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An adaptive directional importance sampling method for structural reliability

机译:结构可靠性的自适应方向重要性抽样方法

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In this paper, an adaptive directional importance sampling (ADIS) method is presented. The algorithm is based on a directional simulation scheme in which the most important directions are sampled exact and the others by means of a response surface approach. These most important directions are determined by a β-sphere enclosing the most important part(s) of the limit state. The β-sphere and response surface are constantly updated during sampling with information that becomes available from the exact evaluations making the scheme adaptive. Various widely used test problems, representing a broad range of complex limit states that can occur in practice, of which several that pose potential problems to stochastic methods in general, demonstrate the high efficiency, accuracy and robustness of the method. As such, the ADIS method is of particular interest in applications with a low probability of failure and medium number (up to about 40) of stochastic variables, for instance in aircraft and nuclear industry.
机译:本文提出了一种自适应方向重要性抽样方法。该算法基于定向仿真方案,在该方案中,使用响应面方法对最重要的方向进行了精确采样,而其他方向则进行了采样。这些最重要的方向由包围极限状态最重要部分的β球确定。 β球和响应面在采样过程中不断更新,这些信息可从精确评估中获得,从而使该方案具有适应性。各种被广泛使用的测试问题,代表了在实践中可能发生的各种各样的复杂极限状态,其中一些通常给随机方法带来潜在的问题,证明了该方法的高效率,准确性和鲁棒性。这样,ADIS方法尤其适用于故障概率低且随机变量具有中等数量(最多约40个)的应用,例如在飞机和核工业中。

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