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Time-dependent failure credibility analysis and its optimization based computational methods

机译:基于时间的故障可信度分析及其基于优化的计算方法

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摘要

To measure the safety degree of the time-dependent structure under the fuzzy uncertainty, a time-dependent failure credibility (TDFC) is defined. The credibility measure has the excellent property of self-duality, thus the sum of the TDFC and the credibility of the time-dependent safety event, i.e., the complementary of the time-dependent failure event, equals to one. To solve the TDFC, two methods, including direct double-loop optimization (DLOB) method and transformed single-loop optimization (SLOB) method, are proposed. In two methods, the TDFC is firstly expressed as a bi-level problem by its definition, where the outer is the one-dimensional rooting and the inner is the min-min or max-min optimization for different cases. The outer one-dimensional rooting is solved by the dichotomy in DLOB method and SLOB method. The inner min-min or max-min problem is solved by different strategies in DLOB method and SLOB method. In the DLOB method, the min-min or max-min problem is directly solved by double-loop nested optimization strategy. In the SLOB method for improving the computational efficiency of the DLOB method, the min-min and max-min problems are respectively transformed to the single-loop optimizations by corresponding simple transition and trajectory-following algorithm, and in the trajectory-following algorithm, the complex-step method is employed for estimating the first order derivative for high precision. Several examples are used to demonstrate the rationality of the TDFC and the significance of two solutions. The results of the examples show that the proposed TDFC can reasonably describe the safety degree, and the SLOB method can drastically reduce the computational cost compared with the DLOB method under the acceptable precision.
机译:为了测量模糊不确定性下随时间变化的结构的安全程度,定义了随时间变化的失效可信度(TDFC)。可信度度量具有出色的自我对偶性,因此TDFC与时变安全事件(即时变故障事件的补充)的可信度之和等于1。为了解决TDFC,提出了两种方法,包括直接双循环优化(DLOB)方法和变换单循环优化(SLOB)方法。在两种方法中,TDFC首先通过其定义表示为两级问题,其中外部是一维生根,内部是针对不同情况的最小-最小或最大-最小优化。外部一维生根通过DLOB方法和SLOB方法的二分法解决。内部最小-最小或最大-最小问题通过DLOB方法和SLOB方法中的不同策略来解决。在DLOB方法中,最小-最小或最大-最小问题通过双循环嵌套优化策略直接解决。在用于提高DLOB方法的计算效率的SLOB方法中,分别通过相应的简单过渡和轨迹跟踪算法将min-min和max-min问题分别转换为单环优化,并且在轨迹跟踪算法中,复步法用于高精度估计一阶导数。使用几个示例来说明TDFC的合理性以及两种解决方案的重要性。算例结果表明,所提出的TDFC可以合理地描述安全度,并且与DLOB方法相比,SLOB方法可以在可接受的精度下大大降低计算成本。

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