Robust Optimization of the Steel Single Story Frame
Zabojszcza, Paweł
Radoń, Urszula
Tauzowski, Piotr
2025-09-17T07:53:19Z
2025-09-17T07:53:19Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33782
In contemporary design practices, building structures are expected to not only meet
safety requirements but also be optimized. However, optimal designs can be highly sensitive
to random variations in model parameters and external actions. Solutions that appear
effective under nominal conditions may prove inadequate when parameter randomness is
considered. To address this challenge, the concept of robust optimization has been
introduced, which extends deterministic optimization formulations to incorporate the
random variability of parameter values. In this study, we demonstrate the applicability of
robust optimization in the design of building structures using a simple orthogonal frame as
an example. The static-strength analysis is conducted based on the displacement method,
utilizing second-order theory. To assess the safety level of the steel frame, a preliminary
evaluation is performed by determining the reliability index and failure probability using the
Monte Carlo Method. Robust optimization is then employed, leveraging the second-order
response surface. Experimental designs are generated following an optimal Latin hypercube
plan. The proposal of a mathematical-numerical algorithm for solving the optimization
problem while considering the random nature of design parameters constitutes the
innovative aspect of this research.
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Robust Optimization of the Steel Single Story Frame
hu_HU
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Óbudai Egyetem
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Budapest
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Óbudai Egyetem
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