认知不确定性下基于信度的分位数指标设计优化方法

Yubing Chen, M. Wen, Qingyuan Zhang, Rui Kang
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引用次数: 0

摘要

产品可靠性设计优化受认知不确定性的影响较大,给产品使用带来很大风险。针对这一问题,提出了一种基于认知不确定性的基于信念可靠性的设计优化方法。首先,将信念可靠性理论引入到设计优化问题中,基于不确定性理论,提出了一种量化信念可靠性水平的分位数指标,并由此提出了一阶信念可靠性分析(FOBRA)方法。然后,根据不同的权衡策略,建立了两类设计优化模型,并给出了相应的基于fobra的计算方法。最后,通过实例分析验证了本文提出的分析和设计优化方法的有效性。结果表明,采用分位数索引的BRODO方法可以在较好的精度下节省大量的计算时间,并能合理地应对认知不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Belief reliability-based design optimization method with quantile index under epistemic uncertainty
Product reliability design optimization is affected by epistemic uncertainty greatly, which leaves significant risks in product use. In this paper, a new belief reliability-based design optimization (BRBDO) method under epistemic uncertainty is established to handle this problem. First, the belief reliability theory is introduced into the design optimization problem, and a quantile index is proposed to quantify belief reliability level based on uncertainty theory, through which a rapid analysis method called first order belief reliability analysis (FOBRA) method is developed. Then, according to the different trade-off strategies, two types of design optimization models are established, and corresponding FOBRA-based computation methods are also demonstrated. Finally, several case applications are studied to verify the effectiveness of the analysis and design optimization methods proposed in this paper. The results indicate that the BRODO method with the quantile index can save a lot of computational time with acceptable accuracy and can rationally cope with epistemic uncertainty.
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