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RELIABILITY OPTIMIZATION INVOLVING MIXED CONTINUOUS-DISCRETE UNCERTAINTIES

机译:混合连续离散不确定性的可靠性优化

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摘要

Engineering design problems frequently involve a mix of both continuous and discrete uncertainties. However, most methods in the literature deal with either continuous or discrete uncertainties, but not both. In particular, no method has yet addressed uncertainty for categorically discrete variables or parameters. This article develops an efficient optimization method for problems involving mixed continuous-discrete uncertainties. The method reduces the number of function evaluations performed by systematically filtering the discrete factorials used for estimating reliability based on their importance. This importance is assessed using the spatial distance from the feasible boundary and the probability of the discrete components. The method is demonstrated in examples and is shown to be very efficient with only small errors.
机译:工程设计问题经常涉及连续性和离散性不确定性的混合。但是,文献中的大多数方法都处理连续性或离散性不确定性,但不能同时处理这两种不确定性。特别是,尚无方法解决绝对离散变量或参数的不确定性。本文针对涉及混合连续离散不确定性的问题开发了一种有效的优化方法。该方法通过系统过滤用于评估可靠性的离散阶乘进行的功能,减少了功能评估的次数。使用距可行边界的空间距离和离散分量的概率来评估此重要性。该方法已在示例中进行了演示,并显示出非常高的效率,且误差很小。

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