基于力矩的测量不确定度评定在结构系统可靠性分析中的应用

Arvind Rajan, Y. Kuang, M. Ooi, S. Demidenko, T. Egbelakin
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引用次数: 1

摘要

系统不确定度和测量不确定度在确定建筑物和桥梁等复杂和安全关键结构系统的可靠性方面起着关键作用。目前结构可靠性分析的主流技术采用迭代一阶可靠性方法,通过寻找最可能的失效点来进行间接的不确定性评估。然而,由于收敛速度较慢,这种方法可能导致较高的计算时间,并且在某些情况下,较差的收敛会导致不可靠的结果。为了解决这些不足,本文将一种新的高阶矩传播技术(最初是为测量不确定度分析而开发的)应用于结构可靠性分析问题,旨在获得同时准确和计算效率高的结果。该方法在一个三层弹性框架结构上进行了仿真,结果表明,将测量不确定度领域的技术应用于结构可靠性分析中的复杂问题,可以减少精度与计算效率之间的权衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of moment-based measurement uncertainty evaluation to reliability analysis of structural systems
System and measurement uncertainties play a key role in finding the reliability of complex and safety-critical structural systems such as buildings and bridges. Current mainstream techniques in structural reliability analysis use an iterative first-order reliability method that performs an indirect uncertainty evaluation by finding the most probable failure point. However, such an approach could lead to high computational time due to slower convergence, and in some cases, poor convergence that leads to unreliable results. In order to address the shortcomings, this paper applies a new high-order moment propagation technique (that was initially developed for the measurement uncertainty analysis) to structural reliability analysis problems aiming to obtain results that are simultaneously accurate and computational efficient. The proposed approach was implemented on a three-story elastic frame structure, and the presented results prove that the application of a technique from the field of measurement uncertainly can indeed be applied to complex problems in the structural reliability analysis in order to reduce the trade-off between accuracy and computational efficiency.
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