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A New Method for Reliability-Based Sensitivity Analysis of Dynamic Random Systems

机译:一种新的动态随机系统可靠性敏感性分析方法

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摘要

A novel numerical method for investigating time-dependent reliability and sensitivity issues of dynamic systems is proposed, which involves random structure parameters and is subjected to stochastic process excitation simultaneously. The Karhunen-Loeve (K-L) random process expansion method is used to express the excitation process in the form of a series of deterministic functions of time multiplied by independent zero-mean standard random quantities, and the discrete points are made to be the same as Legendre integration points. Then, the precise Gauss-Legendre integration is used to solve the oscillation differential functions. Considering the independent relationship of the structural random parameters and the parameters of random process, the time-varying moments of the response are evaluated by the point estimate method. Combining with the fourth-moment method theory of reliability analysis, the dynamic reliability response can be evaluated. The dynamic reliability curve is useful for getting the weakness time so as to avoid breakage. Reliability-based sensitivity analysis gives the importance sort of the distribution parameters, which is useful for increasing system reliability. The result obtained by the proposed method is accurate enough compared with that obtained by the Monte Carlo simulation (MCS) method.
机译:提出了一种用于研究动态系统的时间依赖性可靠性和灵敏度问题的新型数值方法,涉及随机结构参数,并同时进行随机处理激发。 Karhunen-Loeve(KL)随机处理扩展方法用于以独立零平均标准随机量乘以的一系列确定性函数的一系列确定性函数的形式表达激发过程,并且离散点与其相同Legendre集成点。然后,使用精确的高斯 - Legendre集成来解决振荡差分功能。考虑到结构随机参数和随机过程参数的独立关系,通过点估计方法评估响应的时变矩。结合了第四矩法的可靠性分析理论,可以评估动态可靠性响应。动态可靠性曲线对于获得弱点时间是有用的,以避免破损。可靠性的敏感性分析提供了分布参数的重要性,可用于提高系统可靠性。通过所提出的方法获得的结果足够精确,与Monte Carlo仿真(MCS)方法获得的比较。

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  • 来源
    《Mathematical Problems in Engineering》 |2019年第19期|5437695.1-5437695.13|共13页
  • 作者单位

    WeiFang Univ Sch Mech Elect & Vehicle Engn Weifang 261061 Peoples R China;

    WeiFang Univ Sch Mech Elect & Vehicle Engn Weifang 261061 Peoples R China;

    WeiFang Univ Sch Mech Elect & Vehicle Engn Weifang 261061 Peoples R China;

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