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Benchmark study of numerical methods for reliability-based design optimization

机译:基于可靠性的设计优化数值方法的基准研究

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The reliability-based design optimization (RBDO) seeks for the best compromise between cost and safety, by considering system uncertainties. In order to overcome computational difficulties, many formulations have been recently developed, leading to confusion about what method should be selected for a given application, due to the lack of full-scale comparative studies. In this context, the present paper aims at giving an overview of various RBDO approaches which are tested on a benchmark constituted of four examples using mathematical and finite element models, with different levels of difficulties. The study is focused on the three main approaches, namely the two-level approach, the single loop approach and the decoupled approach; for each category, two RBDO formulations are discussed, implemented and tested for numerical examples. The benchmark study allows us to give comprehensive overview of various approaches, to give clear ideas about their capabilities and limitations, and to draw useful conclusions regarding robustness and numerical performance.
机译:基于可靠性的设计优化(RBDO)通过考虑系统不确定性来寻求成本与安全性之间的最佳折衷。为了克服计算困难,由于缺乏全面的比较研究,最近开发了许多公式,导致对于给定的应用应选择哪种方法感到困惑。在这种情况下,本论文旨在概述各种RBDO方法,这些方法在具有四个难度级别的数学和有限元模型的四个示例构成的基准上进行了测试。研究集中在三种主要方法上,即两级方法,单回路方法和解耦方法。对于每个类别,将针对数值示例讨论,实施和测试两种RBDO公式。基准研究使我们能够对各种方法进行全面概述,为它们的功能和局限性提供清晰的思路,并就鲁棒性和数值性能得出有用的结论。

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