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Extension of optimum safety factor method to nonlinear reliability-based design optimization

机译:最佳安全系数方法扩展至基于非线性可靠性的设计优化

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摘要

In the reliability-based design optimization (RBDO) model, the mean values of uncertain system variables are usually applied as design variables, and the cost is optimized subject to prescribed probabilistic constraints as defined by a nonlinear mathematical programming problem. Therefore, a RBDO solution that reduces the structural weight in uncritical regions does not only provide an improved design but also a higher level of confidence in the design. In this paper, we present recent developments for the RBDO model relative to two points of view: reliability and optimization. Next, we develop several distributions for the hybrid method and the optimum safety factor methods (linear and nonlinear RBDO). Finally, we demonstrate the efficiency of our safety factor approach extended to nonlinear RBDO with application to a tri-material structure.
机译:在基于可靠性的设计优化(RBDO)模型中,不确定系统变量的平均值通常用作设计变量,并且根据非线性数学规划问题定义的规定概率约束来优化成本。因此,减少非关键区域结构重量的RBDO解决方案不仅可以提供改进的设计,而且可以提高设计的信心。在本文中,我们从两个角度介绍了RBDO模型的最新发展:可靠性和优化。接下来,我们为混合方法和最佳安全系数方法(线性和非线性RBDO)开发几种分布。最后,我们证明了将安全系数方法扩展到非线性RBDO并应用于三材料结构的效率。

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