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Reliability-based design optimization under stationary stochastic process loads

机译:静态随机过程负载下基于可靠性的设计优化

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Time-dependent reliability-based design ensures the satisfaction of reliability requirements for a given period of time, but with a high computational cost. This work improves the computational efficiency by extending the sequential optimization and reliability analysis (SORA) method to time-dependent problems with both stationary stochastic process loads and random variables. The challenge of the extension is the identification of the most probable point (MPP) associated with time-dependent reliability targets. Since a direct relationship between the MPP and reliability target does not exist, this work defines the concept of equivalent MPP, which is identified by the extreme value analysis and the inverse saddlepoint approximation. With the equivalent MPP, the time-dependent reliability-based design optimization is decomposed into two decoupled loops: deterministic design optimization and reliability analysis, and both are performed sequentially. Two numerical examples are used to show the efficiency of the proposed method.
机译:基于时间的基于可靠性的设计可确保在给定的时间段内满足可靠性要求,但计算成本较高。这项工作通过将顺序优化和可靠性分析(SORA)方法扩展到具有固定随机过程负载和随机变量的时间相关问题,从而提高了计算效率。扩展的挑战是识别与时间相关的可靠性目标相关的最可能点(MPP)。由于MPP与可靠性目标之间不存在直接关系,因此本工作定义了等效MPP的概念,该概念通过极值分析和逆鞍点近似来确定。使用等效的MPP,基于时间的基于可靠性的设计优化被分解为两个解耦的循环:确定性设计优化和可靠性分析,并且两者均按顺序执行。通过两个数值例子说明了该方法的有效性。

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