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Robustness analysis in structural optimization

机译:结构优化中的稳健性分析

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摘要

Structural optimization typically aims at high performance levels for a clearly specified set of conditions. Unfortunately, this goal can usually be achieved only by sacrificing robustness of the design. This implies a high sensitivity with respect to unforeseen stochastic situations or unavoidable random manufacturing tolerances. In order to prevent structural failure due to loss of robustness it is therefore desirable to incorporate a suitable measure of robustness into the optimization process. This can be achieved by introducing additional constraint conditions or appropriate modifications of the objective function. An example for such a design concept is reliability-based optimization based on the notion of the failure probability. This is most appropriate for high-risk structures such as, e.g. power-generating facilities. Alternatively, simpler stochastic measures such as variances or standard deviations might be more appropriate for the design of low-risk structural elements which are frequently found, e.g. in the automotive industry. This paper discusses the basic requirement for robust optimization and attempts to outline the pros and cons of different approaches to the solution of this problem.
机译:结构优化通常针对一组明确指定的条件来实现高性能水平。不幸的是,通常只能通过牺牲设计的鲁棒性来实现该目标。这意味着对于不可预见的随机情况或不可避免的随机制造公差具有很高的敏感性。为了防止由于健壮性的损失而导致的结构失效,因此期望将健壮性的适当量度并入优化过程中。这可以通过引入其他约束条件或对目标函数进行适当的修改来实现。这种设计概念的一个示例是基于故障概率概念的基于可靠性的优化。这最适合高风险的结构,例如发电设施。备选地,诸如方差或标准偏差之类的更简单的随机量度可能更适合于设计经常发现的低风险结构元件,例如,结构件。在汽车行业。本文讨论了鲁棒优化的基本要求,并试图概述解决该问题的不同方法的利弊。

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