The main task of structural reliability analysis is to estimate failure probability of a studied structure taking randomness of input variables into account. To consider structural behavior practically, numerical models become more and more complicated and time-consuming, which increases the difficulty of reliability analysis. Therefore, sequential strategies of design of experiment (DoE) are raised. In this research, a new learning function, named least improvement function (LIF), is proposed to update DoE of Kriging based reliability analysis method. LIF values how much the accuracy of estimated failure probability will be improved if adding a given point into DoE. It takes both statistical information provided by the Kriging model and th...
International audienceStructural reliability analysis aims at computing the probability of failure o...
Due to uncertainties and time-varying parameters in design, manufacturing, and commissioning, many s...
When limit-state functions are highly nonlinear, traditional reliability methods, such as the first ...
The main task of structural reliability analysis is to estimate failure probability of a studied str...
In recent years, reliability analysis methods based on the Kriging surrogate model have often been e...
Complex implicit performance functions widely exist in many engineering problems. The reliability an...
Reliability analysis is time consuming, and high efficiency could be maintained through the integrat...
Aiming at the problems of implicit and highly nonlinear limit state function in the process of relia...
Aiming at the problems of implicit and highly nonlinear limit state function in the process of relia...
In order to solve the problem of implicit function and long simulation time in reliability analysis ...
When the reliability analysis of the mechanical products with high nonlinearity and time-consuming r...
Active learning methods have recently surged in the literature due to their ability to solve complex...
When the reliability analysis of the mechanical products with high nonlinearity and time-consuming r...
When the reliability analysis of the mechanical products with high nonlinearity and time-consuming r...
When limit-state functions are highly nonlinear, traditional reliability methods, such as the first-...
International audienceStructural reliability analysis aims at computing the probability of failure o...
Due to uncertainties and time-varying parameters in design, manufacturing, and commissioning, many s...
When limit-state functions are highly nonlinear, traditional reliability methods, such as the first ...
The main task of structural reliability analysis is to estimate failure probability of a studied str...
In recent years, reliability analysis methods based on the Kriging surrogate model have often been e...
Complex implicit performance functions widely exist in many engineering problems. The reliability an...
Reliability analysis is time consuming, and high efficiency could be maintained through the integrat...
Aiming at the problems of implicit and highly nonlinear limit state function in the process of relia...
Aiming at the problems of implicit and highly nonlinear limit state function in the process of relia...
In order to solve the problem of implicit function and long simulation time in reliability analysis ...
When the reliability analysis of the mechanical products with high nonlinearity and time-consuming r...
Active learning methods have recently surged in the literature due to their ability to solve complex...
When the reliability analysis of the mechanical products with high nonlinearity and time-consuming r...
When the reliability analysis of the mechanical products with high nonlinearity and time-consuming r...
When limit-state functions are highly nonlinear, traditional reliability methods, such as the first-...
International audienceStructural reliability analysis aims at computing the probability of failure o...
Due to uncertainties and time-varying parameters in design, manufacturing, and commissioning, many s...
When limit-state functions are highly nonlinear, traditional reliability methods, such as the first ...