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A new method for reliability analysis and reliability-based design optimization

机译:一种新的可靠性分析和基于可靠性的设计优化方法

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摘要

We present a novel method for reliability-based design optimization, which is based on the approximation of the safe region in the random space by a polytope-like region. This polytope is in its turn transformed into quite a simple region by using generalized spherical coordinates. The failure probability can then be easily estimated by considering simple quadrature rules. One of the advantages of the proposed approach is that by increasing the number of vertices, we can improve arbitrarily the accuracy of the failure probability estimation. The sensitivity analysis of the failure probability is also provided. We show that the proposed approach leads to an optimization problem, where the set of optimization variables includes all the original design variables and all the parameters that control the shape of the polytope. In addition, this problem can be solved by a single iteration scheme of optimization. We illustrate the performance of the new approach by solving several examples of truss topology optimization.
机译:我们提出了一种基于可靠性的设计优化的新方法,其基于多托状区域的随机空间中的安全区域的近似。通过使用普通球形坐标,该多孔络在其变换成相当的简单区域。然后通过考虑简单的正交规则,可以容易地估计故障概率。所提出的方法的一个优点是通过增加顶点的数量,我们可以随意提高故障概率估计的准确性。还提供了对失败概率的敏感性分析。我们表明,所提出的方法导致优化问题,其中优化变量集包括所有原始设计变量和控制多托形状的所有参数。此外,该问题可以通过单一迭代方案来解决优化方案。我们通过解决桁架拓扑优化的几个例子来说明新方法的性能。

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