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Direct probability integral method for static and dynamic reliability analysis of structures with complicated performance functions

机译:具有复杂性能函数的结构静态和动态可靠性分析的直接概率积分方法

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摘要

For structural reliability assessment, some performance functions are fairly complicated, which leads to disjoint failure domains, discontinuous structural responses and multiple design points. Thus, such a problem is difficult to be solved by some existing methods, i.e., the design point-based methods and surrogate model-based methods, etc. Although the stochastic sampling-based methods can tackle this issue, much computational effort is needed. In this paper, a novel approach, direct probability integral method (DPIM), is proposed to address static and dynamic reliability assessment for structures with complicated performance functions. The DPIM is established based on the decoupled computation of probability density integral equation and structural physical equation. Firstly, by introducing the point selection technique based on generalized F discrepancy and the smoothing of Dirac delta function, the probability density integral equation is solved directly to calculate the probability density functions (PDFs) of static and dynamic responses of structures with complicated performance functions. Then, the failure probability for static system is acquired by integrating the PDF curve of structural response over failure domain. For stochastic dynamic system, the dynamic reliability assessment is fulfilled efficiently by DPIM combining with extreme value distribution. Finally, six representative examples indicate that DPIM is much more efficient than Monte Carlo simulation to attack the reliability estimation issue of structures containing complicated performance functions. (C) 2020 Elsevier B.V. All rights reserved.
机译:对于结构可靠性评估,一些性能功能相当复杂,导致失效域,不连续的结构响应和多种设计点。因此,这种问题很难通过一些现有方法,即基于设计点的方法和基于代理模型的方法等。尽管基于随机采样的方法可以解决这个问题,但需要大量的计算工作。本文提出了一种新方法,直接概率积分法(DPIM),以解决具有复杂性能函数的结构的静态和动态可靠性评估。基于概率密度整体方程和结构物理方程的解耦计算来建立DPIM。首先,通过引入基于广义F差异的点选择技术和DIRAC DELTA函数的平滑,直接解决概率密度积分方程,以计算具有复杂性能功能的结构的静态和动态响应的概率密度函数(PDF)。然后,通过将结构响应的PDF曲线集成在故障域中来获取静态系统的故障概率。对于随机动态系统,通过与极值分布的DPIM结合有效地满足动态可靠性评估。最后,六种代表性示例表明DPIM比蒙特卡罗模拟更有效,以攻击包含复杂性能功能的结构的可靠性估计问题。 (c)2020 Elsevier B.v.保留所有权利。

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