4.7 Article

Time-dependent structural system reliability analysis model and its efficiency solution

Journal

RELIABILITY ENGINEERING & SYSTEM SAFETY
Volume 216, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.ress.2021.108029

Keywords

Time-Dependent Structural System; Reliability Analysis; Kriging; Learning Function

Funding

  1. National Natural Science Foundation of China [51975476]
  2. National Science and Technology Major Project [2017-IV-0009-0046]

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This paper proposes an improved reliability analysis model for time-dependent structural systems, transforming the performance function into a single-mode time-dependent function and estimating failure probability using Kriging surrogate model and Monte Carlo simulation method. The theoretical analysis supports the rationality of the proposed model, and the efficiency is illustrated through numerical examples.
For the widely existing time-dependent structural system (TDSS), the current model ignores the interaction among multiple modes in the minimum transformation of the performance function of each mode w.r.t. the time, it may misjudge the state of the system at some instants and result in the error of estimating the reliability. To avoid this possible mistake, this paper proposes an improved reliability analysis model for the TDSS. In the proposed model, the TDSS performance function is transformed into the single-mode time-dependent performance function firstly according to the relationship of multiple modes. Then the failure probability of the TDSS can be estimated by the single-mode time-dependent performance function. The relationship of multiple modes is strictly considered in the proposed model. On the basis of the improved model, this paper also presents the Kriging surrogate model combined with the Monte Carlo simulation method to estimate the failure probability of the TDSS. In this Kriging method, the initial training samples are uniformly selected in the sample space and a new extremum learning function is proposed. Theoretical analysis verifies the rationality of the proposed reliability analysis model, and the efficiency of the proposed method is illustrated by the results of numerical examples.

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