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Efficient optimum safety factor approach for system reliability-based design optimization with application to composite yarns

机译:基于系统可靠性的设计优化的高效最佳安全因子方法与复合纱线的应用

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摘要

Introduction. The integration of reliability and optimization concepts seeks to design structures that should be both economic and reliable. This model is called Reliability-Based Design Optimization (RBDO). In fact, the coupling between the mechanical modelling, the reliability analyses and the optimization methods leads to very high computational cost and weak convergence stability. Materials andMethods. Several methods have been developed to overcome these difficulties. The methods called Reliability Index Approach (RIA) and Performance Measure Approach (PMA) are two alternative methods. RIA describes the probabilistic constraint as a reliability index while PMA was proposed by converting the probability measure to a performance measure. An Optimum Safety Factor (OSF) method is proposed to compute safety factors satisfying a required reliability level without demanding additional computing cost for the reliability evaluation. The OSF equations are formulated considering RIA and PMA and extended to multiple failure case.Research Results. Several linear and nonlinear distribution laws are applied to composite yarns studies and then extended to multiple failure modes. It has been shown that the idea of the OSF method is to avoid the reliability constraint evaluation with a particular optimization process.Discussion and Conclusions. The simplified implementation framework of the OSF strategy consists of decoupling the optimization and the reliability analyses. It provides designers with efficient solutions that should be economic satisfying a required reliability level. It is demonstrated that the RBDO compared to OSF has several advantages: small number of optimization variables, good convergence stability, small computing time, satisfaction of the required reliability levels.
机译:介绍。可靠性和优化概念的集成旨在设计应经济可靠的结构。该模型称为基于可靠性的设计优化(RBDO)。事实上,机械建模与可靠性分析与优化方法之间的耦合导致了非常高的计算成本和弱收敛稳定性。材料和方法。已经开发了几种方法来克服这些困难。称为可靠性指数方法(RIA)和性能测量方法(PMA)的方法是两种替代方法。 RIA描述了作为可靠性指标的概率约束,而通过将概率测量转换为性能测量来提出PMA。提出了一种最佳安全系数(OSF)方法来计算满足所需可靠性水平的安全因子,而不要求可靠性评估的额外计算成本。考虑RIA和PMA并扩展到多个故障案例。搜索结果。几种线性和非线性分布定律适用于复合纱线研究,然后延伸到多种故障模式。已经表明,OSF方法的思想是避免使用特定优化过程的可靠性约束评估。探讨和结论。 OSF策略的简化实施框架包括解耦优化和可靠性分析。它为设计人员提供了高效的解决方案,应经济满足所需的可靠性水平。结果证明,与OSF相比的RBDO有几个优点:优化变量少,收敛稳定性良好,计算时间小,满足所需的可靠性水平。

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  • 作者

    Gh. Kharmanda; I. R. Antypas;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 rus
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