Efficient sampling techniques for stochastic simulation of structural systems

  • Rafał Stocki Institute of Fundamental Technological Research Polish Academy of Sciences
  • Piotr Tauzowski Institute of Fundamental Technological Research Polish Academy of Sciences
  • Michał Kleiber Institute of Fundamental Technological Research Polish Academy of Sciences

Abstract

One of the main obstacles in making stochastic simulation a standard design tool is its high computational cost. However, this problem can be significantly reduced by using efficient sampling techniques like optimal Latin hypercube (OLH) sampling. The paper advocates this kind of approach for scatter analysis of structural responses. After explaining the idea of the OLH sampling the principal component analysis method (PCA) is briefly described. Next, on numerical examples it is shown how this technique of statistical postprocessing of simulation results can be used in the design process. Important improvements of the estimation quality offered by OLH design of experiments are illustrated on two numerical examples, one simple truss problem and one involving finite element analysis of elastic plate. Based on numerical experiments an attempt is made to propose the sample size which for a given number of random variables provides an acceptable estimation accuracy of statistical moments of system responses and which enables more advanced statistical post-processing.

Keywords

References

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Published
Sep 23, 2022
How to Cite
STOCKI, Rafał; TAUZOWSKI, Piotr; KLEIBER, Michał. Efficient sampling techniques for stochastic simulation of structural systems. Computer Assisted Methods in Engineering and Science, [S.l.], v. 14, n. 1, p. 127-140, sep. 2022. ISSN 2956-5839. Available at: <https://cames.ippt.pan.pl/index.php/cames/article/view/874>. Date accessed: 17 may 2024.
Section
Articles

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