Second Order Reliability Method for Time-Dependent Reliability Analysis Using Sequential Efficient Global Optimization

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2019-11
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English
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ASME
Abstract

Reliability depends on time if the associated limit-state function includes time. A time-dependent reliability problem can be converted into a time-independent reliability problem by using the extreme value of the limit-state function. Then the first order reliability method can be used but it may produce a large error since the extreme limit-state function is usually highly nonlinear. This study proposes a new reliability method so that the second order reliability method can be applied to time-dependent reliability analysis for higher accuracy while maintaining high efficiency. The method employs sequential efficient global optimization to transform the time-dependent reliability analysis into the time-independent problem. The Hessian approximation and envelope theorem are used to obtain the second order information of the extreme limit-state function. Then the second order saddlepoint approximation is use to evaluate the reliability. The accuracy and efficiency of the proposed method are verified through numerical examples.

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Hu, Z., & Du, X. (2019, November 25). Second Order Reliability Method for Time-Dependent Reliability Analysis Using Sequential Efficient Global Optimization. ASME 2019 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. https://doi.org/10.1115/DETC2019-97541
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ASME 2019 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference
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