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Dynamic reliability-based robust design optimization with time-variant probabilistic constraints

机译:具有时变概率约束的基于动态可靠性的鲁棒设计优化

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With the increasing complexity of engineering systems, ensuring high system reliability and system performance robustness throughout a product life cycle is of vital importance in practical engineering design. Dynamic reliability analysis, which is generally encountered due to time-variant system random inputs, becomes a primary challenge in reliability-based robust design optimization (RBRDO). This article presents a new approach to efficiently carry out dynamic reliability analysis for RBRDO. The key idea of the proposed approach is to convert time-variant probabilistic constraints to time-invariant ones by efficiently constructing a nested extreme response surface (NERS) and then carry out dynamic reliability analysis using NERS in an iterative RBRDO process. The NERS employs an efficient global optimization technique to identify the extreme time responses that correspond to the worst case scenario of system time-variant limit state functions. With these extreme time samples, a kriging-based time prediction model is built and used to estimate extreme responses for any given arbitrary design in the design space. An adaptive response prediction and model maturation mechanism is developed to guarantee the accuracy and efficiency of the proposed NERS approach. The NERS is integrated with RBRDO with time-variant probabilistic constraints to achieve optimum designs of engineered systems with desired reliability and performance robustness. Two case studies are used to demonstrate the efficacy of the proposed approach.
机译:随着工程系统复杂性的提高,在整个产品生命周期中确保高系统可靠性和系统性能的稳健性在实际工程设计中至关重要。由于时变系统的随机输入,通常会遇到动态可靠性分析,这成为基于可靠性的鲁棒设计优化(RBRDO)的主要挑战。本文提出了一种新方法,可以有效地对RBRDO进行动态可靠性分析。该方法的关键思想是通过有效地构建嵌套的极端响应曲面(NERS)将时变概率约束转换为时不变约束,然后在迭代RBRDO过程中使用NERS进行动态可靠性分析。 NERS使用高效的全局优化技术来识别与系统时变极限状态功能的最坏情况相对应的极端时间响应。利用这些极端时间样本,可以构建基于克里格的时间预测模型,并将其用于估计设计空间中任何给定任意设计的极端响应。开发了自适应响应预测和模型成熟机制,以保证所提出的NERS方法的准确性和效率。 NERS与具有时变概率约束的RBRDO集成在一起,以实现具有所需可靠性和性能鲁棒性的工程系统的最佳设计。通过两个案例研究来证明所提出方法的有效性。

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