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An approximate stochastic dynamics approach for nonlinear structural system performance-based multi-objective optimum design

机译:基于非线性结构系统性能的多目标优化设计的一种近似随机动力学方法

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摘要

A novel approach for structural system optimal design considering life cycle cost is developed. Specifically, a performance-based multi-objective design optimization framework for nonlinear/hysteretic multi-degree-of-freedom (MDOF) structural systems subject to evolutionary stochastic excitation is formulated. In the core of the stochastic structural analysis component of the proposed framework lies an efficient approximate dimension reduction technique based on the concepts of statistical linearization and of stochastic averaging for determining the non-stationary system response amplitude probability density functions (PDFs); thus, computationally intensive Monte Carlo simulations are circumvented. Note that the approach can readily handle stochastic excitations of arbitrary non separable evolutionary power spectral density (EPSD) forms that exhibit strong variability in both the intensity and the frequency content. Further, approximate closed-form expressions are derived for the non-stationary inter-story drift ratio amplitude PDFs corresponding to each and every DOF. In this regard, considering appropriately defined damage measures structural system related fragility curves are determined at a low computational cost as well. Finally, the structural system design optimization problem is formulated as a multi-objective one to be solved by a genetic algorithm based approach. A building structure comprising the versatile Bouc-Wen (hysteretic) model serves as a numerical example for demonstrating the efficiency of the proposed methodology. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发了一种考虑生命周期成本的结构系统优化设计的新方法。具体来说,为非线性/滞后多自由度(MDOF)结构系统的演化随机激励制定了基于性能的多目标设计优化框架。所提出框架的随机结构分析组件的核心是一种有效的近似维数缩减技术,该技术基于统计线性化和随机平均的概念来确定非平稳系统响应幅度概率密度函数(PDF);因此,避免了计算量大的蒙特卡洛模拟。请注意,该方法可以轻松处理任意不可分离的演化功率谱密度(EPSD)形式的随机激发,这些形式在强度和频率含量上均表现出很大的可变性。此外,针对与每个DOF相对应的非平稳的层间漂移率幅度PDF,导出近似的封闭式表达式。在这方面,考虑到适当定义的破坏措施,以较低的计算成本确定与结构系统有关的脆性曲线。最后,将结构系统设计优化问题表述为一个多目标的问题,可以通过基于遗传算法的方法来解决。包含通用Bouc-Wen(磁滞)模型的建筑结构可作为数值示例,证明所提出方法的效率。 (C)2016 Elsevier Ltd.保留所有权利。

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