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AN EFFICIENT RELIABILITY ANALYSIS METHOD FOR STRUCTURES WITH EPISTEMIC UNCERTAINTY USING EVIDENCE THEORY

机译:一种高效可靠性分析方法,用于使用证据理论的认知不确定性的结构

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Evidence theory has a strong ability to deal with the epistemic uncertainty, based on which the uncertain parameters existing in many complex engineering problems with limited information can be conveniently treated. However, the heavy computational cost caused by its discrete property severely influences the practicability of evidence theory, which has become a main difficulty in structural reliability analysis using evidence theory. This paper aims to develop an efficient method to evaluate the reliability for structures with evidence variables, and hence improves the applicability of evidence theory for engineering problems. A non-probabilistic reliability index approach is introduced to obtain a design point on the limit-state surface. An assistant area is then constructed through the obtained design point, based on which a small number of focal elements can be picked out for extreme analysis instead of using all the elements. The vertex method is used for extreme analysis to obtain the minimum and maximum values of the limit-state function over a focal element. A reliability interval composed of the belief measure and the plausibility measure is finally obtained for the structure. Two numerical examples are investigated to demonstrate the effectiveness of the proposed method.
机译:证据理论有很强的能力处理认知不确定性,基于哪些在许多复杂工程问题中的不确定参数可以方便地处理。然而,由离散物业引起的繁重计算成本严重影响了证据理论的可行性,这已成为使用证据理论结构可靠性分析的主要困难。本文旨在开发一种有效的方法,以评估具有证据变量的结构的可靠性,因此提高了证据理论对工程问题的适用性。引入非概率可靠性指标方法以获得极限状态表面上的设计点。然后通过所获得的设计点构造辅助区域,基于该设计点,基于该设计点可以挑选少量焦点元件以用于极限分析而不是使用所有元件。顶点方法用于极端分析,以在焦点元件上获得极限状态函数的最小值和最大值。最终获得了由信仰措施和合理度量的可靠性间隔进行了结构。研究了两个数值例子以证明所提出的方法的有效性。

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