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Reliability analysis of structures with interval uncertainties under stationary stochastic excitations

机译:平稳随机激励下区间不确定结构的可靠性分析

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Reliability analysis of linear discretized structural systems with interval uncertainties subjected to stationary Gaussian random excitation is addressed. Under the assumption of independent up-crossings of a specified threshold, an efficient procedure for the evaluation of the bounds of the interval reliability function of the generic response process is presented. The first step of the proposed approach is to derive approximate expressions of the interval mean-value and spectral moments of the response along with the associated bounds. To this aim, the improved interval analysis via extra unitary interval is applied in conjunction with a novel series expansion of the inverse of an interval matrix with modifications, called Interval Rational Series Expansion (IRSE). Then, the lower bound and upper bounds of the interval reliability function are readily evaluated by properly combining the bounds of the interval mean-value and spectral moments of the response. Two numerical examples are provided to demonstrate the accuracy of the proposed procedure and its usefulness in view of decision-making in engineering practice. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了线性离散结构系统的区间不确定性在平稳高斯随机激励作用下的可靠性分析。在指定阈值具有独立上交的假设下,提出了一种用于评估通用响应过程的区间可靠性函数的范围的有效过程。所提出方法的第一步是推导响应的区间均值和频谱矩以及相关范围的近似表达式。为此,将通过额外的单位间隔进行的改进的间隔分析与间隔矩阵的逆的新颖级数展开结合修改进行应用,该改进称为间隔有理级数展开(IRSE)。然后,通过适当地组合间隔平均值的范围和响应的频谱矩,可以轻松地评估间隔可靠性函数的下限和上限。提供了两个数值示例,以证明所提出程序的准确性及其在工程实践中的决策制定方面的实用性。 (C)2015 Elsevier B.V.保留所有权利。

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