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An approximate sequential optimization and reliability assessment method for reliability-based design optimization

机译:基于可靠性的设计优化的近似顺序优化和可靠性评估方法

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摘要

Sequential optimization and reliability assessment (SORA) is one of the most popular decoupled approaches to solve reliability-based design optimization (RBDO) problem because of its efficiency and robustness. In SORA, the double loop structure is decoupled through a serial of cycles of deterministic optimization and reliability assessment. In each cycle, the deterministic optimization and reliability assessment are performed sequentially and the boundaries of violated constraints are shifted to the feasible direction according to the reliability information obtained in the previous cycle. In this paper, based on the concept of SORA, approximate most probable target point (MPTP) and approximate probabilistic performance measure (PPM) are adopted in reliability assessment. In each cycle, the approximate MPTP needs to be reserved, which will be used to obtain new approximate MPTP in the next cycle. There is no need to evaluate the performance function in the deterministic optimization since the approximate PPM and its sensitivity are used to formulate the linear Taylor expansion of the constraint function. One example is used to illustrate that the approximate MPTP will approach the accurate MPTP with the iteration. The design variables and the approximate MPTP converge simultaneously. Numerical results of several examples indicate the proposed method is robust and more efficient than SORA and other common RBDO methods.
机译:顺序优化和可靠性评估(SORA)由于其效率和鲁棒性而成为解决基于可靠性的设计优化(RBDO)问题的最流行的解耦方法之一。在SORA中,通过确定性优化和可靠性评估的一系列循环将双回路结构分离。在每个循环中,顺序执行确定性优化和可靠性评估,并根据前一个循环中获得的可靠性信息,将违反约束的边界转移到可行方向。本文基于SORA的概念,在可靠性评估中采用了近似最可能目标点(MPTP)和近似概率性能测度(PPM)。在每个周期中,需要保留近似MPTP,这将在下一个周期中用于获得新的近似MPTP。由于近似PPM及其灵敏度可用于制定约束函数的线性泰勒展开式,因此无需在确定性优化中评估性能函数。一个例子用来说明近似的MPTP将随着迭代接近精确的MPTP。设计变量和近似MPTP同时收敛。几个例子的数值结果表明,所提出的方法比SORA和其他常见的RBDO方法更可靠,更有效。

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