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Structural dynamic optimal design based on dynamic reliability

机译:基于动态可靠性的结构动力优化设计

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摘要

In this work, dimension and shape optimization of structures under stochastic process excitation is addressed in the context of element or system dynamic reliability constraints, where the structural gross mass is taken to be the objective function. Firstly, based on the dynamic response analysis of truss structures under stochastic process loads, the dynamic reliability constraints are developed and simplified, and the normalization of design variables is discussed to avoid some variables being drowned by others during optimization due to their different dimensions and orders of magnitude. The optimal models of dimension and shape with element or system dynamic reliability constraints are then presented. Two numerical examples are finally used to illustrate the results of different optimal designs, which demonstrate that the efficiency to solve the structural optimization with dynamic reliability constraints can be significantly improved if the design variables and their initial values are selected properly.
机译:在这项工作中,在元素或系统动态可靠性约束的情况下,解决了随机过程激励下结构的尺寸和形状优化问题,其中将结构总质量作为目标函数。首先,基于随机过程载荷作用下桁架结构的动力响应分析,建立并简化了动态可靠度约束条件,并讨论了设计变量的归一化问题,以避免某些变量在尺寸和阶次不同时在优化过程中被淹没。数量级。然后提出了具有单元或系统动态可靠性约束的尺寸和形状的最佳模型。最后使用两个数值示例来说明不同优化设计的结果,这些结果表明,如果正确选择设计变量及其初始值,则可以显着提高解决具有动态可靠性约束的结构优化的效率。

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