决的RBDO问题的详细信息。

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