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Reliability-based optimization of trusses with random parameters under dynamic loads

机译:动态载荷下随机参数桁架的可靠性优化

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In this work, a reliability-based optimization technique is addressed to obtain the minimum mean value of random mass of the structures with random parameters under stationary stochastic process excitation. The challenge of the problem lies in randomness involved from both structural parameters and dynamic load, which renders the structural reliability becoming the random dynamic reliability of the first passage problem. In order to obtain minimum mean value of random gross mass, element and system dynamic reliability constraints are constructed, respectively, and the structural sizing and shape optimization models based on the dynamic reliability are then presented. Moreover, among two optimal strategies proposed for optimization models, the second one can effectively reduce the workload by avoiding the computation of the variance of the dynamic response during the iterative process. Finally, the implementation of three examples is discussed to display the feasibility and validity of optimization technique given.
机译:在这项工作中,提出了一种基于可靠性的优化技术,以在静态随机过程激励下获得具有随机参数的结构随机质量的最小均值。问题的挑战在于结构参数和动态载荷都涉及随机性,这使得结构可靠性成为首次通过问题的随机动态可靠性。为了获得随机总质量的最小均值,分别建立了单元和系统的动态可靠性约束,并提出了基于动态可靠性的结构尺寸和形状优化模型。此外,在针对优化模型提出的两种最优策略中,第二种可以通过避免迭代过程中动态响应方差的计算来有效地减少工作量。最后,讨论了三个示例的实现,以显示所给出的优化技术的可行性和有效性。

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