Title of article
Probabilistic analysis of concrete cracking using neural networks and random fields
Author/Authors
Most، نويسنده , , Thomas and Bucher، نويسنده , , Christian، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
11
From page
219
To page
229
Abstract
In this paper an algorithm for the probabilistic analysis of concrete structures is proposed which considers material uncertainties and failure due to cracking. The fluctuations of the material parameters are modeled by means of random fields and the cracking process is represented by a discrete approach using a coupled meshless and finite element discretization. In order to analyze the complex behavior of these nonlinear systems with low numerical costs a neural network approximation of the performance functions is realized. As neural network input parameters the important random variables of the random field in the uncorrelated Gaussian space are used and the output values are the interesting response quantities such as deformation and load capacities. The neural network approximation is based on a stochastic training which uses wide spanned Latin hypercube sampling to generate the training samples. This ensures a high quality approximation over the whole domain investigated, even in regions with very small probability.
Keywords
Artificial neural networks , Response surfaces , Latin hypercube sampling , Cohesive cracks , Stochastic training , Random fields
Journal title
Probabilistic Engineering Mechanics
Serial Year
2007
Journal title
Probabilistic Engineering Mechanics
Record number
1567610
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