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Reliability-based design optimisation of technical systems: analytical response surface moments method

机译:技术系统的基于可靠性的设计优化:分析响应表面矩方法

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Reliability-based design optimisation is a process of finding an optimum economical design while conforming to a set of reliability constraints. In this context, the reliability analysis that is simultaneously accurate and computationally efficient is imperative. Since the analytical evaluation of evaluating reliability constraints is mathematically complex, the most probable point search approach using the first and second orders of reliability approximation has become the mainstream technique. However, it is characterised as having a high computational cost and poor convergence in some design problems involving a large number of design variables with highly nonlinear constraints. To overcome the problem, this paper introduces a novel response surface with analytical moment-based reliability analysis technique. It performs distribution fitting using the exact analytical expression of high-order moments of response surface that are precisely calculated using Mellin transform. To boost the computational efficiency, a selective sampling technique is used in constructing the response surface model. Consequently, the proposed method not only provides final solutions of high quality, but it is also significantly faster than representatives of the mainstream reliability approximation methods. For example, when applied to complex design problems, the proposed method is able to converge to dependable solutions while offering the high speed of single-loop optimisation approaches.
机译:基于可靠性的设计优化是在遵循一组可靠性约束的同时寻找最佳经济设计的过程。在这种情况下,必须同时进行准确而高效的可靠性分析。由于评估可靠性约束的分析评估在数学上很复杂,因此使用一阶和二阶可靠性近似的最可能的点搜索方法已成为主流技术。但是,其特征是在涉及大量具有高度非线性约束的设计变量的某些设计问题中具有较高的计算成本和较差的收敛性。为了克服这个问题,本文介绍了一种基于响应矩分析的可靠性分析技术。它使用响应表面的高阶矩的精确解析表达式执行分布拟合,而该解析表达式是使用Mellin变换精确计算出来的。为了提高计算效率,在构造响应面模型时使用了选择性采样技术。因此,所提出的方法不仅提供了高质量的最终解决方案,而且还比主流可靠性近似方法的代表速度快得多。例如,当应用于复杂的设计问题时,所提出的方法能够收敛到可靠的解决方案,同时提供高速的单循环优化方法。

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